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"Lamp Black", pelletized flame soot powder, industrial carbon black, Carbon Black, CAS No.: 1333-86-4

Product information ""Lamp Black", pelletized flame soot powder, industrial carbon black, Carbon Black, CAS No.: 1333-86-4"

Flame sootorCarbon Black / Carbon Black / Lamp Black is produced by burning hydrocarbons with reduced oxygen supply. The flame black powder we offer is typically nanoscale. Among other things, it is also suitable as an extremely opaque black pigment. 
Possible applications: 
  • Additive in polymers 
  • Conductive paints (ESD applications) 
  • Polymer-based energy storage Black pigment (e.g. toner) 
  • Flame retardant coatings 
  • and much more. 
Chemical/physical examination: 
  • Average particle size: 95nm (0.095µm) - based on primary particles
  • Residue on 45µm sieve: 4ppm 
  • Toluene extractable components (DIN 53553): 0.010% 
  • CAS No.: 1333-86-4 
  • Variety: 101 
  • Carbon min.: 99.9% 
  • Opacity (ISO 787/16 & 24): 26.0% (ITRB) 
  • Blackness (DIN 55979): 210 
  • PH value: 7.5 
  • Tamping density: 260 g/l 
  • Dibutyl phthalate absorption: 0.118 dm³/100g
" ThisDextrin (canary dextrin) will be outCornstarchwon. The starch is mixed with steam or catalytically active acid under increased temperature and pressure. This converts the otherwise insoluble starch into awater soluble product, which mainly asbinderapplies. A commonly known use is thisWet adhesive coating (also called gumming) of postage stamps and kraft paper tapes. However, it is also used as a food additive or as a binding agent in pharmaceuticals. The material isvery soluble in waterand binds even at low moisture levels. 
There are now many dextrin-based artists' colors on the market (mixture of dextrin and pigment, as well as water). 
Product data
  • CAS No.: 9004-53-9 
  • Average particle size: 17.50 µm
  • Humidity: max. 10% [MCL 002B]
  • pH value: 2.5 - 4.0 [20% solution]
  • RVA viscosity: 960-2040 mPa*s [MCL 106T]
  • Insoluble components: max. 2% [MCL 340A]
  • Reduced sugar: max. 4.2% [MCL 050A]
  • Bulk density: approx. 0.55 kg/dm³ [MCL 095A]
Also known as: Flammruß, Kohlenstoffpulver, Lampblack, Carbon Black, 101, Rußschwarz, Schieferölruß, Channel-Black, Lampenruß, Furnace Black, Thermal Black, Acetylene Black, Gas Black, Vegetable Black
CAS-Nr.: 1333-86-4
Color: Schwarz
Kohlenstoff: 99,9 %
Produktcharakter: feines Pulver
Schwärze (DIN 55979): 210
Stampfdichte: 260 g/l
Toluol extrahierbare Bestandteile (DIN 53553): 0,010 %
kind of product: chemical
material: Carbon Black, Kohlenstoff
nominal particle size: 95nm (0,095µm)
opacity (ISO 787/16 & 24): 26,0 % (ITRB)
zur GPSR-Informationspflicht: Hersteller + Verantwortliche Person: Werth-Metall, Ringstr. 41b, 99428 Grammetal, info@werth-metall.de

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"Lamp Black", flame soot powder, industrial carbon black, Carbon Black, CAS No.: 1333-86-4
"Lamp Black", flame soot powder, industrial carbon black, Carbon Black, CAS No.: 1333-86-4
pack size: 1,0kg

Flame sootorCarbon Black / Carbon Black / Lamp Black is produced by burning hydrocarbons with reduced oxygen supply. The flame black powder we offer is typically nanoscale. Among other things, it is also suitable as an extremely opaque black pigment.  This is a prilled version. This means that significantly less dust is created during handling and the material is easier to dose andIn addition, the environmental impact is significantly reduced.Possible applications: Additive in polymers Conductive paints (ESD applications) Polymer-based energy storage Black pigment (e.g. toner) Flame retardant coatings and much more. Chemical/physical examination: Average particle size: 95nm (0.095µm) - based on primary particlesResidue on 45µm sieve: 4ppm Toluene extractable components (DIN 53553): 0.010% CAS No.: 1333-86-4 Variety: 101 Carbon min.: 99.9% Opacity (ISO 787/16 & 24): 26.0% (ITRB) Blackness (DIN 55979): 210 PH value: 7.5 Tamping density: 260 g/l Dibutyl phthalate absorption: 0.118 dm³/100g

Variants from €2.38
Regular price: €20.83
"Lamp Black", pelletized flame soot powder, industrial carbon black, Carbon Black, CAS No.: 1333-86-4
"Lamp Black", pelletized flame soot powder, industrial carbon black, Carbon Black, CAS No.: 1333-86-4
pack size: 250g

