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Nanowrinkled Carbon Aerogels Embedded with FeNx Sites as Effective Oxygen Electrodes for Rechargeable Zinc-Air Battery

机译:嵌入FeNx部位的纳米皱纹碳气凝胶作为可充电锌空气电池的有效氧电极

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摘要

Rational design of single-metal atom sites in carbon substrates by a flexible strategy is highly desired for the preparation of high-performance catalysts for metal-air batteries. In this study, biomass hydrogel reactors are utilized as structural templates to prepare carbon aerogels embedded with single iron atoms by controlled pyrolysis. The tortuous and interlaced hydrogel chains lead to the formation of abundant nanowrinkles in the porous carbon aerogels, and single iron atoms are dispersed and stabilized within the defective carbon skeletons. X-ray absorption spectroscopy measurements indicate that the iron centers are mostly involved in the coordination structure of FeN , with a minor fraction (ca. 1/5) in the form of FeN C. First-principles calculations show that the FeN sites in the Stone-Wales configurations induced by the nanowrinkles of the hierarchically porous carbon aerogels show a much lower free energy than the normal counterparts. The resulting iron and nitrogen-codoped carbon aerogels exhibit excellent and reversible oxygen electrocatalytic activity, and can be used as bifunctional cathode catalysts in rechargeable Zn-air batteries, with a performance even better than that based on commercial Pt/C and RuO catalysts. Results from this study highlight the significance of structural distortions of the metal sites in carbon matrices in the design and engineering of highly active single-atom catalysts.
机译:为了制备用于金属-空气电池的高性能催化剂,非常需要通过灵活的策略合理设计碳基材中的单金属原子位。在这项研究中,生物质水凝胶反应器被用作结构模板,以通过控制热解制备嵌有单个铁原子的碳气凝胶。弯曲和交错的水凝胶链导致在多孔碳气凝胶中形成大量的纳米皱纹,并且单个铁原子分散并稳定在有缺陷的碳骨架中。 X射线吸收光谱法测量表明,铁中心主要参与FeN的配位结构,其中一小部分(约1/5)以FeN C的形式存在。第一性原理计算表明,FeN的FeN位置由分层多孔碳气凝胶的纳米皱纹引起的石-威尔构型显示出比正常对应物低得多的自由能。所得的铁和氮共混的碳气凝胶具有出色的可逆氧电催化活性,可用作可再充电Zn-空气电池中的双功能阴极催化剂,其性能甚至优于基于商用Pt / C和RuO催化剂的性能。这项研究的结果突显了碳基质中金属位点的结构变形在高活性单原子催化剂的设计和工程中的重要性。

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