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FeNiP纳米颗粒/N、P双掺杂碳复合材料作为高性能锌空气电池和全水电解的三功能催化剂。

FeNiP nanoparticle/N,P dual-doped carbon composite as a trifunctional catalyst towards high-performance zinc-air batteries and overall water electrolysis.

作者信息

Chen Wendi, Chang Shengming, Yu Heping, Li Wenming, Zhang Hui, Zhang Zhongyi

机构信息

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao, 266071, P. R. China.

出版信息

Nanoscale. 2021 Oct 21;13(40):17136-17146. doi: 10.1039/d1nr04503b.

Abstract

A composite catalyst with a novel construction of bimetallic phosphide FeNiP nanoparticles embedded in an N,P double-doped carbon matrix was prepared. It was demonstrated to be a trifunctional catalyst that can efficiently catalyze the oxygen reduction reaction (ORR), oxygen evolution reaction (OER) and hydrogen evolution reaction (HER). It was found that the introduction of oleylamine during the preparation can adjust the catalytic sites and finally lead to ideal catalytic performances. The obtained catalyst exhibited efficient ORR catalytic performance that surpassed the commercial Pt/C catalyst, with the OER performance comparable to that of RuO as well as excellent HER performance. The ORR half-wave potential is 0.879 V ( RHE) in 0.1 M KOH solution, while the OER overpotential at a current density of 10 mA cm is only 280 mV in 1 M KOH solution. The potential gap between the ORR and OER was only 0.700 V in 0.1 M KOH solution. This trifunctional catalyst was further evaluated in energy devices including zinc-air batteries and water electrolysis. The liquid zinc-air battery assembly achieved a power density of 169 mW cm and stably undergoes charge-discharge cycles for 210 hours. The solid-state zinc-air battery achieved a power density of 70 mW cm and stably undergoes charge-discharge cycles for 40 hours. These performances surpassed the batteries assembled with a Pt/C-RuO mixed catalyst. This work established a foundation of composite catalysts coupled with bimetallic phosphide and hybrid carbon substrates, which will promote the development of high-performance multifunctional catalysts and their application in energy devices.

摘要

制备了一种具有新型结构的复合催化剂,该催化剂由嵌入N、P双掺杂碳基质中的双金属磷化物FeNiP纳米颗粒组成。结果表明,它是一种三功能催化剂,能够有效催化氧还原反应(ORR)、析氧反应(OER)和析氢反应(HER)。研究发现,制备过程中引入油胺可以调节催化位点,最终实现理想的催化性能。所制备的催化剂表现出高效的ORR催化性能,超过了商业Pt/C催化剂,其OER性能与RuO相当,HER性能也很优异。在0.1 M KOH溶液中,ORR半波电位为0.879 V(相对于可逆氢电极,RHE),而在1 M KOH溶液中,电流密度为10 mA cm时的OER过电位仅为280 mV。在0.1 M KOH溶液中,ORR和OER之间的电位差仅为0.700 V。这种三功能催化剂在包括锌空气电池和水电解在内的能量装置中得到了进一步评估。液体锌空气电池组件实现了169 mW cm的功率密度,并能稳定地进行210小时的充放电循环。固态锌空气电池实现了70 mW cm的功率密度,并能稳定地进行40小时的充放电循环。这些性能超过了用Pt/C-RuO混合催化剂组装的电池。这项工作为双金属磷化物与混合碳基底耦合的复合催化剂奠定了基础,将推动高性能多功能催化剂的发展及其在能量装置中的应用。

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