Flame sootorCarbon Black / Carbon Black / Lamp Black is produced by burning hydrocarbons with reduced oxygen supply. The flame black powder we offer is typically nanoscale. Among other things, it is also suitable as an extremely opaque black pigment. Possible applications: Additive in polymers Conductive paints (ESD applications) Polymer-based energy storage Black pigment (e.g. toner) Flame retardant coatings and much more. Chemical/physical examination: Average particle size: 95nm (0.095µm) - based on primary particlesResidue on 45µm sieve: 4ppm Toluene extractable components (DIN 53553): 0.010% CAS No.: 1333-86-4 Variety: 101 Carbon min.: 99.9% Opacity (ISO 787/16 & 24): 26.0% (ITRB) Blackness (DIN 55979): 210 PH value: 7.5 Tamping density: 260 g/l Dibutyl phthalate absorption: 0.118 dm³/100g" ThisDextrin (canary dextrin) will be outCornstarchwon. The starch is mixed with steam or catalytically active acid under increased temperature and pressure. This converts the otherwise insoluble starch into awater soluble product, which mainly asbinderapplies. A commonly known use is thisWet adhesive coating (also called gumming) of postage stamps and kraft paper tapes. However, it is also used as a food additive or as a binding agent in pharmaceuticals. The material isvery soluble in waterand binds even at low moisture levels. There are now many dextrin-based artists' colors on the market (mixture of dextrin and pigment, as well as water). Product dataCAS No.: 9004-53-9 Average particle size: 17.50 µmHumidity: max. 10% [MCL 002B]pH value: 2.5 - 4.0 [20% solution]RVA viscosity: 960-2040 mPa*s [MCL 106T]Insoluble components: max. 2% [MCL 340A]Reduced sugar: max. 4.2% [MCL 050A]Bulk density: approx. 0.55 kg/dm³ [MCL 095A]

Content: 0.25 Kilogramm (€24.76 / 1 Kilogramm)

Variants from €2.38
Regular price: €6.19
125μm Silicon powder, min. 98.0 %, silicon powder 7440-21-3
125μm Silicon powder, min. 98.0 %, silicon powder 7440-21-3
pack size: 500g

This coarser silicon powder is mechanically produced from pure starting material with at least 98.0% silicon. Due to its coarser particle size, this powder is better suited for melting and foundry applications.Chemical analysis (typical values):Si: > 98.0%Fe: < 1.0%Particle size distribution (typical values):D90 190 µmD50 125 µmD10 75 µm

Content: 0.5 Kilogramm (€25.70 / 1 Kilogramm)

Variants from €3.81
Regular price: €12.85
2000μm Silicon granulate 2N, min. 99.0 %, 7440-21-3, coarse
2000μm Silicon granulate 2N, min. 99.0 %, 7440-21-3, coarse
pack size: 100g

This Coarse silicon granules are mechanically obtained from pure starting material with at least 99.0% silicon purity. Due to its large particle size, this powder is ideally suited for melting and foundry applications. Chemical analysis (typical values): Si: > 99.0% Fe: 3814 ppmw Al: 297 ppmwApprox.: 10 ppmwTi: 110 ppmwP: 39 ppmwCu: 15 ppmwCr: 43 ppmwK: 1.2 ppmwV: 10 ppmwNi: 15 ppmwNa: 0.4ppmwParticle size distribution (typical values): < 2000 µm: 0.10% 200 - 2000µm: 99.9% < 200µm: 0.0%

Regular price: €5.95
2μm Silicon powder 2N, min. 99.0 %, 7440-21-3, extremely fine
2μm Silicon powder 2N, min. 99.0 %, 7440-21-3, extremely fine
pack size: 100g

This silicon powder is mechanically produced from high-purity starting material with at least 99.0% silicon. The very small particle size gives the material increased reactivity and sintering activity, making it particularly interesting for ignition systems, gas generators, technical ceramics, and high-temperature applications. It is also ideally suited for the production of silicon nitride or silicon carbide. Chemical analysis (typical values): Si: > 99.0% Fe: approx. 0.4% Al: approx. 0.2% Approx.: approx. 0.06% Particle size distribution (typical values): D90 4.0 µm D50 2.0 µm D10 0.6 µmSignal word: ATTENTION!Hazard statements H228: Flammable solidPrecautionary statements P210: Keep away from heat, hot surfaces, sparks, open flames and other ignition sources. No smoking. P402+P404: Store in a closed container in a dry place.

