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  • 白金黒触媒白金ナノ粉末

    カスタマイズされた金属白金黒触媒白金ナノ粉末 白金は貴金属の一つであり、これは、最高の触媒と酸化防止剤、小さな粒子サイズ、強く、安全、安定、信頼性、環境に優しい、無毒、無味無害、無害で、ナノプラチナ(pt)の一つであり、バイオメディカル、触媒産業、化粧品など 1.プラチナ ナノ粉末 生物医学のための 水素及びナノプラチナは、酸化ストレス障害の治療と共に使用することができる相乗効果を有する。研究は、ヌードマウスにおける骨転移の治療における白金ナノ粒子媒介光熱効果が、骨腫瘍の増殖および骨溶解性骨破壊の良好な阻害であり得ることを示した;迅速な検出のためのナノプラチナブラック修飾に基づく乳酸バイオセンサー 2。 白金 ナノ粉末 触媒として ナノ白金粉末は、優れた生体触媒活性を有し、ポリマーの水素化、還元及び合成に適用することができる。ナノプラチナは、高コストのため高価で燃料電池触媒として使用することができ、白金を代替するためにナノニックルを使用し、燃料電池の触媒としてナノプラチナ効率を向上させる方法を模索しているコストを節約する。昨年の中国の研究では、ジグザグの表面に極細白金ナノワイヤ触媒が開発され、燃料電池触媒の表面活性および比表面積が大幅に増加し、触媒活性が50倍以上向上しました。 3。 白金 ナノ粉末 化粧品用 白金ナノ粒子は、その強い耐酸化性のために、白金は人体内のフリーラジカルを効果的に除去することができる。アンチエイジング効果を発揮し、同時に美白効果を発揮します。 白金 ナノ粉末 食品防腐剤、自動車排気ガス浄化などにも使用できます。ナノプラチナは驚くべき機能をたくさん持っていますが、驚くべき機能を1つずつリストアップすることはできません。 あなたが戸口にいる場合 白金 お気軽にhwnano@xuzhounano.comまでご連絡ください。 more

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炭化ケイ素の用途と特性 炭化ケイ素の用途と特性

炭化ケイ素は、多様な産業用途がある重要な非酸化物セラミックです。高い硬度と強度、化学的および熱的安定性、高い融点、耐酸化性、高い耐侵食性、言い換えれば、高い熱伝導率、高い安定性、良好な耐摩耗性、および小さな熱膨張係数の特性を備えています。 主に研磨剤として使用し、炭化ケイ素の他の用途は次のとおりです。耐火物、電気デバイス、電子機器(半導体)、ディーゼル粒子フィルター、セラミック、工業炉、構造材料、および冶金。炭化ケイ素は、航空宇宙産業、自動車産業、発電産業でも、高度なセラミック複合材料の強化材と...

