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    What is Titanium Nitride TiN Powder?

    Introduction to Titanium Nitride Powder TiN Titanium Nitride A golden cubic crystal is TiN. Its chemical formula is TiN. It has a molecular mass of 61.89. The melting point is 2950. The density of the material is 5.43g/cm3.

    Titanium Nitride TiN Pulver's Physicochemical Characteristics
    Titanium Nitride is a synthetic ceramic material that is extremely hard. It is very similar to diamond. Titanium Nitride is chemically stable at ambient temperature, but can be oxidized at 800 degrees at atmospheric pressure by hot concentrated acid. It has the infrared reflection properties of an infrared Ray (IR) and is pale yellow due to its reflection spectrum.
    The relative friction coefficient of titanium Nitride is 0.4 to 0.9 depending on the substrate material. Its most common crystal structure is the sodium chloride type. The relative Stoichiometry between elements is around 1:1. The thermodynamic stability factor X of the TiNx Complex is 0.6-1.2. This thin film of titanium dioxide cooled to near absolute zero is the world's first super-insulating material. It adds 100,000 units insulation.
    Titanium Nitride TiN Pulp Properties
    Other names Tinite, TiNite, TiN powder, nitridotitanium
    CAS No. 25583-20-4
    Formula compound TiN
    Molecular Weight 61.87
    Appearance Powder in golden brown
    Melting Point 2950
    Boiling Point N/A
    Density 5.43g/cm3
    Solubility of H2O Insoluble
    Exact Mass 61.951
    Titanium Nitride TIN Powder CAS 25583-20-4

    Is titanium nitride more powerful than steel?
    It is stronger than many steels when titanium is mixed with other metals such as vanadium or aluminum. The best titanium alloys have a higher strength than lower and mid-grade stainless steel. But, stainless steel of the highest grade is stronger than titanium-alloy.
    However, Titanium has the highest strength-to weight ratio of all known metals. While titanium has the same strength and weight as steel, it is 45% lighter.

    Titanium Nitride TiN Pulver Applications
    Powder metallurgy, fine ceramic raw material powder, conductive materials, and decorative materials can all be used. This material is used extensively in aerospace, high temperature resistance, wear resistance, and other areas. This material is highly electrically conductive and can be used for electrodes and contact in molten salt electrolysis. It can also serve as an additive to hard-cutting instruments. Specifically,
    1. Coatings of titanium nitride These are often used on metal edges to protect the corrosion resistance and life expectancy of drills or milling cutters.
    2. Its metallic luster makes it a popular choice for many purposes. Car and clothing decoration . The outer coating is usually nickel (Ni), chromium(Cr), packaging pipes, and window and door hardware.
    3. This coating can also be used for Applications for military and aerospace Protecting the suspension surfaces of motorcycles and bicycles, as well protecting damping shafts remote-controlled cars, is also important.
    4. This material is safe and compliant with FDA regulations, so it can be used frequently in. medical devices Sharpening scalpel blades, orthopedic bone saws, and directly as implants (especially hip replacement implant) and other medical implants.
    5. Titanium nitride films are available for use in microelectronics As a conductive barrier between active contacts and metal devices. Conductivity of the film can be formed when it is diffused in silicon metal.
    6. This special blocking material also has the mechanical and chemical properties of a ceramic. This process is heavily used in current 45nm chips designs to improve transistor performance. This is the Batteries field by combining titanium oxide with a gate layer of dielectric material (eg. HfSiO can improve the dielectric constant, increase the gate length, drive current, and threshold voltage.
    7. High biostability allows for extended use of the alloy. Bioelectronic Electrodes , such as the prosthesis project under the retina and the micro-electro-mechanical system (bio-mems) in biomedicine, which enables intelligent implants or in vivo biosensors to withstand severe humoral corrosion.

    Titanium Nitride TiN Pulver is Main Supplier
    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.
    High-quality products are what you want titanium nitride TiN powder Please feel free and contact us to send an inquiry. (brad@ihpa.net)

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    Five Properties of Element 113

    five properties of element 113

    The periodic table, the oddly shaped checkerboard that hangs in chemistry classrooms around the world, contains elements with a range of chemical characteristics. They are arranged by their atomic number, a measure of how many protons are packed into the nucleus of an atom.

    One of the most important properties is the atomic number, which determines an element’s position on the table. Elements with a number greater than 92 are called heavy elements.

    In addition to their atomic numbers, heavy elements have other unique properties. Some are liquid and gaseous, while others are ductile and metallic at room temperature.

    These properties make the elements essential to industrial processes and also play a key role in understanding how matter behaves at the fundamental level. For example, it has been shown that a region in the ocean of instability contains bubbles and doughnut-like shapes, which could explain how superheavy elements behave.

    The chemistry of these new superheavy elements will help scientists understand how the universe works, and it is expected to reveal new insights into the structure and behavior of the elements themselves. For instance, nihonium, which has an atomic number of 113, is expected to be a member of the “island of stability” among the superheavy elements.

    Name origin:

    Element 113, discovered in Japan and formally named ununtrium by the International Union of Pure and Applied Chemistry (IUPAC) earlier this year, will now be officially known as nihonium, with the symbol Nh. The name is proposed as a tribute to the land where it was first synthesized, Japan. Nihon is one of two ways to say Japan in Japanese, and it literally means the Land of the Rising Sun.

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