Regular price: €8.33
4μm Silicon powder 3N, min. 99.9 %, 7440-21-3, super fine
4μm Silicon powder 3N, min. 99.9 %, 7440-21-3, super fine
pack size: 5,0kg

This silicon powder is mechanically produced from high-purity starting material with at least 99.9% silicon. The very small particle size gives the material increased reactivity and sintering activity, making it particularly interesting for ignition systems, gas generators, technical ceramics, and high-temperature applications. It is also ideally suited for the production of silicon nitride or silicon carbide. Chemical analysis (typical values): Si: > 99.9% Al: 351.3 ppmw Ca: 70.9 ppmw Fe: 75.4 ppmw Ti: 5.1 ppmw P: 1.8 ppmw Cu: 16.2 ppmw Cr: 2.6 ppmw K: 6.9 ppmw V: 0.1 ppmw Ni: 1.5 ppmw Na: 14.7 ppmw Particle size distribution (typical values): D90 7.92 µm D50 4.16 µm D10 1.33 µmSignal word: ATTENTION! Hazard statements  H228: Flammable solid  Precautionary statements  P210: Keep away from heat, hot surfaces, sparks, open flames and other ignition sources. No smoking. P402+P404: Store in a closed container in a dry place.

Content: 5 Kilogramm (€36.89 / 1 Kilogramm)

Variants from €5.95
Regular price: €184.45
5μm Molybdenum powder, Mo min. 99.9 %, CAS-Nr.: 7439-98-7
5μm Molybdenum powder, Mo min. 99.9 %, CAS-Nr.: 7439-98-7
pack size: 50g

Formula: Mo CAS No.:7439-98-7 Tapped density: 3,1g/cm³ Average particle size: 5µm F.S.S.S Chemical characterization Mo: min. 99,90 %C: 0,002 %O: 0,026 %Fe: 0,002 %

Content: 0.05 Kilogramm (€476.00 / 1 Kilogramm)

Regular price: €23.80
71 µm graphite powder, CAS No.: 7782-42-5, flake graphite, pure, natural, anthracite, fine powder
71 µm graphite powder, CAS No.: 7782-42-5, flake graphite, pure, natural, anthracite, fine powder
pack size: 500g

Carbon: 85 - 90% Density: 253 g/dm³Humidity: 0.37%Sieve residue on 71µm sieve: max. 15.0%Sieve passage 71µm sieve: min. 85.0% Typical applications:  Dry lubricant (replacement for molybdenum disulfide) Conductive paints and plasticsAdditive against static charge metallurgy Flame retardants

Content: 0.5 Kilogramm (€20.94 / 1 Kilogramm)

Variants from €3.45
Regular price: €10.47
71–315 µm graphite flakes, CAS No.: 7782-42-5, flake graphite, pure, natural, anthracite, powder
71–315 µm graphite flakes, CAS No.: 7782-42-5, flake graphite, pure, natural, anthracite, powder
pack size: 1,0kg

Carbon: 88.70%Ash: <0.5%Sieve residueon 315µm: 5.5%on 200µm: 39.2%on 160µm: 31.3%on 100µm: 18.5%on 71µm: 1.8%

Variants from €3.45
Regular price: €19.64
75μm Silicon powder, Silicon powder 2N, min. 99.0 %, 7440-21-3, fine
75μm Silicon powder, Silicon powder 2N, min. 99.0 %, 7440-21-3, fine
pack size: 100g

This silicon powder is mechanically extracted from high-purity raw material with at least 99.0% silicon . The small particle size gives the material increased reactivity and sintering activity, making it particularly interesting for the fields of ignition systems, gas generators, technical ceramics or also high-temperature applications. Chemical analysis (typical values): Si: > 99.0% Fe: 3814 ppmw Al: 297 ppmwCa.: 10 ppmwTi: 110 ppmwP: 39 ppmwCu: 15 ppmwCr: 43 ppmwK: 1.2 ppmwV: 10 ppmwNi: 15 ppmwNa: 0.4 ppmwParticle size distribution (typical values): d10 6µmd50 21µm d90 47µm Signal word: WARNING! Hazard warnings H228: Flammable solid Safety instructions P210: Keep away from heat, hot surfaces, sparks, open flames, and other sources of ignition. No smoking. P402+P404: Store in a closed container in a dry place.

Regular price: €5.95
99.5 % copper powder 45µm, air atomized, spherical
99.5 % copper powder 45µm, air atomized, spherical
pack size: 1,0kg

This copper powder is produced by air atomisation . This process creates irregular and partly spherical primary particles. Powders obtained by this process show a higher bulk and tap density compared to dendritic powders.Further typical fields of application:Antifouling coatingsFriction liningsPlastics engineering (as a filler)Soldering technologyCatalyst (chem.)Silver production (precipitation of silver in silver nitrate solution)Antibacterial / antiviral coatingsPaint coatings (so-called "piss paintings") -> ATTENTION: This powder is not suitable as a pigment. For this purpose, please use our flake-shaped powdersTypical chemical / physical specifications:Copper: min. 99.5 %Particle size distribution (typical)D10 12.0 - 17.0 μm D50 22.0 - 31.0 μm D90 32.0 - 43.0 μmBulk density: 4.6 to 4.9 g/cm³CAS No.: 7440-50-8 Signal word: WARNING! Hazard statements:H412 Harmful to aquatic life with long lasting effects.Precautionary statements:P273 Avoid release to the environment.P391 Collect spillage. "

