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Nickel Aluminum is used for preparation of Raney Nickel catalyst. Group: Biochemicals. Grades: Highly Purified. CAS No. 12635-29-9. Pack Sizes: 5g, 10g. Molecular Formula: N/A, Molecular Weight: US Biological Life Sciences.
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Nickel Aluminum Ni-Al Alloy Powder
Nickel Aluminum Ni-Al Alloy Powder. Uses: Nickel aluminum alloy powder is mainly used in the catalyst hydrogenation reaction of basic organic chemicals. Group: Alloy powders.
100g Pack Size. Group: Catalysts, Inorganic Chemicals. Formula: AlNi. CAS No. 12635-29-9. Prepack ID 13853276-100g. Molecular Weight 85.67. See USA prepack pricing.
Aluminum-nickel alloy
Aluminum-nickel alloy. Uses: Nickel aluminides, ni3al, nial: the intermetallic phase ni3al is the well known y phase which is as coherent fcc precipitate responsible for the good creep properties of nickel base superalloys. ni3al and nial were also considered for high temperature structural applications mainly in the 1990-ies. powder metallurgical as well as melt metallurgical production were pursued. high production cost, lacking low temperature ductility and lacking microstructural stability were responsible that there was never a real break-through of these materials for structural applications. Group: Alloys. Alternative Names: Nickel aluminum, 99.0% min (metals basis); Nickel-aluminium alloy; RP18439; Aluminum-nickel alloy, purum, 50% Al basis, 50% Ni basis; Nickel aluminum alloy powder; Raney nickel aluminium; Raney nickel aluminum alloy; nickel-aluminium; Z3705; Nickel Aluminide Powder. CAS No. 12635-27-7. Product ID: aluminum; nickel. Molecular formula: 85.675g/mol. Mole weight: AlNi. [Al].[Ni]. InChI=1S/Al.Ni. NPXOKRUENSOPAO-UHFFFAOYSA-N.
Carbonyl Nickel Coated Aluminum Powder (Ni Shell, Al Core)
Carbonyl Nickel Coated Aluminum Powder (Ni Shell, Al Core). Uses: Combustion catalyst, additive, electronics, purification of uranium. Group: Elements nanoparticles.
2,2':5',2''-Terthiophene (TTh) may be prepared by nickel catalysed coupling reaction of grignard's reagent derived from 2-bromothiophene and magnesium. It generates singlet oxygen. In nature, it is found in the floral extract of Tagetes minuta and Echinops grijisii. It is known to be toxic to mosquitoes. It also exihibits antifungal activity. 2,2':5',2''-Terthiophene (3T) is a tri-thiophene based low band conductive polymer that is prepared by reacting 2,5-dibromothiophene and thienylmagnesium bromide in the presence of nickel catalyst. Uses: 3t can be combined with 3,4-ethylenedioxythiophene (edot) in a tetrabutylammonium perchlorate solution for use as an electrochromic copolymer for a wide range of s like photovoltaics and polymer light emitting diodes (leds). it can also be used to form metal-organic based thin films with metals like aluminum, silver, and calcium which can potentially be used for optoelectronics based s. electroche. Group: other electronic materials synthetic tools and reagents. Alternative Names: 2,5-Di(thien-2-yl)thiophene. CAS No. 1081-34-1. Pack Sizes: Packaging 1 g in glass bottle. Product ID: 2,5-Dithiophen-2-ylthiophene. Molecular formula: 248.4. Mole weight: C12H8S3. C1=CSC(=C1)C2=CC=C(S2)C3=CC=CS3. InChI=1S/C12H8S3/c1-3-9 (13-7-1)11-5-6-12 (15-11)10-4-2-8-14-10/h1-8H. KXSFECAJUBPPFE-UHFFFAOYSA-N. 95%+.Â…
Titanium Carbon Nanotubes
Titanium Carbon Nanotubes are generally immediately available in most volumes. Additional technical, research and safety (MSDS) information is available. Carbon Nanotubes are Single-Walled, Double Walled and Multi-Walled black nano scale cylindrical tubes of graphitic carbon with numerous applications. Carbon Nanotubes are the stiffest and strongest known fibers and have unique electrical properties. When used as reinforcement fibers, carbon nanotubes can improve the quality and properties of metal, polymer and ceramics. Carbon nanotubes can behave like a conductive metallic or semiconductor depending on their structure, which is useful for nanoscale electronic devices and in electrically conductive films in coatings, plastics, nanowire, nanofiber and in certain bioscience applications. Recently, carbon nanotubes have been demonstrated to create the "darkest" known material absorbing all wavelengths or "colors" of light which will prove useful in solar and electronic applications. When combined with Aluminum, Copper, Magnesium, Nickel, Titanium, and Tin, Single-Walled Carbon Nanotube materials reveal enhanced tensile strength, hardness and elastic modulus characteristics. Titanium/Carbon Nanotube composites, research shows, demonstrate a considerable increase in tensile stress, hardness and yield stress. In an additional study, when compared to pure Titanium, Titanium/Carbon Nanotube composites displayed increasÂ…
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