位阻效应
过电位
析氧
材料科学
化学物理
催化作用
电子效应
电子转移
解耦(概率)
电子结构
吸附
光化学
密度泛函理论
萘
共轭体系
氧气
工作(物理)
双稳态
设计要素和原则
带隙
纳米技术
计算化学
态密度
电荷密度
电荷(物理)
物理化学
作者
Lihong Yu,Zi‐Ming Ye,Xuefeng Zhang,Hong‐Gang Du,Lidong Wang,Meng‐Tian Zhang,Jianfeng Yang,Jia Zhang,Liming Cao,Chun‐Ting He
标识
DOI:10.1002/adfm.202518505
摘要
Abstract Compared with electronic effect, the steric configuration in oxygen evolution reaction (OER) electrocatalysts is also of vital importance to the intermediate adsorption, especially in those all‐organic systems, yet usually overlooked and hardly to be manipulated. Herein, the electronic and steric dual effects on OER are investigated through the design of non‐coplanar all‐organic electrocatalysts with/without carbonyl (C═O) modification. The polyimide‐typed MEC‐5 with conjugated naphthalene units demonstrates a surprisingly higher activity than its C═O modified counterpart MEC‐5‐O for alkaline OER, which exhibits a low overpotential of 342 ± 3 mV at a high current density of 0.5 A cm −2 , and a total charge transfer amount of 8.64 × 10 4 C cm −2 during 120 h continuous catalysis, being 1–2 orders of magnitude higher than reported state‐of‐the‐art metal‐free electrocatalysts. Combined theoretical and operando experimental studies reveal that beyond the electron‐withdrawing effect of C═O, the steric effect plays a dominant role in regulating the adsorption energy of *OH and *O with a none‐equal proportion, leading to distinct activities of the catalysts. This work sheds light on the significance of stereochemical structure in designing efficient all‐organic electrocatalysts.
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