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Toward Understanding the Formation Mechanism and OER Catalytic Mechanism of Hydroxides by In Situ and Operando Techniques
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2023-08-31 , DOI: 10.1002/anie.202309293 Zongkun Chen 1, 2 , Qiqi Fan 1 , Jian Zhou 1 , Xingkun Wang 3 , Minghua Huang 4 , Heqing Jiang 3 , Helmut Cölfen 1
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2023-08-31 , DOI: 10.1002/anie.202309293 Zongkun Chen 1, 2 , Qiqi Fan 1 , Jian Zhou 1 , Xingkun Wang 3 , Minghua Huang 4 , Heqing Jiang 3 , Helmut Cölfen 1
Affiliation
Discussing the current status and challenges in studying hydroxide formation and OER catalytic mechanisms via in situ/operando techniques can help expedite the preparation of cost-effective hydroxide electrocatalysts. This review summarizes in situ/operando techniques′ capabilities, advantages, and disadvantages, and discusses recent findings on hydroxide formation and OER catalytic mechanism.
中文翻译:
通过原位和操作技术了解氢氧化物的形成机制和 OER 催化机制
讨论通过原位/操作技术研究氢氧化物形成和OER催化机制的现状和挑战,有助于加快经济高效的氢氧化物电催化剂的制备。本综述总结了原位/操作技术的能力、优点和缺点,并讨论了氢氧化物形成和 OER 催化机理的最新发现。
更新日期:2023-08-31
中文翻译:
通过原位和操作技术了解氢氧化物的形成机制和 OER 催化机制
讨论通过原位/操作技术研究氢氧化物形成和OER催化机制的现状和挑战,有助于加快经济高效的氢氧化物电催化剂的制备。本综述总结了原位/操作技术的能力、优点和缺点,并讨论了氢氧化物形成和 OER 催化机理的最新发现。