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首页> 外文期刊>RSC Advances >Aligned N-doped carbon nanotube bundles with interconnected hierarchical structure as an efficient bi-functional oxygen electrocatalyst
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Aligned N-doped carbon nanotube bundles with interconnected hierarchical structure as an efficient bi-functional oxygen electrocatalyst

机译:具有相互连接的分层结构的对齐N掺杂碳纳米管束,作为高效的双功能氧电催化剂

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摘要

The fabrication of cost effective and efficient electrocatalysts with functional building blocks to replace noble metal ones is of great importance for energy related applications yet remains a great challenge. Herein, we report the fabrication of a hierarchical structure containing CNTs/graphene/transition-metal hybrids (h-NCNTs/Gr/TM) with excellent bifunctional oxygen electrocatalytic activity. The synthesis was rationally designed by the growth of shorter nitrogen-doped CNTs (S-NCNTs) on longer NCNTs arrays (L-NCNTs), while graphene layers were in situ generated at their interconnecting sites. The hybrid material shows excellent OER and ORR performance, and was also demonstrated to be a highly active bifunctional catalyst for Zn–air batteries, which could be due to rapid electron transport and full exposure of active sites in the hierarchical structure.
机译:具有功能性构建基块来替代贵金属的经济高效的电催化剂的制造对于与能源有关的应用非常重要,但仍然是一个巨大的挑战。在本文中,我们报道了包含具有出色的双功能氧电催化活性的CNT /石墨烯/过渡金属杂化体(h-NCNTs / Gr / TM)的分层结构的制造。通过在较长的NCNT阵列(L-NCNT)上生长较短的氮掺杂CNT(S-NCNT)来合理地设计合成方法,同时在它们的互连位点上原位生成石墨烯层。这种杂化材料显示出优异的OER和ORR性能,并且还被证明是用于Zn-空气电池的高活性双功能催化剂,这可能是由于快速的电子传输和分层结构中活性部位的充分暴露所致。

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