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    • INTELLIGENT MATERIALS PRIVATE LIMITED 關(guān)注
    • Carbon Nanotubes,Silver Nanoparticles,Aluminium Nanoparticles,Silicon Nanoparticles,copper Nanoparticles
      211, Sector-12, Chandigarh, Haryana, India
      查看在易之家共有 1 位雇員

    供應(yīng)
    Iron Nickel Cobalt Alloy Nanopowder
    關(guān)注
    • Place of Origin:
      Delaware, United States
    • Brand Name:
      Nanoshel
    • Model Number:
      NS6130-07-704
    • Application:
      Industry
    • Shape:
      spherical
    • Material:
      Tin, Copper
    • Dimensions:
      <80nm
    • Chemical Composition:
      Tin, Copper
    • Product name:
      Iron Nickel Cobalt Alloy Nanopowder
    • Purity:
      99.99999%
    • Appearance:
      Nanopowder
    • Grade:
      Industrial Grade
    • Usage:
      Ge Alloy
    • Feature:
      High Resistance
    • 供應(yīng)能力: 100 Kilogram/Kilograms per Week
    • 港口: New Delhi
    • US $10-100/Kilogram(最小訂單 25Kilogram)
    GuptaVivek
    在線聊天
    INTELLIGENT MATERIALS PRIVATE LIMITED
    印度
    生產(chǎn)公司
    101-200職員
    出口模式:
    出口認(rèn)證:
    主營(yíng)產(chǎn)品:Carbon Nanotubes,Silver Nanoparticles,Aluminium Nanoparticles,Silicon Nanoparticles,copper Nanoparticles
    • 產(chǎn)品描述
    • 產(chǎn)品評(píng)價(jià)
      詳細(xì)信息
    • Place of Origin:
      Delaware, United States
    • Brand Name:
      Nanoshel
    • Model Number:
      NS6130-07-704
    • Application:
      Industry
    • Shape:
      spherical
    • Material:
      Tin, Copper
    • Dimensions:
      <80nm
    • Chemical Composition:
      Tin, Copper
    • Product name:
      Iron Nickel Cobalt Alloy Nanopowder
    • Purity:
      99.99999%
    • Appearance:
      Nanopowder
    • Grade:
      Industrial Grade
    • Usage:
      Ge Alloy
    • Feature:
      High Resistance

    It was found that alloying Sn with some inert metallic components such as Ni, Cu, Co, can improve the cycling performance of Sn-based materials to a certain extent. Otherwise, both theoretical and experimental analysis proved that reducing particle size of Sn phase increases the active area, improves transport of electrolyte, and accelerates reaction rate. But aggregation of Nanoparticles usually deteriorates the electrode rapidly during charge-discharge cycling. Some researchers turn their attention to porous materials due to their large active area, more room for volume change, higher conductivity and no aggregation.

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