电解质
锂(药物)
电化学
电极
化学
相间
沉积(地质)
纳米技术
纳米颗粒
化学工程
离子
材料科学
物理化学
有机化学
医学
古生物学
沉积物
生物
工程类
遗传学
内分泌学
作者
Jing Wan,Zicheng Zuo,Zhenzhen Shen,Wan‐Ping Chen,Guixian Liu,Xin‐Cheng Hu,Yuexian Song,Sen Xin,Yu‐Guo Guo,Rui Wen,Yuliang Li,Li‐Jun Wan
摘要
All-carbon graphdiyne (GDY)-based materials have attracted extensive attention owing to their extraordinary structures and outstanding performance in electrochemical energy storage. Straightforward insights into the interfacial evolution at GDY electrode/electrolyte interface could crucially enrich the fundamental comprehensions and inspire targeted regulations. Herein, in situ optical microscopy and atomic force microscopy monitoring of the GDY and N-doped GDY electrodes reveal the interplay between the solid electrolyte interphase (SEI) and Li deposition. The growth and continuous accumulation of the flocculent-like SEI is directly tracked at the surface of GDY electrode. Moreover, the nanoparticle-shaped SEI homogeneously propagates at the interface when N configurations are involved, providing a critical clue for the N-doping effects of stabilizing interfaces and homogenizing Li deposition. This work probes into the dynamic evolution and structure-reactivity correlation in detail, creating effective strategies for GDY-based materials optimization in lithium-ion batteries.
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