What is molybdenum sulfide? Molybdenum disulfide This is the main component in molybdenite. It is a solid black powder with metallic luster. Molybdenum dioxide has the chemical formula MoS2, its melting point…
What is molybdenum sulfide?
Molybdenum disulfide
This is the main component in molybdenite. It is a solid black powder with metallic luster. Molybdenum dioxide has the chemical formula MoS2, its melting point is 2375degC, its density is 4.80g/cm3 (14.5degC) and the Mohs Hardness ranges between 1.0 and 1.5. It begins to dissolve at 1370°C and is broken down into metallic molybdenum at 1600°C.
Molybdenum disulfide can not be dissolved in water, dilute or concentrated sulfuric, and is usually insoluble in alkalis, organic solvents, and acids. However, it can dissolve in aqua regia, boiled concentrated sulfuric, and other acids.
What are molybdenum disulfide’s applications?
Molybdenum disulfide can be found in many carbon brush additives used in the automotive and machinery industries. You can add it to lubricating oils, greases, PTFEs, nylon, and stearic acids to increase lubrication.
Molybdenum dioxide can also be used for non-ferrous metals release agents and as a lubricant to forging dies. It will improve service time, reduce surface damage, prevent cold welding, and can improve running state. Make sure that the threaded connection is in its best condition when connecting.
Molybdenum diulfide can be mixed with volatile solvents to be sprayed onto metal surfaces. It can also be added with engineering plastics in order to make lubricating elements. Molybdenum sulfide can also be used directly in electronics, spraying or electroplating as well as hardware and screws.
Molybdenum disulfide can be used as a solid lubricant. It is particularly well-suited to high temperature and high temperatures. It is diamagnetic, so it can be used to produce a line photoconductor or a semiconductor of P-type and N-type conductivity. Additionally, it has the functions rectification as well as energy conversion. Molybdenum dioxide can also be used to catalyze the dehydrogenation complex hydrocarbons.
Molybdenum disulfide, also known as “the king among advanced solid lubricants”, is another name for it. This solid powder is made from natural molybdenum powder after chemical purification. Molybdenum disulfide’s color is black, slightly silver-gray and has metallic luster. It is also insoluble in water. It has good dispersibility and low adhesion. It can be added with other greases to form a colloidal condition that doesn’t adhere to them. This can increase the lubricity as well as the extreme pressure of grease.
Molybdenum disulfide works well in extreme conditions, such as high temperature, high pressure, and high loads. It also prolongs equipment’s lifespan.
Molybdenum dioxidide is used in friction material to reduce friction at low temperatures, increase friction at high temperatures, and with little loss on ignition.
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Cadmium iodate is a slightly soluble salt. It is produced by the iodic acid reaction with cadmium chloride. The resulting white powder is used as a catalyst in organic synthesis. It can…
Cadmium iodate is a slightly soluble salt. It is produced by the iodic acid reaction with cadmium chloride. The resulting white powder is used as a catalyst in organic synthesis. It can also be used in electroplating and phosphor industrial products.
Cadmium iodate is characterized by its compound formula CdI2. This crystalline material exhibits hexagonal symmetry, which is typical for compounds with strong polarization effects. In addition, iodate bridges link units in parallel to the (100) plane. Typical iodate ion structures are hexagonal close-packed lattices.
When mixed with a ligand, a crystalline form can be obtained. One possible method involves the substitution of IO3- by Cl-. Alternatively, a cadmium chloride polymorph can be prepared. These are often used in photoconductive coatings.
The solubility of cadmium iodate in solvents has been investigated in a range of solutions. A number of standard methods were employed to analyze the ionic strength, molal solubility, and ionic ratio. A log of solubility was plotted against the ionic strength of the solvent. Several different salts were studied. The ionic strength of magnesium sulfate solution was found to be lower than that of potassium chloride solution.
Solubility of g-Cd(IO3)2 in aqueous solutions was found to be 2.45 molal. At 60degC, g-Cd(IO3)2 precipitates as a colorless crystalline powder.
The crystalline form of cadmium iodate has the formula CdI2. The iodic acid is solubilized in 20 ml of distilled water. After mixing with cadmium chloride, a white powder is obtained.
