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首页> 外文期刊>CERAMICS INTERNATIONAL >In-situ growth of novel CNTs-graphene hybrid structure on Ni-silica nanocomposites by CVD method for oxygen evolution reaction
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In-situ growth of novel CNTs-graphene hybrid structure on Ni-silica nanocomposites by CVD method for oxygen evolution reaction

机译:通过CVD法在Ni-ilica-纳米复合材料中出于原位生长Ni-illica纳米复合材料,用于氧气进化反应

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摘要

Carbon nanostructures are ideal materials for electrochemical reactions like oxygen evolution reaction (OER) due to excellent electrical conductivity, resistance to strong acidic as well as basic conditions and conductive support material for transition metals. In this work we have synthesized multiwalled carbon nanotubes MWCNTs along with graphene growth in-situ by CVD method at 650 degrees C on nickel-silica nanocomposites for OER in alkaline medium. After removal of silica, our material exhibited comparable OER performance with that of commercial Iridium supported carbon i.e. Ir/C (20 wt % Ir) electrocatalyst. The OER performance is attributed to the defective nature of MWCNTs in the form of surface discontinuities found on rolled graphene layers of carbon nanotubes along with MWCNTs-graphene interfaces which presumably contain dangling bonds as active sites for OER. The overpotential at current density of 10 mA/cm(2) exhibited by MWCNTs-graphene hybrid carbon nanostructured material was 310 mV in 1 M KOH solution at scan rate of 5 mV/s while commercial Ir/C material revealed overpotential of 305 mV under similar conditions.
机译:碳纳米结构是用于电化学反应的理想材料,如氧进化反应(oer)由于优异的导电性,耐强酸性以及用于过渡金属的基本条件和导电载体材料。在这项工作中,通过在碱性介质中的镍 - 二氧化硅纳米复合材料上在650℃下通过CVD方法合成多壁碳纳米管MWCNTs,在650℃下通过CVD方法进行原位。除去二氧化硅后,我们的材料表现出可比较的OER性能,具有商业铱支持的碳I. I / C(20wt%IR)电催化剂。 OER性能归因于在碳纳米管的轧制石墨烯层上发现的表面不连续形式的MWCNT的缺陷性质以及MWCNTS-石墨烯界面,其可能含有悬垂键作为oer的活性位点。由MWCNTS-石墨烯杂交碳纳米结构材料表现出的10mA / cm(2)的电流密度的过电位在1M KOH溶液中以5mV / s的扫描速率为310mV,而商用IR / C材料显示出305 mV的过电位类似的条件。

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