Variants from €5.20
Regular price: €35.00
99.6% copper powder, copper powder, 45-LD, irregular, water-atomized
99.6% copper powder, copper powder, 45-LD, irregular, water-atomized
pack size: 1,0kg

This copper powder is produced by water atomisation . This results in irregularly shaped primary particles with increased interlocking effect. However, this means that the powder is only suitable to a limited extent for AM processes. Compared to the air-atomised variant, which is also available from us, grade "LD" has an approximately 30% lower bulk density.Further typical fields of application:Antifouling coatingsFriction liningsSintered componentsPlastics engineering (as a filler)Soldering technologyCatalyst (chem.)Silver production (precipitation of silver in silver nitrate solution)Antibacterial / antiviral coatingsPaint coatings (so-called "piss paintings") -> WARNING: This powder is not suitable as a pigment. For this purpose, please use our flake-shaped powdersTypical chemical / physical specifications:Copper: min. 99.6 %Oxygen: max. 0.2 %Particle size distribution (typical)> 149 µm (100 mesh): 0.0 %> 105 µm (140 mesh): 1.6 %> 44 µm (325 mesh): 35.0 %Bulk density: 3.0 - 3.6 g/cm³CAS No.: 7440-50-8 Signal word: WARNING! Hazard statements:H412 Harmful to aquatic life with long lasting effects.Precautionary statements:P273 Avoid release to the environment.P391 Collect spillage.

Variants from €5.20
Regular price: €35.00
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99.9% copper powder, 38µm, 400 mesh, dendritic
99.9% copper powder, 38µm, 400 mesh, dendritic
pack size: 25,0kg

This copper powder is obtained electrolytically . This process produces very pure powders that have a dendritic particle shape with a small primary particle size. This makes them particularly suitable for sintering applications, as the branched particles form a good positive fit with each other and thus promote the strength of the green compact. Other typical areas of application:Antifouling coatingsFriction liningsPlastics technologySoldering technologyLubricantsCatalyst (chemical)Antibacterial / antiviral coatingsPaints (so-called "Pisspaintings")Typical Chemical / physical specifications:ISO 4497:> 63µm: max. 3.0% > 45µm: max. 10.0% < 45µm: min. 87.0 % Fill density (ISO 3923/1): 1.4 to 1.6 g/cm³Spec. Fisher Surface: 1200 cm²/gOxygen: 0.15%Extracted from 99.9 percent copperCAS No.: 7440-50-8Signal word: ATTENTION! Hazard statements:H400 Very toxic to aquatic life.H412 Harmful to aquatic life with long lasting effects.Precautionary statements:P273 Avoid release to the environment.P391 Collect spillage.

Content: 25 Kilogramm (€24.28 / 1 Kilogramm)

Variants from €5.36
Regular price: €606.90
< 45 μm Silicon powder, min. 99.0 %, silicon powder 7440-21-3, fine
< 45 μm Silicon powder, min. 99.0 %, silicon powder 7440-21-3, fine
pack size: 100g

This silicon powder is mechanicallyproduced from high-purity starting material with at least 99.0% silicon. The small particle size gives the material increased reactivity and sintering activity, making it particularly interesting for applications such as ignition systems, gas generators, technical ceramics, and high-temperature applications. Chemical analysis (typical values): Si: > 99.0% Al: 125 ppmw Ca: 69 ppmw Fe: 935 ppmw Ti: 189 ppmw P: 26 ppmw Cu: 63 ppmw Cr: 80 ppmw K: 48 ppmw V: 97 ppmw Ni: 45 ppmw Na: 39 ppmw Particle size distribution (typical values):> 45µm: 15.0%10-45µm: 45.0%1-10µm: 35.0%< 1µm: 3.0%Signal word: ATTENTION! Hazard statements  H228: Flammable solid  Precautionary statements  P210: Keep away from heat, hot surfaces, sparks, open flames and other ignition sources. No smoking. P402+P404: Store in a closed container in a dry place.

Regular price: €3.81
Chlorinated rubber, isoprene = 2-methyl-1,3-butadiene, powder, chlorinated rubber, Parlon, Pergut
Chlorinated rubber, isoprene = 2-methyl-1,3-butadiene, powder, chlorinated rubber, Parlon, Pergut
pack size: 1,0kg

- DENSITY DIN 53 479: 1.5 g/cm³ - APPEARANCE: white powder - TURBIDITY 18.5% IN TOLUENE: max. 2 - ASH: max. 0.3% - CHLORINE CONTENT: 64.5 to 67% - MOISTURE (DIN 51 777): max. 0.3% - TOLUENE: <2.5% - CAS No.: 103170-23-6

Variants from €3.57
Regular price: €22.49
min. 56.0% lithium hydroxide monohydrate, technical grade, LiOH, CAS No.: 1310-66-3
min. 56.0% lithium hydroxide monohydrate, technical grade, LiOH, CAS No.: 1310-66-3
pack size: 250g

