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The production of a homogeneous and well-attached layer of carbon nanofibers on metal foils

机译:在金属箔上生产均匀且附着良好的碳纳米纤维层

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摘要

Carbon nanofibers (CNFs) were deposited on metal foils including nickel (Ni), iron (Fe), cobalt (Co), stainless steel (Fe:Ni; 70:11 wt.) and mumetal (Ni:Fe; 77:14 wt.) by the decomposition of C2H4 at 600 °C. The effect of pretreatment and the addition of H2 on the rate of carbon formation, as well the morphology and attachment of the resulting carbon layer were explored. Ni and mumetal show higher carbon deposition rates than the other metals, with stainless steel and Fe the least active. Pretreatment including an oxidation step normally leads to higher deposition rates, especially for Ni and mumetal. Enhanced formation of small Ni particles by in situ reduction of NiO, compared to formation using a Ni carbide, is probably responsible for higher carbon deposition rates after oxidation pretreatment. The addition of H2 during the CNF growth leads to higher carbon deposition rates, especially for oxidized Ni and mumetal, thus enhancing the effect of the reduction of NiO. The diameters of CNFs grown on metal alloys are generally larger compared to those grown on pure metals. Homogenously deposited and well-attached layers of nanotubes are formed when the carbon deposition rate is as low as 0.1-1 mg cm~(-2) h~(-1), as mainly occurs on stainless steel.
机译:在600 °C下,C2H4分解,将碳纳米纤维(CNFs)沉积在镍(Ni)、铁(Fe)、钴(Co)、不锈钢(Fe:Ni;70:11 wt.%)和mumetal(Ni:Fe;77:14 wt.%)等金属箔上。 探究了预处理和H2添加对碳形成速率的影响,以及所得碳层的形貌和附着。镍和金属的碳沉积速率高于其他金属,不锈钢和铁的活性最低。包括氧化步骤在内的预处理通常会导致更高的沉积速率,特别是对于镍和金属。与使用碳化镍相比,通过原位还原NiO来增强小Ni颗粒的形成,可能是氧化预处理后碳沉积速率较高的原因。在CNF生长过程中,H2的加入导致更高的碳沉积速率,特别是对于氧化的Ni和mumetal,从而增强了NiO的还原效果。与在纯金属上生长的CNF相比,在金属合金上生长的CNF的直径通常更大。当碳沉积速率低至0.1-1 mg cm~(-2) h~(-1)时,形成均匀沉积和良好附着的纳米管层,主要发生在不锈钢上。

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