Controllable Etching of Ti 3 SiC 2 to Produce Fluorine‐Enriched, Hydrophobic 2D Titanium Carbide for Ultrastable Zinc Ion Batteries
Yu Guo, Yuxuan Gao, Hao Chen, Qi Zhao, Qi Zhu, Zhenjiang Cao, Bin Li, Jiaxiang Shang 等 10 位
Beihang University
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MXenes are mainly produced via selectively etching MAX phases in aqueous F‐containing solutions, commonly showing a highly hydrophilic character due to their plentiful ‐O and ‐OH terminations. However, the hydrophilic nature of MXenes may deteriorate their durability and stability as employed in humid and aqueous environments. Here, this work demonstrates a new etching approach to produce fluorine‐enriched MXene Ti 3 C 2 F x via selective etching of Si from Ti 3 SiC 2 in sulfur hexafluoride (SF 6 ) gas. During the etching process, SF 6 enables the selective removal of Si species with the formation of volatile SiF 4 and efficiently reacts with the exposed surface of Ti 3 C 2 slabs, affording Ti 3 C 2 F x MXene with a fraction of ‐F termination up to 87 at.% and good hydrophobicity. Such hydrophobic Ti 3 C 2 F x MXene is beneficial to suppress water‐induced side reactions and decrease the Zn nucleation energy barrier, delivering a long cyclic lifespan of 1200 h and superior rate performance up to 6.4 mA cm −2 in Ti 3 C 2 F x /Zn symmetric cells. Coupled with nickel hexacyanoferrate (NiHCF) as a cathode, the zinc full cell with Ti 3 C 2 F x /Zn anode exhibits good rate capabilities (58 mAh g −1 , 3.2 A g −1 ) and long cycling stability up to 1000 cycles at 3.2 A g −1 .
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材料 / 化学MXene and MAX Phase Materials
2D Materials and Applications · Advanced Memory and Neural Computing
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