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A Gas Control by Metal Nanoclusters-supported Porous Carbon Nanofibers

机译:金属纳米团簇支撑的多孔碳纳米纤维的气体控制

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In this work, we prepared porous graphite nanofibers (PCNFs) from herringbone-type graphite nanofibers, and nano-sized transition metals such as copper metal, were loaded on the PCNFs by a metal electroplating in order to prepare novel catalysts for the control of toxic gases, such as hydrogen chloride. From experimental results, PCNFs had around 2000 m~2/g of a specific surface area, and it was decreased slightly after metal loading. In case of metal content, we could control them from less 3 to over 30 wt% by means of the plating time and current density applied. After the metal loading, all samples having transition metal nanoclusters showed higher efficiency of HCl removal than that of samples without metals. However we also found that some samples having excessive metal content showed a decrease in the efficiency of HCl removal. This result meant that one of key technologies was both to find optimal metal content and to remain high specific surface area of substrates.
机译:在这项工作中,我们从人字形石墨纳米纤维制备了多孔石墨纳米纤维(PCNF),并通过金属电镀将纳米级过渡金属(例如铜金属)负载在PCNF上,以制备用于控制有毒物质的新型催化剂。气体,例如氯化氢。从实验结果来看,PCNFs的比表面积约为2000 m〜2 / g,并且在金属负载后会略有下降。在金属含量的情况下,我们可以通过施加的电镀时间和施加的电流密度将其控制在3 wt%至30 wt%以下。金属加载后,所有具有过渡金属纳米簇的样品均比不含金属的样品具有更高的HCl去除效率。但是,我们还发现一些金属含量过多的样品显示出HCl去除效率的降低。该结果意味着关键技术之一是找到最佳的金属含量并保持基材的高比表面积。

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