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首页> 外文期刊>Nano Energy >Bacterial cellulose derived nitrogen-doped carbon nanofiber aerogel: An efficient metal-free oxygen reduction electrocatalyst for zinc-air battery
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Bacterial cellulose derived nitrogen-doped carbon nanofiber aerogel: An efficient metal-free oxygen reduction electrocatalyst for zinc-air battery

机译:细菌纤维素衍生的氮掺杂碳纳米纤维气凝胶:锌空气电池的高效无金属氧还原电催化剂

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The prohibitive cost and scarcity of the platinum-based eletrocatalysts for oxygen reduction reaction (ORR) in fuel cells and metal-air batteries hamper dramatically the commercialization of theses clean-energy technologies. Here, we develop a highly active nitrogen-doped carbon nanofiber (N-CNF) aerogel metal-free ORR electrocatalyst, prepared by direct pyrolysis of a cheap, green, and mass-producible biomass, i.e., bacterial cellulose, followed by NH3 activation. The N-CNF aerogel inherits the three-dimensional nanofibrous network of bacterial cellulose and meanwhile possess high density of N-containing active sites (5.8 at%) and high BET surface area (916 m(2)/g). Such N-CNF aerogel shows superior ORR activity (half-wave potential of 0.80 V versus reversible hydrogen electrode) and high selectivity (electron-transfer number of 3.97 at 0.8 V), and excellent electrochemical stability (only 20 mV negative shift of half-wave potential after 10,000 potential cycles) in alkaline media. The ORR activity of N-CNF aerogel exceeds that of NH3-treated carbon blacks, carbon nanotubes as well as reduced graphene oxide aerogels, and that of most reported metal-free catalysts. Importantly, when used as a cathode catalyst for constructing the air electrode of Zn-air battery, the N-CNF aerogel exhibits high voltages of 1.34 and 1.25 V at the discharge current densities of 1.0 and 10 mA cm(-2), respectively, which are highly comparable with the state-of-the art Pt/C catalyst (20 wt% Pt, BASF), indicating the great potential of this metal-free catalyst as a promising alternative to the Pt/C for alkaline fuel cells and metal-air batteries. (C) 2014 Elsevier Ltd. All rights reserved.
机译:用于燃料电池和金属-空气电池中的氧还原反应(ORR)的铂基电子催化剂的成本高昂和稀缺性极大地阻碍了这些清洁能源技术的商业化。在这里,我们开发了一种高活性氮掺杂碳纳米纤维(N-CNF)气凝胶无金属ORR电催化剂,该催化剂通过廉价,绿色和可大量生产的生物质即细菌纤维素的直接热解,然后进行NH3活化而制备。 N-CNF气凝胶继承了细菌纤维素的三维纳米纤维网络,同时拥有高密度的含N活性位点(5.8 at%)和高BET表面积(916 m(2)/ g)。这种N-CNF气凝胶显示出卓越的ORR活性(半波电势为可逆氢电极0.80 V)和高选择性(0.8 V时电子转移数为3.97)和出色的电化学稳定性(仅20 mV负位移为一半)。碱性介质中10,000个电势周期后的电势)。 N-CNF气凝胶的ORR活性超过了NH3处理的炭黑,碳纳米管以及还原的氧化石墨烯气凝胶的活性,以及​​大多数已报道的不含金属的催化剂的ORR活性。重要的是,当N-CNF气凝胶用作构造Zn-空气电池的空气电极的阴极催化剂时,在1.0和10 mA cm(-2)的放电电流密度下分别表现出1.34和1.25 V的高压,与最先进的Pt / C催化剂(20 wt%Pt,BASF)高度可比,表明这种无金属催化剂作为Pt / C的有希望替代品的潜力巨大,可替代碱性燃料电池和金属空气电池。 (C)2014 Elsevier Ltd.保留所有权利。

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