Lithium hydroxide monohydrate is used in various industries including aerospace, pharmaceutical and ceramics industries. In aerospace, it is used as a carbon dioxide absorber in spacesuits and in spacecraft atmosphere control. In the pharmaceutical industry it is used as a component of lithium medications. In the ceramics industry it is used as a glass flux and to increase the melting points of glasses and ceramics.Chemical/physical analysis values (typical) Property Unit Result LiOH % 57.00 SO4 % 0.01 Fe2O3 % <0.0007 Cl % 0.002 NaOH % 0.02 CO2 % 0.10 CaO % 0.008 unsolvable in / insol. in HCL % <0.008 Signal word: Danger!Danger information H302 Harmful if swallowed. H319 Causes serious eye irritation. Safety instructions P264 Wash skin thoroughly after use. P270 Do not eat, drink or smoke when using. P280 Wear eye/face protection. P301 + P312 IF SWALLOWED: Call a POISON CENTER/doctor if you feel unwell. P305 + P351 + P338 IF IN EYES: Rinse cautiously with water for several minutes. If possible, remove any contact lenses. Continue rinsing. P337 + P313 If eye irritation persists: Get medical advice/attention.

Content: 0.25 Kilogramm (€78.56 / 1 Kilogramm)

Variants from €8.33
Regular price: €19.64
min. 92.7% iron(II,III) oxide, black powder, magnetite, iron oxide, Fe3O4, CAS No.: 1317-61-9
min. 92.7% iron(II,III) oxide, black powder, magnetite, iron oxide, Fe3O4, CAS No.: 1317-61-9
pack size: 100g

Our naturally obtained magnetite is a fine, black powder that is obtained from the natural rock magnetite. The product is characterized by a high purity and meets typical requirements for industrial applications. The specified composition has a purity value of at least 92.7%. In addition to the main mineral component, there may be admixtures depending on the raw material. The CAS number is used for clear identification. 1317-61-9 specified. Product advantages at a glance Naturally derived – from the mineral rock Fine powder – well suited for further processing High purity from min. 92.7% Black coloring typical for the raw material spectrum Typical areas of application Magnesite is used in various industries - for example as a raw material in chemical processes, in further processing into iron oxide products and in applications in which mineral quality and a constant raw material base play a role. Technical specifications Description: Magnetite Formula: Fe3O4 Purity: min. 92.7% CAS No.: 1317-61-9 Appearance: black powder

Content: 0.1 Kilogramm (€16.70 / 1 Kilogramm)

Regular price: €1.67
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min. 97.5% iron oxide, red powder, diiron trioxide, iron(III) oxide, micronized alpha-Fe2O3, CAS No.: 1309-37-1
min. 97.5% iron oxide, red powder, diiron trioxide, iron(III) oxide, micronized alpha-Fe2O3, CAS No.: 1309-37-1
pack size: 100g

Thisred iron oxideis manufactured synthetically and shows next to onehigh purityoneextremely small primary particle size. Beintense vermilion redcan be ideally used in pigment and ceramic recipes.The use as a catalyst or generally as a chemical reagent is also ideal because of the small particle size.Fe2O3at least 97.50%Water-soluble componentsmax. 0.5%Sieve residue 45µmmax. 0.06%PH valueapprox. 4.5Oil numberapprox. 28g/100gdensityapprox. 5.2 g/cm³conductance500 µS/cm"

Content: 0.1 Kilogramm (€23.80 / 1 Kilogramm)

Regular price: €2.38
Min. 98.0% hexagonal boron nitride α-BN, approx. 1 µm, HBN, white, boron nitride, CAS No. 10043-11-5
Min. 98.0% hexagonal boron nitride α-BN, approx. 1 µm, HBN, white, boron nitride, CAS No. 10043-11-5

