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具有氮和磷双配位的单镍活性位点用于高效的一氧化碳还原。

Single Ni active sites with a nitrogen and phosphorus dual coordination for an efficient CO reduction.

作者信息

Yang Xiao, Cheng Jun, Yang Xian, Xu Yang, Sun Weifu, Liu Niu, Zhou Junhu

机构信息

State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangzhou, 310027, China.

出版信息

Nanoscale. 2022 May 16;14(18):6846-6853. doi: 10.1039/d2nr00294a.

Abstract

Transition metal single-atom catalysts (SACs) have emerged as a research hotspot in CORRs. However, tuning the electronic configuration of a metal single-atom by employing new heteroatoms still remains a challenge. Herein, a carbon matrix loaded with a N and P co-coordinated Ni single-atom (denoted as Ni-NPC) was prepared for an efficient CORR. XANES and EXAFS were conducted to explore the coordination environment and charge distribution of the Ni-NPC catalyst. DFT calculations indicated that the Ni atom gained electrons from the P atom, and the Ni-NPC sample had a decreased energy barrier of +0.97 eV after doping with P atoms, which was favorable to overcome the limiting-step bottleneck for promoting CORR. Due to the rich Ni atomic active sites and superior P-doping effect, Ni-NPC exhibited a maximum FE of 92% with a high current density of 22.6 mA cm at -0.8V . RHE, which was far superior to those of NC, NPC and Ni-NC catalysts. Moreover, both the FE and current density of the Ni-NPC catalyst remained stable for more than 16 h at -0.8 V RHE, indicating a high stability for long-term CORR experiments.

摘要

过渡金属单原子催化剂(SACs)已成为电催化析氧反应(CORRs)中的一个研究热点。然而,通过采用新的杂原子来调节金属单原子的电子构型仍然是一个挑战。在此,制备了一种负载有N和P共配位Ni单原子的碳基质(表示为Ni-NPC)用于高效的电催化析氧反应。进行了X射线吸收近边结构(XANES)和扩展X射线吸收精细结构(EXAFS)分析,以探究Ni-NPC催化剂的配位环境和电荷分布。密度泛函理论(DFT)计算表明,Ni原子从P原子获得电子,并且在掺杂P原子后,Ni-NPC样品的能垒降低至+0.97 eV,这有利于克服促进电催化析氧反应的限速步骤瓶颈。由于丰富的Ni原子活性位点和优异的P掺杂效应,Ni-NPC在-0.8 V(相对于可逆氢电极,RHE)下表现出92%的最大法拉第效率(FE)和22.6 mA cm的高电流密度,远优于NC、NPC和Ni-NC催化剂。此外,Ni-NPC催化剂在-0.8 V(相对于可逆氢电极,RHE)下的法拉第效率和电流密度在超过16小时内保持稳定,表明其在长期电催化析氧反应实验中具有高稳定性。

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