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About Neodymium Nitride NdN Powder:Neodymium nitride is known as NDN powder. Neodymium Nitride NDN powder for lithium battery; Energy storage materials; Catalysts, etc. High purity rare earth compound materials, strictly control the…
About Neodymium Nitride NdN Powder:
Neodymium nitride is known as NDN powder. Neodymium Nitride NDN powder for lithium battery; Energy storage materials; Catalysts, etc. High purity rare earth compound materials, strictly control the content of the same group of rare earth elements, widely used in petrochemical, artificial crystal, functional ceramic devices, magnetic materials, display and other fields. Feel free to send an inquiry to get the latest price if you would like to buy Neodymium Nitride NdN Powder in bulk.
Product Performance of Neodymium Nitride NdN Powder:
Our neodymium nitride NdN powder (CAS 25764-11-8) is with high purity, ultrafine particle size, bigger surface area.
Technical Data of Neodymium Nitride NdN Powder:
Part Name | High Purity Neodymium Nitride Powder |
MF | NdN |
Purity | 99.9% |
Particle Size | -100 mesh |
Application | Neodymium nitride NdN powder is used for lithium electronic batteries; energy storage materials; catalysts, etc.; |
Specification of Neodymium Nitride NdN Powder:
How is Neodymium Nitride NdN Powder produced?
1. The dehydrated chloride is dissolved in methanol and electrolyzed with graphite anode (D = 12mm) and mercury cathode. The electrolytic container is equipped with glass joints with multiple grinding holes for inserting graphite anode, agitator, N2 conduit, water jacket and piston at the bottom. The voltage of 40V is used to ensure the current of 1 ~ 2A. The size of the current depends on the distance between the anode and cathode (10 ~ 20mm). The concentration of rare earth chloride is half full and the temperature is about 20℃. As used in the electrolytic reaction of cathode surface area is larger, 1 a current corresponding to the current density of 0 04 a/cm2.After 20 ~ 40h of electrolysis, the amalgam alloy flows into a container consisting of two spherical tubes. The impurities were washed with methanol in the N2 atmosphere. The unreacted mercury is then distilled from spherical tube 1 to spherical tube 2, and the spherical tube is disconnected. The composition of amalgam in tube 1 depends on the temperature at which mercury is distilled (200 ~ 300 ° C).
2. Rare earth metals are in contact with mercury (20 ~ 30 times as much as that of rare earth metals) in glass tubes at 300 ~ 350℃.The amalgamation also purifies the metal, because the rare-earth metal oxides, which are lighter than mercury, float on the surface of the amalgam, creating a thick slurry of solid amalgam that can be nitrided directly.
Applications of Neodymium Nitride NdN Powder:
Neodymium nitRIDE pure rare-earth compound material strictly controls the content of the same group of rare earth elements, widely used in petrochemical, artificial crystal, functional ceramic devices, magnetic materials, display and other fields.
Packing & Shipping of Neodymium Nitride NdN Powder:
We have many different kinds of packing which depend on the neodymium nitride NdN powder quantity.
Neodymium nitride NdN powder packing: vacuum packing, 1kg/bag, 25kg/barrel, or as your request.
Neodymium nitride NdN powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.
Neodymium Nitride NdN Powder Properties |
Other Names | Neodymium Nitride,NdN Powder |
CAS No. | 25764-11-8 |
Compound Formula | NdN |
Molecular Weight | 158.247 |
Appearance | Solid |
Melting Point | N/A |
Solubility in water | N/A |
Density | N/A |
Purity | N/A |
Particle Size | N/A |
Boling point | N/A |
Specific Heat | N/A |
Thermal Conductivity | N/A |
Thermal Expansion | N/A |
Young’s Modulus | N/A |
Exact Mass | 155.911 |
Monoisotopic Mass | 155.911 |
| |
| |
Neodymium Nitride NdN Powder Health & Safety Information |
Safety Warning | N/A |
Hazard Statements | N/A |
Flashing point | N/A |
Hazard Codes | N/A |
Risk Codes | N/A |
Safety Statements | N/A |
RTECS Number | N/A |
Transport Information | N/A |
WGK Germany | N/A |
What is Magnesium Nitrode? Magnesium nutride is an inorganic compound with a chemical formula of Mg3N2. It belongs to the cubic crystalline system. At room temperature, pure magnesia nitride has a yellowish-green…
What is Magnesium Nitrode? Magnesium nutride is an inorganic compound with a chemical formula of Mg3N2. It belongs to the cubic crystalline system. At room temperature, pure magnesia nitride has a yellowish-green color. However, magnesium nitride that contains a small amount of magnesium oxide impurities is grayish-white.