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  • 高純度mgoナノパウダー
    99.9% High Purity Magnesium Oxide Nanopowder MgO Nanoparticles Magnesia
        Nano-magnesia is a white, odorless, non-toxic powder with a small particle size and a large specific surface area. It has different optical, electrical, magnetic and chemical properties than magnesium oxide, and has high hardness, high purity and high melting point.Nano-magnesia is widely used in electronics, catalysis, ceramics, oils, coatings and other fields.
  • 99.9%の中国の供給業者の酸化マグネシウム粉末
    99.9% China Supplier Magnesium Oxide Powders
    Magnesium Oxide Powders with the 99.9% purity and the high melting point which use for the chemical reagents.
  • 酸化マグネシウムナノ粒子抗菌20-30nm
    Magnesium Oxide nano particles antibacterial 20-30nm
    Magnesium Oxide nano particles antibacterial 20-30nm         Magnesium Oxide nano particle(MGO) with a wide band-gap is an important inorganic material. MgO nano powder is a promising antibacterial agent because of its high resistance to harsh environment.  For the antibacterial ablity of MgO nano powder is related to the particle size. The antibacterial activity was increased with the decrease of the particle size of MgO nano. For particles in the size range 50-70 nm, the bactericidal efficacy of nano-MgO increased slowly with decreasing particle size. When the size under 40 nm, the bactericidal efficacy of MgO nano increases a lot and could kill more bacteria. This proves that the particle size is smaller the antibacterial efficacy of MgO is stronger. MgO nano particles penetrated the bacterial cell wall and cell membrane. For the size is smaller, and then killed more bacteria. Also MgO nano particles with large specific surface area increase as the size of the nano particles decreases. For the large surface area with lots of reactive groups on the particle surface and high antibacterial activity will be obvious.       Hongwu International Group Ltd is committed to provide high-quality Magnesium Oxide nano particles(20-30nm, 99.9%) with the most reasonable price for customers who are doing nanotech research and have formed a complete cycle of researching, manufacturing, marketing and after-sale servicing. Our products have been sold to many countries around the world. By Lyla
  • 大きなssaセラミックグレードの酸化マグネシウムナノ粉末
    Large SSA ceramic grade MGO Magnesium Oxide nanopowders
    Large SSA ceramic grade MGO Magnesium Oxide nanopowders   R652: Magnesium Oxide NanoPowder(MgO), 20-30nm, 99.9%, white solid powder.   Application of MGO Magnesium Oxide nanopowders in ceramic field 1. Preparation of ceramic capacitor dielectric material. The grain size of the obtained ceramic can be controlled within the range of 1000nm, with small dielectric loss, good material uniformity, which is suitable for the production of  multilayer ceramic capacitor with large-capacity, high insulation resistance, ultra-thin dielectric layer (dielectric layer is less than 10um). The addition amount is about 0.5%-5%. 2. Nano-ceramic powder, made of nano magnesium oxide, nano silica, nano alumina, nano zinc oxide and other powders, among which, nano magnesium oxide is 0.5%-4.0%, and the obtained nano ceramic powder having a far-infrared radiation, antibacterial, activated water, purified water, the dissolution of trace elements which are beneficial to human health, release of negative ions, improve seed germination rate and other healthy functions. It can be widely used in various ceramic products, environmental protection, textiles, drinking water treatment, equipment and containers such as alcohol and tobacco industries. 3. Sintered with nano Alumina( nano Al2O3), titanium dioxide(TiO2) and other together, obtaining nanocomposite ceramic additives can take place of precious metals Nickel/Ni to produce heat-resisting steel alternative. Wherein the amount of nano-magnesium oxide is 5%-18%. 4. Nanocrystalline composite ceramics makes use of nano titanium dioxide(TiO2), MGO Magnesium Oxide nanopowders, nano rare earth oxides and zirconium dioxide(ZrO2) as part of the additives, and successfully increased the content of Amorphous ZrO2 to 10-30wt%, and obtained a high zirconium Al2O3 -SiO2-ZrO2 ceramics, nanocrystalline composite ceramics, and crystal phase content is more than 90%, the main phase is mullite, cristobalite and tetragonal zirconia, tetragonal zirconia grains dispersed in which size is ≤1μm. Through this method, the properties of the materials are superior to that of conventional methods for preparing the same material. The hardness increased by 30%, the toughness increased by 6%, and the strength increased by 40%. 5. The glass ceramic coating,composed of MGO Magnesium Oxide nanopowders, nano silica(SiO2), boron oxide, nano alumina(Al2O3), cerium oxide nanoparticles, can effectively improve the mechanical strength of the catalyst, including abrasion resistance, hardness, compressive strength and impact resistance; and enhance active centers of the catalyst, thereby increasing the activity of the catalyst, saving the active ingredient and reducing costs. It is mainly used in diesel and gasoline engine for exhaust gas purification treatment processors. Wherein the amount of nano magnesium oxide(MgO) is 5%-18%. 6. Preparation of high toughness ceramic materials, using nano magnesium oxide(MgO) and yttrium oxide(Y2O3) or rare earth oxide as nano composite stabilizer to produce partially stabilized zirconia ceramics with excellent mechanical properties and resistence of high-temperature aging. The ceramic material can be widely used in high-temperature engineering components and advanced refractories. 7. As auxiliary components of the anti-reducing dielectric ceramic material. The addition amount is 0.001%-10mol% 8. As single-side carbon dioxide gas shielding arc welding ceramic plate material. Its addition amount of nano MgO is 1-10 wt% 9. The glass ceramics, nano silica(SiO2), nano titanium dioxide(TiO2), nano alumina(Al2O3), nano magnesium oxide(MgO) sintered glass ceramics can be processed by the float glass method to be transparent, especially for thin film semiconductor substrate, specifically applicable to the display and solar cell. Wherein the amount of nano magnesium oxide(MgO) is 6%-20%. by Corrine    
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