Hexagonal boron nitride, or h-BN for short, is a high-performance inorganic material made of boron and nitrogen. The material has a characteristic hexagonal crystal structure and, due to its white appearance and layered structure, is often referred to as white graphite. Like graphite, hexagonal boron nitride exhibits excellent lubricity and can be used as a functional material in many technical applications. A significant advantage of h-BN is its high thermal and chemical stability. The material is suitable for applications at high temperatures and under demanding environmental conditions. Furthermore, hexagonal boron nitride is characterized by low wettability with many melts, good thermal shock resistance, and excellent electrical insulation properties. Depending on its purity, grain size, and processing form, h-BN can be used as a powder, coating, molded body, or component of ceramic materials. General Applications of Hexagonal Boron Nitride Due to its versatile properties, hexagonal boron nitride is used in numerous industries. In the aerospace industry, h-BN is used, among other things, as a temperature-resistant material and for thermal and electrical insulation. Hexagonal boron nitride also plays an important role in the electronics industry because it can dissipate heat while simultaneously acting as an electrical insulator. This makes the material suitable, for example, for thermally stressed insulation components and applications in modern semiconductor technologies. In the ceramics industry, h-BN is used to produce high-performance ceramics, refractory materials, and temperature-resistant components. Its low wettability to molten glass and metal also makes hexagonal boron nitride a suitable high-temperature mold release agent. It is used, for example, in the casting and processing of glass, as well as in other thermal manufacturing processes. h-BN offers a practical alternative for applications where a clean separation between the workpiece and the mold is required. The properties of platinum cannot, of course, be fully achieved. Hexagonal boron nitride in nanotechnology and semiconductor technology Hexagonal boron nitride is also used in nanotechnology and in the development of modern semiconductor devices. Its electrical insulation, thermal stability, and layered material structure make h-BN interesting for various research and industrial applications. Particularly with suitable material quality, hexagonal boron nitride can be used as a component of coatings, insulating layers, and special ceramic composites. In particularly pure and appropriately tested quality, h-BN can also be of interest for biomedical applications. However, suitability for implants, prostheses, or other medical products always depends on the specific purity, processing, material quality, and approval. The hexagonal boron nitride we supply is of technical grade and is therefore primarily intended for industrial, technical, and commercial applications. Technical Boron Nitride for Demanding Applications Our hexagonal boron nitride (h-BN) is suitable for numerous applications where a combination of temperature resistance, electrical insulation, chemical stability, and good release properties is required. Whether as a raw material for ceramic products, as a component of technical coatings, as a high-temperature mold release agent, or for applications in the electronics and semiconductor industries – h-BN is a versatile material for demanding industrial processes.  

Regular price: From €50.00
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min. 98.0% silicon powder,
min. 98.0% silicon powder,

This silicon powder is mechanically extracted from high-purity raw material with at least 99.0% silicon . The small particle size gives the material increased reactivity and sintering activity, making it particularly interesting for the fields of ignition systems, gas generators, technical ceramics or also high-temperature applications. Chemical analysis (typical values): Si: > 99.0% Fe: 3814 ppmw Al: 297 ppmwCa.: 10 ppmwTi: 110 ppmwP: 39 ppmwCu: 15 ppmwCr: 43 ppmwK: 1.2 ppmwV: 10 ppmwNi: 15 ppmwNa: 0.4 ppmwParticle size distribution (typical values): d10 6µmd50 21µm d90 47µm Signal word: WARNING! Hazard warnings H228: Flammable solid Safety instructions P210: Keep away from heat, hot surfaces, sparks, open flames, and other sources of ignition. No smoking. P402+P404: Store in a closed container in a dry place.

Sale price: €18.00 Regular price: €28.00 (35.71% saved)
min. 98.5% strontium carbonate powder, finely ground, strontium carbonate, CAS No.: 1633-05-2
min. 98.5% strontium carbonate powder, finely ground, strontium carbonate, CAS No.: 1633-05-2
pack size: 5,0kg

Strontium carbonateis a harmless and widely used industrial material. It can be used as a pigment, color improver (absorber in picture tubes) but also in electromagnets. It is primarily derived from naturally occurring minerals such as celestine.Typical chemical/physical specifications:Formula: SrCO3 CAS No.: 1633-05-2 Heavy metal content: < 1 ppm HCl soluble: 0.001% Filling density: 0.769 kg/dm³ SrCO3+BaCO3: > 98.5% SrCO3: 97.05% BaO: 1.06% CaO: 0.37% Na2O: 0.003% S: <0.005% N: 0.15% Fe2O3: <1 ppm Particle size: D50 9.24 µm

Content: 5 Kilogramm (€9.52 / 1 Kilogramm)

Variants from €1.79
Regular price: €47.60
min. 99% praseodymium(III,IV) oxide, 3N, Pr6O11, CAS No.: 12037-29-5
min. 99% praseodymium(III,IV) oxide, 3N, Pr6O11, CAS No.: 12037-29-5
pack size: 250g

Praseodymium (III,IV) oxide is generally used in research and certain technical applications. Due to the special properties of praseodymium, this compound can be used as a dopant in some specialized electronic devices and high-temperature ceramics. The main use is in the production of special glasses and color filters.Signal word: ATTENTION!Danger warningsH302: Harmful if swallowed.H315: Causes skin irritation.H319: Causes serious eye irritation.H335: May cause respiratory irritation.Safety instructionsP261: Avoid breathing dust/fume/gas/mist/vapour/spray.P264: Wash hands thoroughly after use.P270: Do not eat, drink or smoke when using.P280: Wear protective gloves/protective clothing/eye protection/face protection.P301+P312: If swallowed: If you feel unwell, call a poison center/doctor.P302+P352: In case of contact with skin: Wash with plenty of soap/water.P304+P340: If inhaled: Remove person to fresh air and keep comfortable for breathing.P305+P351+P338: If in eyes: Rinse cautiously with water for several minutes. If possible, remove any contact lenses. Continue rinsing.P337+P313: If eye irritation persists: Get medical advice/attention.Chemical specification (typical values) informationSm2O3 < 0.0000002%Y2O3 < 0.0000001%Fe2O3 0.0005%Formula Pr6O11Werth-Metall brandManufacturer number 12037-29-5SiO2 < 0.01%CaO 0.002%CAS no. 12037-29-5Cl < 0.025%Color blackDelivery form fine powderTREO at least 99%Pr6O11/TREO min. 99.5%Ignition loss max. 1.0%La2O3 0.04%CeO2 0.12%