Magnesium Nitride’s molar mass is 100.95g/mol. It has a density of 2.712g/cm3. Magnesium-nitride can be completely dissolved into acid and water but is partially dissolved when it is mixed with ether and alcohol.
Magnesium Nitride has a melting temperature of 1500 degrees. Magnesium Nitride, like other metal nitrides reacts with the water to make ammonia. Used as a catalyst. Use acidic or aqueous nonmetallic compounds to react to create ammonium salts.
Magnesium oxide is a ceramic substance in nature. Magnesium nutride has high resistance to corrosion, which greatly increases production efficiency. Magnesium-nitride has high thermal conductivity as well as high temperature and corrosion resistance. Magnesium-nitride is also important because it can be used as a catalyst to synthesize boron nitrogen.
What does Magnesium Nitride do?
1. This is used to create nitrides of other elements that are hard, durable, high thermally conductive, resistant to corrosion, wear resistance, and high temperature resistance. Magnesium nitride was the catalyst in the first successful synthesises of cubic-boron nitride.
2. This is used for high-strength steel additives. Magnesium trioxide (Mg3N2) replaces the desulphurized magnesia in construction steel smelting. It is useful to increase steel’s density, strength and tension. Additionally, magnesium nitride (Mg3N2) can be used to reduce the number of additives which helps reduce the cost of production steel.
3. Special ceramic materials can be prepared using this method
4. To make special alloy foaming agents
5. Special glass is made
6. Catalytic polymer crosslinking
7. This is for the recycling of nuclear waste
How to Make Magnesium Nitride.
Presently, the most common preparation methods for magnesium nitride consist of direct reaction method with magnesium powder, reaction method with magnesium with nitrogen in plasma flow, magnesium coil blast method in nitrogen atmosphere and low pressure chemical gases complementary product method.
G. Soto et.al. Pulse laser deposition allowed for the preparation of amorphous magnesium oxide films with different Mg/N ratios. These methods are difficult to industrialize because they require long processes and high yields.
While direct magnesium powder-nitrogen reaction has industrial value, it is more difficult and requires longer reaction times and higher temperatures. The shape of magnesium nitride particles is also less precise and easier to agglomerate. This makes it not suitable for industrial quality. N2 and N3 can be broken down into N- more quickly than N2, while H2 can inhibit the formation MgO. Ammonia gas can also be used to provide nitrogen. Chen Faqin et al. Liquid ammonia was used as a nitrogen source to make magnesium nutride powder by direct nitriding magnesium powder. We can draw the following conclusions: Thermodynamic analysis shows that liquid ammonia could react more with magnesium powder than nitrogen to produce magnesium nitride. Magnesium nitride powder of high quality and uniform particles can be prepared at 600°C in ammonia atmosphere. After 1 hour, heat to 800°C, 500ml/min ammonia flow, and 1 hour nitriding.
Magnesium Nitride Magnesium Nitride Mg3N2 Pulver Supplier
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What is it? Spherical Quartz Powder ? Spherical quartz powder, made from quartz stone, is obtained after purification. Amorphous powder is made from irregularly angular particles and transformed into regular spherical grains….
What is it?
Spherical Quartz Powder
?
Spherical quartz powder, made from quartz stone, is obtained after purification. Amorphous powder is made from irregularly angular particles and transformed into regular spherical grains.
The key features of
Spherical Quartz Powder
Spherical quartz powder offers the benefits of a smooth surface and large specific area. It also has high chemical stability. First, the spherical material is very fluid. The resin is mixed evenly with it to form a film. The greater the amount of quartz powder used to fill the mold, the lower its thermal conductivity. Also, the molding compound’s thermal expansion coefficient will be smaller. Additionally, single crystal silicon has a higher thermal expansion coefficient. This will improve the performance of electronic components. Second, the stress in spherical powder is less than half that of angular powder. Furthermore, the molding compound made with spherical Quartz powder has the lowest stress concentration, and the strongest. The surface of spherical quartz powder is smooth, with a small friction coefficient and minimal wear to the mold, which can increase the mold’s useful life by more than one-third.
