Ultrathin Nitrogen-Doped Carbon Encapsulated Ni Nanoparticles for Highly Efficient Electrochemical CO2 Reduction and Aqueous Zn-CO2 Batteries

被引:48
作者
Wang, Fangyuan [1 ]
Wang, Guan [1 ]
Deng, Peilin [1 ]
Chen, Yao [1 ]
Li, Jing [1 ]
Wu, Daoxiong [1 ]
Wang, Zhitong [1 ]
Wang, Chongtai [2 ]
Hua, Yingjie [2 ]
Tian, Xinlong [1 ]
机构
[1] Hainan Univ, Sch Chem Engn & Technol, State Key Lab Marine Resource Utilizat South China, Hainan Prov Key Lab Fine Chem, Haikou 570228, Peoples R China
[2] Hainan Normal Univ, Sch Chem & Chem Engn, Key Lab Electrochem Energy Storage & Energy Conver, Haikou 571158, Peoples R China
基金
中国国家自然科学基金;
关键词
CO2 electrochemical reduction; core-shell structures; electronic effect; N-doped carbon shells; Zn-CO2; batteries; CATALYTIC PERFORMANCE; FLOW CELL; ELECTROREDUCTION; ELECTROCATALYSTS; METHANOL; DIOXIDE; SITES; METAL;
D O I
10.1002/smll.202301128
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Electrochemical CO2 reduction reaction (CO2RR), powered by renewable electricity, has attracted great attention for producing high value-added fuels and chemicals, as well as feasibly mitigating CO2 emission problem. Here, this work reports a facile hard template strategy to prepare the Ni@N-C catalyst with core-shell structure, where nickel nanoparticles (Ni NPs) are encapsulated by thin nitrogen-doped carbon shells (N-C shells). The Ni@N-C catalyst has demonstrated a promising industrial current density of 236.7 mA cm(-2) with the superb FECO of 97% at -1.1 V versus RHE. Moreover, Ni@N-C can drive the reversible Zn-CO2 battery with the largest power density of 1.64 mW cm(-2), and endure a tough cycling durability. These excellent performances are ascribed to the synergistic effect of Ni@N-C that Ni NPs can regulate the electronic microenvironment of N-doped carbon shells, which favor to enhance the CO2 adsorption capacity and the electron transfer capacity. Density functional theory calculations prove that the binding configuration of N-C located on the top of Ni slabs (Top-Ni@N-C) is the most thermodynamically stable and possess a lowest thermodynamic barrier for the formation of COOH* and the desorption of CO. This work may pioneer a new method on seeking high-efficiency and worthwhile electrocatalysts for CO2RR and Zn-CO2 battery.
引用
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页数:8
相关论文
共 55 条
[41]   Recent Development of CO2 Electrochemistry from Li-CO2 Batteries to Zn-CO2 Batteries [J].
Xie, Jiafang ;
Wang, Yaobing .
ACCOUNTS OF CHEMICAL RESEARCH, 2019, 52 (06) :1721-1729
[42]   Single-Atom Fe Catalysts for Fenton-Like Reactions: Roles of Different N Species [J].
Xiong, Yu ;
Li, Hongchao ;
Liu, Chuangwei ;
Zheng, Lirong ;
Liu, Chen ;
Wang, Jia-Ou ;
Liu, Shoujie ;
Han, Yunhu ;
Gu, Lin ;
Qian, Jieshu ;
Wang, Dingsheng .
ADVANCED MATERIALS, 2022, 34 (17)
[43]  
Xu Y., 2023, NANORES ENERGY
[44]   Tuning the activity of N-doped carbon for CO2 reduction via in situ encapsulation of nickel nanoparticles into nano-hybrid carbon substrates [J].
Yuan, Cheng-Zong ;
Li, Hong-Bao ;
Jiang, Yi-Fan ;
Liang, Kuang ;
Zhao, Sheng-Jie ;
Fang, Xiao-Xiang ;
Ma, Liu-Bo ;
Zhao, Tan ;
Lin, Cong ;
Xu, An-Wu .
JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (12) :6894-6900
[45]   Nickel Doping in Atomically Thin Tin Disulfide Nanosheets Enables Highly Efficient CO2 Reduction [J].
Zhang, An ;
He, Rong ;
Li, Huiping ;
Chen, Yijun ;
Kong, Taoyi ;
Li, Kan ;
Ju, Huanxin ;
Zhu, Junfa ;
Zhu, Wenguang ;
Zeng, Jie .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, 57 (34) :10954-10958
[46]   The ensemble effect of nitrogen doping and ultrasmall SnO2 nanocrystals on graphene sheets for efficient electroreduction of carbon dioxide [J].
Zhang, Baohua ;
Guo, Zhihao ;
Zuo, Zhuang ;
Pan, Wei ;
Zhang, Jintao .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 239 :441-449
[47]   Structure and Catalytic Performance of Mg-SBA-15-Supported Nickel Catalysts for CO2 Reforming of Methane to Syngas [J].
Zhang, Hui ;
Li, Meng ;
Xiao, Pufu ;
Liu, Delei ;
Zou, Chang-Jun .
CHEMICAL ENGINEERING & TECHNOLOGY, 2013, 36 (10) :1701-1707
[48]   Enhance the responsivity and response speed of self-powered ultraviolet photodetector by GaN/CsPbBr3 core-shell nanowire heterojunction and hydrogel [J].
Zhang, Jianya ;
Jiao, Bo ;
Dai, Jinfei ;
Wu, Dongmin ;
Wu, Zhaoxin ;
Bian, Lifeng ;
Zhao, Yukun ;
Yang, Wenxian ;
Jiang, Min ;
Lu, Shulong .
NANO ENERGY, 2022, 100
[49]   Oxygen Vacancies in Amorphous InOx Nanoribbons Enhance CO2 Adsorption and Activation for CO2 Electroreduction [J].
Zhang, Junbo ;
Yin, Rongguan ;
Shao, Qi ;
Zhu, Ting ;
Huang, Xiaoqing .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2019, 58 (17) :5609-5613
[50]   A Supported Pd2 Dual-Atom Site Catalyst for Efficient Electrochemical CO2 Reduction [J].
Zhang, Ningqiang ;
Zhang, Xinxin ;
Kang, Yikun ;
Ye, Chenliang ;
Jin, Rui ;
Yan, Han ;
Lin, Rui ;
Yang, Jiarui ;
Xu, Qian ;
Wang, Yu ;
Zhang, Qinghua ;
Gu, Lin ;
Liu, Licheng ;
Song, Weiyu ;
Liu, Jian ;
Wang, Dingsheng ;
Li, Yadong .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2021, 60 (24) :13388-13393