Content: 0.25 Kilogramm (€547.40 / 1 Kilogramm)

Variants from €14.28
Regular price: €136.85
min. 99.0% iron(II,III) oxide, 0.3 µm, synthetic powder, magnetite, black iron oxide, Fe3O4, CAS No.: 1317-61-9
min. 99.0% iron(II,III) oxide, 0.3 µm, synthetic powder, magnetite, black iron oxide, Fe3O4, CAS No.: 1317-61-9

This black iron oxide (Fe₃O₄) is a high-quality, synthetically manufactured pigment for all applications requiring high purity and uniform particle distribution. Chemically, it is iron(II,III) oxide, also known as magnetite – that iron oxide modification which, in addition to its intense black coloration, also brings magnetic properties. Thanks to its narrow grain size distribution and constant composition, the pigment is particularly suitable for coatings, paints and varnishes, pigment pastes, construction chemicals, and magnetic materials – everywhere, that is, where reproducible color values and a clean, deep black are required. Constant Quality Through Synthetic Manufacturing Unlike naturally sourced iron oxides, neither the iron content nor the color tone of synthetic Fe₃O₄ fluctuates from batch to batch. The synthetic origin ensures constant quality and reliable performance in different industrial processes – from wet grinding through extrusion to coloring of mineral binders. For processors, this means: less recipe adjustment, lower scrap rates, and plannable color consistency in series production. Even users who only occasionally process smaller quantities benefit from this – the result of the sample can later be reliably reproduced. Fine Particle Size of 300 Nanometers for Optimal Dispersion The low average particle size of 300 nanometers (0.3 µm) is the decisive technical advantage of this iron oxide black pigment. It enables improved dispersion in both liquid and solid formulations, reduces energy input during dispersion, and provides high color strength with relatively low application rates. The result: uniform, streak-free coloring, good coverage, and enhanced efficiency and effectiveness of the end product. Especially in thin-layer systems such as varnishes, glazes, or printing inks, the fine particle size is noticeable through a smooth, homogeneous appearance. Magnetic Properties as a Functional Added Benefit As iron(II,III) oxide, Fe₃O₄ is ferrimagnetic and thus magnetically attractable. This property distinguishes magnetite from other black pigments and opens applications far beyond mere coloring – such as in ferrites, magnetic pigments, toners, or functional coatings, where coloring and magnetic effect are to be combined. Excellent Stability and Color Fastness The pigment additionally impresses with excellent stability and color fastness. It is light- and weather-resistant, alkali-resistant, chemically largely inert, and does not tend to bleed or migrate. This makes it the preferred choice for manufacturers and processors who value durable and high-quality results – such as for facade paints, paving stones and concrete goods, industrial varnishes, or technical plastic parts. Typical Applications at a Glance Paints, varnishes and coatings (solvent- and water-based) Construction chemicals and concrete goods: concrete, screed, mortar, plaster, paving stones, roof tiles Pigment pastes, inks and printing inks Plastics and elastomers (masterbatch, compounds) Magnetic materials and functional materials (ferrites, toner, magnetic pigments) Ceramics, glazes and engobes Handicrafts, restoration and artist supplies: lime and silicate paints, swamp lime, clay plasters Creative and DIY projects: terrazzo, concrete lights, planters, epoxy resin objects FAQ – Frequently Asked Questions About Black Iron Oxide (Fe3O4) For Private Customers and DIY Enthusiasts What can I use black iron oxide for privately? The pigment is very frequently used for coloring concrete, screed, mortar, joint compound, lime and silicate paints, as well as clay and lime plasters. It is also popular for creative projects such as terrazzo, concrete lights, planters, or epoxy resin objects. Iron oxide black is also valued in restoration and artist supplies because it is very color-stable. What does Fe3O4 mean – is that the same as regular iron oxide? Fe3O4 is iron(II,III) oxide, also called magnetite. It is the black variant of iron oxides. Red pigments, on the other hand, consist of Fe2O3, yellow ones of iron oxide hydroxide. All belong to the same pigment family and can be mixed well with each other. How much pigment do I need to color concrete black? As a guide, 1–5% pigment by weight of cement is typical. From about 5%, color saturation is usually reached; higher dosages bring little additional color depth and can impair strength. For a deep anthracite to black, 3–5% is typical depending on cement color. Recommendation: always make a small sample plate, as the color tone appears significantly lighter after drying. How do I mix in the pigment correctly? Best to pre-disperse the powder in some mixing water before processing or thoroughly premix it with the dry binder. This prevents pigment nests and streaks. Extend mixing time slightly compared to uncolored material. Is the color tone weatherproof – or does it fade in outdoor areas? Iron oxide pigments are considered very light- and weather-resistant as well as lime-fast. Lightening in outdoor areas is usually not due to pigment degradation, but to lime efflorescence on the concrete surface. Can I use it to color epoxy resin or wall paint? Yes. The pigment is fundamentally suitable for epoxy resins and dispersion paints and, thanks to its fine particle size, can be easily stirred in. With resins, sparing dosage is recommended, as over-pigmentation can affect curing. Is black iron oxide magnetic? Yes. Fe3O4 (magnetite) is ferrimagnetic and is attracted by a magnet. Precisely this property makes it interesting for magnetic materials. In practice, it plays no disruptive role for coloring concrete or paints. How should I store the pigment? Dry, cool, and tightly sealed. Moisture leads to lumping; the pigment is usually still usable afterward, but should be ground up or sieved before use. Is handling a health concern? Iron oxide pigments are considered toxicologically non-critical. Since it is a fine powder, dust formation should still be avoided and a dust mask, gloves, and safety glasses should be worn. Please always consult the current safety data sheet. Does the pigment rub off once it has dried? In a cured binder, the pigment is firmly bound and does not bleed out. As loose powder, however, it colors strongly – protect work surfaces, tools, and clothing accordingly. Are there also small quantities for private use? Yes, we offer both small quantities for individual projects and larger containers for regular use. The available options can be found directly in the product selection. For Business and Industrial Customers What parameters does the technical data sheet contain? Fe3O4 content, average particle size (D50), bulk density, oil absorption, pH value, moisture content, water-soluble components and residual sieve residue, as well as color values (L*a*b*) and relative color strength against standard. Technical data sheet and safety data sheet are provided upon request. Can we obtain samples for our own recipe development? You can order small quantities starting from 100g in the shop for your development. How does the pigment behave during dispersion? Thanks to the average particle size of 0.3 µm and narrow distribution, the dispersion effort is minimal. For lacquer systems, pearl mills or dissolvers with suitable wetting and dispersing additivation are recommended; the target fineness of grind is usually achieved quickly. Is the pigment temperature and chemical resistant? Fe3O4 is alkali-resistant and stable in common processing procedures. At higher temperatures and oxygen exposure, oxidation to Fe2O3 can begin, leading to a brownish-red color shift. The specific temperature limit should therefore be checked in the respective process window. For high-temperature applications, we are happy to advise on alternatives. Is the product suitable for plastic coloring and masterbatches? Yes, particularly for polyolefins and technical thermoplastics within their respective processing temperatures. Please check the thermal load capacity in your specific process. Can the pigment be used for magnetic applications? Fe₃O₄ is ferrimagnetic and is used, among other things, in ferrites, magnetic pigments, toners, and functional coatings. Whether the magnetic parameters are sufficient for your application, we will be happy to clarify as part of a sample delivery. Is the pigment suitable for cosmetic, food, or pharmaceutical applications? This is a technical grade product. For applications with special purity requirements, please contact us specifically – suitability must be clarified in advance. How long is the product shelf-life? With dry, sealed storage, iron oxide pigment has very long storage stability. The key is protection from moisture; lumped material can usually be reprocessed by grinding or sieving. What terms apply for larger quantities? We ship stock items quickly. For larger purchase quantities, supply contracts, and call-off quotas, we prepare individual offers – please contact our sales team.