Spherical Quartz Powder Spherical SiO2 Properties
|
Other Titles
|
Fused quartz, spherial quartz, spherical SiO2, silica
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No.
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7631-86-9
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Combination Formula
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SiO2
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Molecular Weight
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60.09
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Appearance
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Powder White
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Melting Point
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1,600deg C (2,912deg F)
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Solubility of in water
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N/A
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Density
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2533 kg/m3
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Purity
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99.5-99.9%
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Particle size
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10-30nm
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Boling Point
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2,230deg C (4,046deg F)
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Specific heat
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N/A
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Thermal Conductivity
|
N/A
|
Thermal Expansion
|
N/A
|
Young’s Modulus
|
N/A
|
Exact
|
59.9668 g/mol
|
Monoisotopic
|
59.967 D
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Spherical Quartz Powder Spherical SiO2
Spherical Quartz powder’s uses
Spherical quartz powder can be used in many different applications. Electronic packaging is one of the most popular uses. Electronic packaging is an industry that supports integrated circuits. As integrated circuits become more sophisticated, the requirements for packaging materials are rising. Packaging forms are continually optimized and up-dated to meet these new requirements. Substrat, plastic packaging materials, lead frame, and solder are the three main ingredients of electronic packaging. Plastic packaging is a low-cost and easy-to-make product that can be mass produced in large quantities. This has helped it grow rapidly. Plastic packaging is responsible for 95% worldwide integrated circuit market. %above. EMC is the main plastic encapsulant. It houses more than 95% microelectronic component.
1. Microelectronic packaging must be able to withstand high levels of moisture, stress, low alpha-rays, dip soldering, reflow soldering, and plastic sealing. To address this issue, epoxy molding compounds must be doped inorganically in the resin matrix. Nearly all inorganic materials used today are quartz micropowder or silicon micropowder. Large-scale and ultra-large scale integrated circuits now have more stringent requirements for packaging materials due to their rapid growth. Quartz powder, an important support material for EMC requires that its particle size be within the required packaging range. Additionally, it must be pure. High and low radioactive elements are essential for particle shape. Spheroidization requirements apply to quartz powder.
2. Spherical silicon nanopowder has a great shape and can also meet many technical requirements for high-end integrated circuits. Its use can significantly reduce the thermal expansion coefficient and dielectric constant of plastic sealing materials. Also, it has a great rigidity, weather resistance resistance, impact resistance and compression resistance. The products also have excellent arc resistance insulation properties, UV radiation resistance, and other important material for electronic packaging. In addition to its main use in electronic packaging, spherical Quartz powder can be used extensively in the manufacture and processing of advanced precision ceramics, electronic inks, optical fibres, high-end cosmetics, precision grinding optical devices and components, as well as in fillers for special paint coats.
The principal supplier of
Spherical Quartz Powder
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oxide powder
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Can alumina cause cancer in humans? Alumina is commonly found as alumina, bauxite and other forms on earth. When aluminum is exposed in the air, it forms alumina and then a thin…
Can alumina cause cancer in humans? Alumina is commonly found as alumina, bauxite and other forms on earth. When aluminum is exposed in the air, it forms alumina and then a thin layer of aluminum on its surface. This makes aluminum resistant to corrosion.
Alumina Is an insoluble compound made of aluminum that doesn’t cause any acute toxic effects. While long-term exposure can cause serious health effects and health risks, it’s almost impossible for most people to be exposed to alumina in modern industry.
This compound is not only irritating to the skin, but also has a mild chronic toxic effect.
For what purpose is alumina being used?
One of the most widely used ceramic materials in technical manufacturing is aluminum oxide or Alumina. It can be used to produce many components across many industries. The manufacturing process of alumina injection molding allows for the creation of customized parts that can be used in different industries. There are two main purposes for this process:
Medical industry. The chemical properties and hardness of alumina as well as their biological inertia make it an ideal material for many medical applications.
Protective equipment – The light weight and strength of alumina makes it an ideal material for protecting vehicle and body armor as well for making bulletproof synthetic sapphire windows and ballistics.
