枝晶(数学)
溶剂化
化学
水溶液
锌
电子转移
基质(水族馆)
离子
化学工程
无机化学
物理化学
有机化学
几何学
工程类
地质学
海洋学
数学
作者
Qi Yang,Liang Li,Tanveer Hussain,Donghong Wang,Lan Hui,Ying Guo,Guojin Liang,Xinliang Li,Ze Chen,Zhaodong Huang,Yongjun Li,Yurui Xue,Zicheng Zuo,Jieshan Qiu,Yuliang Li,Chunyi Zhi
标识
DOI:10.1002/anie.202112304
摘要
Zn dendrite issue was intensively studied via tuning zinc ion flux. pH change seriously influences dendrite formation, while its importance has not been revealed. Here, we construct a N-modification graphdiyne interface (NGI) to stabilize pH by mediating hydrated zinc ion desolvation. Operando pH detection reveals pH stabilization by NGI. This works with pores in NGI to achieve dendrite-free Zn deposition and an increased symmetric cell lifespan by 116 times. Experimental and theoretical results owe pH stabilization to desolvation with a reduced activation energy achieved by electron transfer from solvation sheath to N atom. The efficient desolvation ensures that electron directly transfers from substrate to Zn2+ (rather than the coordinated H2 O), avoiding O-H bond splitting. Hence, Zn-V6 O13 battery achieves a long lifespan at 20.65 mA cm-2 and 1.07 mAh cm-2 . This work reveals the significance of interface pH and provides a new approach to address Zn dendrite issue.
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