• 通过改变催化剂溶剂用量,可以实现凝胶的颗粒直径及孔洞由纳米微米级的连续调节。

    The structures of carbon aerogels are controlled from micro pore to macro pore by changing the concentration of catalyst and solvent.

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  • 首先采用溶胶-凝胶法制备镍催化剂在此基础上用化学相沉积高产率制备纳米

    The catalyst was first produced by sol-gel method and the carbon nanotubes were high yield synthesized by the catalytic chemical vapor decomposition method.

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  • 采用凝胶凝胶两种催化剂载体通过化学相淀方法制备螺旋状纳米

    Helical carbon nanotubes were synthesized by a chemical vapour deposition method from both silica aerogels and silica xerogels containing catalysts.

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  • 采用凝胶凝胶两种催化剂载体通过化学相淀方法制备螺旋状纳米

    Helical carbon nanotubes were synthesized by a chemical vapour deposition method from both silica aerogels and silica xerogels containing catalysts.

    youdao

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