Electric industry: The compound’s high boiling point (and melting point) makes it an excellent material for making high temperature furnace insulation, and electric insulators. The microchip industry is another major user of Alumina.
Gemstone Industry: The formation of rubies and sapphires is made from alumina. This is how these precious gems can be made.
Applications: Because alumina has chemical inertia, it makes a great filler to bricks, plastics, and heavy pottery. This is a great economic alternative to industrial diamond.
Aluminium oxide nanoparticles
Alumina can be found in many shapes, such as a hexagonal, spherical flake, cube or cylinder, fiber, flower and curl, among others.
A nano-alumina consist of both fibers and rods. Nano alumina is distinguished from regular alumina by its higher elastic modulus, superior thermodynamic and chemical stability and unique optical characteristics.
Fibrous allumina is a high-performance class of inorganic fibres. Most of it is Al203. However, some fibers also include metal oxides such SiO2 (or B2O3). The benefits of this fiber include high strength, exceptional heat resistance, and high temperature resistance to oxidation. It has a high tensile strength and can withstand higher temperatures. Long-term service temperatures are between 1450 and 1600 degrees. Because of its excellent surface activity, you can easily compound it with resin, metal or ceramic matrix, creating composites with outstanding properties that can be used in many applications. It’s considered the highest-potential high temperature material.
High purity of alumina
High purity alumina, a white powder crystallized in crystal form, is usually classified into the following types: 4N (99.9% purity), 3N (10.99% purity), and 5N (19.999% purity).
High purity Alumina is highly sinterable, dispersible, and porosity.
4N high purity aluminum is used most often in rare earth tricolors phosphors as well as energy-saving lanterns and lamps.
5N high-purity alumina used in the manufacture of ceramic separator, sapphire glass and a lithium battery. The excellent mechanical strength and stability of sapphire crystal make it an excellent substrate for LED. It is also easy to clean. High purity 5N Alumina has been in high demand due to the increased demand for energy-saving standards. Also, sapphire is used in the iPhone phone camera. This drives sapphire use in consumer electronics.
In ceramic separators of lithium batteries, 5N high purity aluminium is used. A nano-alumina coating on the surface can significantly improve safety and high temperature resistance of the lithium battery.
The high-purity alumina is well known for its excellent chemical, mechanical and thermal properties.
Aluminium oxide Price
Price is affected by many things, such as the demand and supply in the market and industry trends. Economic activity. Unexpected events.
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The main features of silica Aerogel Silica aerogel’s unique structure gives it the properties of high heat insulation and low sound transmission. Water glass is a rational choice when making silica jelly….
The main features of silica Aerogel
Silica aerogel’s unique structure gives it the properties of high heat insulation and low sound transmission. Water glass is a rational choice when making silica jelly. Water glass is an alkali silicate made from silicon dioxide, alkali oxides and water. It is also known by the name sulphuricine. Water glass can be classified into two types by the alkali metallic, which are potassium water glass or soda water glasses. This stage of preparation silica aerogels requires that you use low-cost silicon sources.
Silica aerogel’s main purpose
1. Thermal insulation
Thermal insulation is the most popular use for silica gel. Silica aerogel is thermally conductive at a level below 0.02W/(m*k), which is lower than air. Silica aerosol has the highest thermal insulation properties in the current process. It is ideal for national defense, industry, scientific and research purposes, especially in the field of navigation and aerospace. It can also serve as a pipeline insulation. , Insulation glass for refrigeration, heat insulation glass for clothing, heat insulation glass for heat.
2. Catalyst and catalyst
Silica gel’s strength and heat transfer can be continually improved through research and development. This can allow silica gel to be used in catalyst carriers and catalysts. Organic fusion of SiO2 & TO2 or cohydrolysis Si and metal alkoxide can produce TO2-SiO2 Aerogel. It can increase the specific surface area and adsorption efficiency of silica aerogel.
3. Acoustic delay
Because silica gel is porous, it transmits sound in its pores. There will be significant energy loss at this point, which reduces sound wave amplitude and slows down sound speed. Aerogels can also transmit very little in solid materials. This silica aerogel, which is based on silica, has a high speed and a large acoustic interference propagation range. It also has the benefits of corrosion resistance as well as aging resistance and high temperature resistance. Silica aerogel can now be used in ultrasonic instruments, acoustic instruments, soundproof windows.
