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首页> 外文期刊>Nanoscale >Isolated Fe atoms dispersed on cellulose-derived nanocarbons as an efficient electrocatalyst for the oxygen reduction reaction
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Isolated Fe atoms dispersed on cellulose-derived nanocarbons as an efficient electrocatalyst for the oxygen reduction reaction

机译:孤立的铁原子cellulose-derived分散作为一个高效的electrocatalyst nanocarbons氧还原反应

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摘要

Cost-effective preparation of efficient electrocatalysts is vitally important for energy storage and conversion. Here, a facile chemical activation strategy using biomass cellulose as the carbon feedstock to fabricate isolated Fe atoms dispersed on a nitrogen doped graphene/nanocarbon hybrid is reported. This new single atom catalyst aFe-NGC worked as an excellent electrocatalyst towards the ORR compared to commercial Pt/C with 30 mV higher positive half-wave potential, larger current density, better stability and stronger methanol-tolerance. The key active sites for enhancing the ORR activity originated from the constructed high loading Fe-N/C configuration coupled with doped nitrogens, as explored by optimizing the activation temperatures and characterized by state-of-the-art techniques including aberration-corrected STEM and synchrotron XANES. This strategy could be developed into a general approach to prepare highly efficient atomic metal electrocatalysts using abundant biomass as a cost-effective carbon source.
机译:划算的制备高效electrocatalysts至关重要的能源存储和转换。使用生物质纤维素作为激活策略碳原料制造孤立的铁氮掺杂原子分散石墨烯/ nanocarbon混合报道。单原子催化剂aFe-NGC担任优秀的electrocatalyst向奥尔相比于商业Pt / C高30 mV积极的半波电位,较大的电流密度,更好的稳定性和更强的methanol-tolerance。提高起源于奥尔活动构建高加载Fe-N / C配置再加上掺杂氮,所探索的优化激活温度和以最先进的技术包括aberration-corrected茎和同步加速器黄嘌呤。发展成为一个通用方法做准备原子金属electrocatalysts高效使用丰富的生物质作为具有成本效益的碳源。

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