MXenes公司
多硫化物
硫黄
催化作用
锂(药物)
相(物质)
化学气相沉积
纳米技术
气相
蚀刻(微加工)
材料科学
化学工程
化学
有机化学
工程类
图层(电子)
冶金
电极
物理化学
内分泌学
医学
电解质
作者
Maoqiao Xiang,Zihan Shen,Jie Zheng,Miao Song,Qiya He,Yafeng Yang,Jiuyi Zhu,Yuqi Geng,Fen Yue,Qinghua Dong,Yu Ge,Rui Wang,Jiake Wei,Weiliang Wang,Haiming Huang,Huigang Zhang,Qingshan Zhu,Chuanfang Zhang
出处
期刊:The Innovation
[Elsevier]
日期:2023-11-18
卷期号:5 (1): 100540-100540
被引量:38
标识
DOI:10.1016/j.xinn.2023.100540
摘要
MXenes have aroused intensive enthusiasm because of their exotic properties and promising applications. However, to date, they are usually synthesized by etching technologies. Developing synthetic technologies provides more opportunities for innovation and may extend unexplored applications. Here, we report a bottom-up gas-phase synthesis of Cl-terminated MXene (Ti2CCl2). The gas-phase synthesis endows Ti2CCl2 with unique surface chemistry, high phase purity, and excellent metallic conductivity, which can be used to accelerate polysulfide conversion kinetics and dramatically prolong the cyclability of Li-S batteries. In-depth mechanistic analysis deciphers the origin of the formation of Ti2CCl2 and offers a paradigm for tuning MXene chemical vapor deposition. In brief, the gas-phase synthesis transforms the synthesis of MXenes and unlocks the hardly achieved potentials of MXenes.
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