Tech Co., Ltd. is a silica aerogel supplier. We have over 12 years of experience in chemical products development and research. We accept credit cards, T/T and Paypal payments. We will ship goods overseas via FedEx, DHL and by air or sea to our customers.
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Introduction to Molybdenum Silicide MoSi2 Pulp Molybdenum silicide In 1906, it was discovered. In different circumstances, silicon and molybdenum may form molybdenum trisilicide, molybdenum pentasilicate, and molybdenum silicate (MoSi2). Molybdenum trisilicide (MoSi2)…
Introduction to Molybdenum Silicide MoSi2 Pulp
Molybdenum silicide
In 1906, it was discovered. In different circumstances, silicon and molybdenum may form molybdenum trisilicide, molybdenum pentasilicate, and molybdenum silicate (MoSi2). Molybdenum trisilicide (MoSi2) – a Dalton type intermetallic compound – is the most important. The excellent high-temperature essential qualities of the atomic combination found in its crystal structure show coexistence between metal bonds and covalent bond.
Molybdenum Disilicide
It is an organic compound. The chemical formula for MoSi2 is gray metal solid. Although insoluble in most acids it is soluble in nitric and hydrofluoric acids. Both types of atoms have the same radii as well as electronegativity. This is similar to metal or ceramic.
Molybdenum Disilicide
The surface is electrically conductive and forms a passivation layer made of silicon dioxide at high temperatures. This prevents further oxidation.
It can be used in high-temperature, oxidation-resistant coatings, electric heating elements and integrated electrode films, as well as structural materials, composite reinforcements, wear-resistant materials, structural Ceramics, and other areas of bonding material.
Molybdenum silicicide MoSi2 MoPi2 Powder Physicochemical properties
MoSi2 refers to a type of intermediate phase that has the highest silicon content in Mo-Si’s binary alloy system. This is a Dalton-type intermetallic composition with a fixed structure. It has both the characteristics of a metal and a ceramic and is an excellent high-temperature materials. High-temperature oxidation resistance and oxidation resistant temperature up to 1600 with SiC equivalent; Moderate densities (6.24g/cm3). Low thermal expansion coefficient (8.10-6K-1); Excellent electric conductivity. Higher brittleness and ductile transition temperatures (1000), below the hardbrittleness of ceramics. It is a metal-like soft material above 1000. MoSi2 is used primarily as a heating element and integrated circuits. It also serves as a high-temperature, oxidation-resistant coating and high temperature structural material.
MoSi2 consists of silicon and molybdenum bonded with metal bonds. While silicon and silicon are covalently bonded, Molybdenum disilicide can be described as a gray tetragonal stone. Insoluble in all mineral acids (including aqua-roya), but easily soluble and stable in hydrofluoric or nitric acids mixed acid. It can also be used as an oxidation atmosphere heating element at high temperatures (1700).
An oxidizing atmosphere forms a protective layer on the surface quartz glass (SiO2) that has been heated to high temperatures. This prevents continuous oxidation. SiO2 protective layer is formed when the temperature is greater than 1700. The SiO2 protective coating is thickened at 1710 melting point and fused with SiO2 to form molten droplets. Its surface-extending ability causes it to lose its protective properties. The protective film is formed again when the element is continuously exposed to the oxidant. Due to the high oxidation at low temperatures, this element can’t be used for extended periods of time at 400-700.
Molybdenum Silicide MoSi2 Powder Properties
|
Other Names
|
molybdenum disilicide (MoSi2 Powder)
|
CAS No.
|
12136-78-6
|
Formula compound
|
MoSi2
|
Molecular Weight
|
152.11
|
Appearance
|
From gray to black powder
|
Melting Point
|
1900-2050 degC
|
Boiling Point
|
N/A
|
Density
|
6.23-6.31g/cm3
|
Solubility of H2O
|
N/A
|
Exact Mass
|
153.859261
|
Molybdenum Siliconicide MoSi2 MoSi2 powder CAS 12136-878-6
Molybdenum Siicide MoSi2 Powder Applications
MoSi2 can be found in many heating elements.
Heating elements with molybdenum diilicide
Can be used at temperatures as high as 1800°C in electric furnaces for production environments in glass, steel and ceramics. Although they are very brittle, these components can still be operated at high power and without aging. Their resistivity also does not decrease with operating time.
