Controlled formation of CoOOH/Co(III)-MOF active phase for boosting electrocatalytic alkaline water oxidation

被引:0
|
作者
Marquez, Inmaculada [1 ]
Gutierrez-Tarrino, Silvia [2 ]
Portorreal-Bottier, Arismendy [1 ]
del Rio-Rodriguez, Jose Luis [2 ]
Hernandez-Salvador, Sergio [1 ]
Calvente, Juan Jose [1 ]
Ona-Burgos, Pascual [2 ]
Olloqui-Sariego, Jose Luis [1 ]
机构
[1] Univ Seville, Dept Quim Fis, Prof Garcia Gonzalez 1, Seville 41012, Spain
[2] Univ Politecn Valencia Consejo Super Invest Cient, Inst Tecnol Quim, Avda Naranjos S-N, Valencia 46022, Spain
关键词
Cobalt MOF; Controlled MOF reconstruction; In-situ Raman spectroelectrochemistry; Electrocatalysis; Oxygen evolution reaction; METAL-ORGANIC FRAMEWORKS; COBALT HYDROXIDE; OXYGEN; EVOLUTION; CATALYST; TRANSFORMATION; PORPHYRINS; COMPLEXES; KINETICS; PATHWAY;
D O I
10.1016/j.cattod.2024.115049
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Surface reconstituted metal-organic frameworks (MOFs) offer appealing properties for electrocatalysis due to their unique structural and compositional advantages. In this work, a controlled potential-induced reconstruction of a two-dimensional cobalt metal-organic framework for boosting oxygen evolution reaction in alkaline media is reported. The current MOF is shown to undergo a partial structural transformation that generates a heterogeneous system, where the original MOF coexists with an oxyhydroxide phase. In fact, the potential-induced stabilization of Co(III) metal centers in the MOF is crucial for delaying its full degradation in alkaline media. This partial retention of the Co(III)MOF phase in the so-derived heterogeneous catalyst has been demonstrated to be decisive for boosting the alkaline electrocatalytic oxygen evolution reaction (OER), displaying superior OER activity in terms of both thermodynamic and kinetic merits compared to the benchmark IrO(2 )and RuO2 electrocatalysts and the prototypical cobalt (oxy)hydroxides, with a Tafel slope of 52 mV dec(- 1) and a turnover frequency (TOF) of 6.8 s(- 1) at 450 mV. Remarkably, the generated final product is stable, exhibiting high robustness and long durability for long-term OER electrolysis. This work provides new insight into the impact of the reconstruction of a MOF for alkaline OER under typical electrochemical conditions, which ultimately benefits the rational design of MOF-based catalysts with high electrocatalytic activity for oxidation reactions.
引用
收藏
页数:10
相关论文
共 45 条
  • [1] Constructing highly active Co sites in Prussian blue analogues for boosting electrocatalytic water oxidation
    Zou, Hanjun
    Liu, Xue
    Wang, Kaiwen
    Duan, Youyu
    Wang, Cong
    Zhang, Bin
    Zhou, Kai
    Yu, Danmei
    Gan, Li-Yong
    Zhou, Xiaoyuan
    CHEMICAL COMMUNICATIONS, 2021, 57 (65) : 8011 - 8014
  • [2] In situ evolution of surface Co2CrO4 to CoOOH/CrOOH by electrochemical method: Toward boosting electrocatalytic water oxidation
    Zhao, Jinxiu
    Ren, Xiang
    Sun, Xu
    Zhang, Yong
    Wei, Qin
    Liu, Xuejing
    Wu, Dan
    CHINESE JOURNAL OF CATALYSIS, 2021, 42 (07) : 1096 - 1101
  • [3] A Co-containing polyoxogermanotungstate for alkaline electrocatalytic water oxidation
    Li, Da-Huan
    Jia, Lei
    Liu, Yi-Xin
    Sun, Cai
    Li, Xin-Xiong
    Cai, Ping-Wei
    Sun, Yan-Qiong
    Zheng, Shou-Tian
    INORGANIC CHEMISTRY FRONTIERS, 2024, 11 (20): : 7049 - 7057
  • [4] Decoration of Co-MOF on α-Fe2O3 for boosting photoelectrochemical water oxidation in alkaline and neutral electrolyte
    He, Lihua
    Huang, Lanlan
    Gong, Chunli
    Liu, Hai
    Xiang, Shengchang
    Wang, Guizhen
    Zhang, Bingqing
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 980
  • [5] Decoration of Co-MOF on α-Fe2O3 for boosting photoelectrochemical water oxidation in alkaline and neutral electrolyte
    He, Lihua
    Huang, Lanlan
    Gong, Chunli
    Liu, Hai
    Xiang, Shengchang
    Wang, Guizhen
    Zhang, Bingqing
    Journal of Alloys and Compounds, 2024, 980
  • [6] Surface Amorphization: A Simple and Effective Strategy toward Boosting the Electrocatalytic Activity for Alkaline Water Oxidation
    Zhang, Rong
    Wang, Zao
    Hao, Shuai
    Ge, Ruixiang
    Ren, Xiang
    Qu, Fengli
    Du, Gu
    Asiri, Abdullah M.
    Zheng, Baozhan
    Sun, Xuping
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2017, 5 (10): : 8518 - 8522
  • [7] Impact of Iron in Three-Dimensional Co-MOF for Electrocatalytic Water Oxidation
    Sahoo, Malaya K.
    Samantara, Aneeya K.
    Behera, J. N.
    INORGANIC CHEMISTRY, 2022, 61 (01) : 62 - 72
  • [8] Elucidation the role of Co-MOF on hematite for boosting the photoelectrochemical performance toward water oxidation
    Cai, Jiajia
    Tang, Xiangxuan
    Zhong, Shiming
    Li, Yongjun
    Wang, Yiyang
    Liao, Zhi
    Wang, Jianmin
    Mao, Keke
    Xie, Qian
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (33) : 12342 - 12353
  • [9] Constructing CoNiRuIrMn high-entropy alloy network for boosting electrocatalytic activity toward alkaline water oxidation
    Yan, Su
    Zhang, Linfeng
    Li, Weimo
    Qi, Ruikai
    Zhong, Mengxiao
    Xu, Meijiao
    Song, Wei
    Lu, Xiaofeng
    ACTA MATERIALIA, 2025, 290
  • [10] Boosting Efficient and Sustainable Alkaline Water Oxidation on a W-CoOOH-TT Pair-Sites Catalyst Synthesized via Topochemical Transformation
    Wang, Ligang
    Su, Hui
    Tan, Guoying
    Xin, Junjie
    Wang, Xiaoge
    Zhang, Zhuang
    Li, Yaping
    Qiu, Yi
    Li, Xiaohui
    Li, Haisheng
    Ju, Jing
    Duan, Xinxuan
    Xiao, Hai
    Chen, Wenxing
    Liu, Qinghua
    Sun, Xiaoming
    Wang, Dingsheng
    Sun, Junliang
    ADVANCED MATERIALS, 2024, 36 (15)