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min. 99.0% lithium carbonate, technical grade, Li2CO3, CAS No.: 554-13-2
min. 99.0% lithium carbonate, technical grade, Li2CO3, CAS No.: 554-13-2
pack size: 1,0kg

Lithium carbonate is used, among other things, in glass production, in the ceramics industry and in metallurgy used. It is used as a melting flux and to increase the melting points of glasses and ceramics. In metallurgy, lithium carbonate is used to produce lithium metal and lithium compounds (lithium hydroxide, also with us available) used.  Chemical/physical analysis values (typical) Appearance: White, very dusty powder insoluble. in / insol. in HCL [%]: 0.0001 Ca[%]: 0.01 Cl [%]: 0.01 SO4 [%]: 0.01 H2O [%]: 0.24 Na [%]: 0.05 K [%]: 0.004 Signal word: Attention! Danger information H302 Harmful if swallowed. H319 Causes serious eye irritation. Safety instructions P264 Wash skin thoroughly after use. P270 Do not eat, drink or smoke when using. P280 Wear eye/face protection. P301 + P312 IF SWALLOWED: Call a POISON CENTER/doctor if you feel unwell. P305 + P351 + P338 IF IN EYES: Rinse cautiously with water for several minutes. If possible, remove any contact lenses. Continue rinsing. P337 + P313 If eye irritation persists: Get medical advice/attention.

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