Main supplier of Molybdenum Silicide MoSi2 Pulp
Technology Co. Ltd. is a trusted global supplier and manufacturer of chemicals and Nanomaterials. They have over 12 years experience in producing super high-quality chemicals, such as silicon powder.
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molybdenum silicide, MoSi2 Powder
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What exactly is lithium stearate and how does it work? The lithium salt of the stearic acid is what lithium stearate looks like. It is produced from lithium hydroxide, cooking butter and…
What exactly is lithium stearate and how does it work? The lithium salt of the stearic acid is what lithium stearate looks like. It is produced from lithium hydroxide, cooking butter and other fats.
It can be used to grease general purpose machinery and is highly resistant to water. The versatility of lithium stearate allows it to be used at low and high temperatures. This makes it a versatile product that can be used across many industries. It is used both as a general-purpose grease in cosmetics, and also as a plastic stabilizer. This compound is also a corrosion inhibitor in petroleum because of its unique properties.
How is lithium-stearate used?
It is also useful as an oil thickener in both synthetic and natural oils.
It’s a great advantage in the manufacturing of light metal molds.
It’s a richer grease that is highly suitable for use at very high temperatures.
It may increase the melting temperature and improve the elastic properties of microcrystalline wax.
Lithium Stearate has a greater resistance to consistency loss than other sodium and potassium soaps, with a melting point of 22 degrees Celsius compared to 140 degrees Celsius.
You will be amazed at its anti-rust, anti-corrosion and other properties.
Lithium stearate is water-resistant, but it works best in different environments.
It is a fantastic sealant.
What does lithium soap mean?
The fatty acid salt lithium 12-hydroxystearate can also be called “lithium soap”. It’s the most commonly used soap to thicken or stabilize grease. Lithium salts perform better than soaps containing other counterions such as calcium, sodium and barium.
Lithium Stearate Pricing
Price is affected by many things, such as the demand and supply in the market and industry trends. Economic activity. Unexpected events.
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Lithium Stearate Supply
Technology Co. Ltd. (), is a trustworthy Lithium Stearate Manufacturer, and Lithium Stearate Supplier. They have more than 12 years experience. All of our products can be shipped worldwide.
You can contact us for high-quality liquid stearate product. (brad@ihpa.net)
Colloidal Gold development history It is possible to trace the origins of gold nanoparticles back to the 16th Century. nanogold emerged from the scientific community after Paracelsus invented “drinking golden” for mental…
Colloidal Gold development history
It is possible to trace the origins of gold nanoparticles back to the 16th Century. nanogold emerged from the scientific community after Paracelsus invented “drinking golden” for mental disorders. Faraday studied Dalton’s theory and used gold chloride in 1857 to reduce the solution. With the addition of electrolytes, the solution would turn from ruby to blue, then eventually agglutinate, before being stopped by gelatin. Edward et.al. from Chicago discovered that nanogold solutions could help patients recover and improve their health. Faulk combined rabbit anti-salmonella and nano-gold antiserum in immunogold staining, which was the first to use this combination. This technology led to nano-gold immunolabeling technology.
Colloidal Gold
1.Gold nuparticles may be used in the detection of cancer
Sciencedaily stated that nanoparticles of gold can be used to detect early cancers. Injecting nanogold into a patient can make cancer cells stick to the body and reflect certain wavelengths of light.
2.Gold nanoparticles may be used in chemotherapy for cancer
Both normal and immune cells can be damaged by conventional chemotherapy. Xinhuanet.com stated that gold nanoparticles could improve the effectiveness of chemotherapy as well as reduce side effects. The gold nanoparticles have a high absorption rate and can therefore be coated with chemotherapy drugs to be delivered directly to the cancer cells. You can heat nanogold from infrared to kill cancer cells. This means that chemotherapy using nanogold can be used to effectively kill cancer cells, without affecting normal cells.
It is possible to make 3.Nanogold into an injectable
These USES can be combined with nano-gold injections. Chinanews.com has reported that nano-gold can be used to balance the electrolyte level of the cells. It also improves the immunity. It is small and will reach the cells quickly because it’s easily injected. You can use it to restore immune system, reduce inflammation and pain, nerve stimulation, brain function, and blood circulation.
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