二硫化钼
钼
相(物质)
二硫键
材料科学
化学
无机化学
冶金
有机化学
生物化学
作者
Zongliang Guo,Hao Cheng,Min Yang,Chi Ho Wong,Tawsif Ibne Alam,Shu Ping Lau,Yuen Hong Tsang
标识
DOI:10.1002/smsc.202500107
摘要
Metastable‐phase transition metal dichalcogenides (TMDs) show distinct structures and properties compared with the well‐studied thermodynamically stable phase. The phase impurity and degeneration are two critical challenges for the research and applications of metastable 1T’‐phase MoS 2 . Here, a self‐intercalation method is demonstrated to synthesize and stabilize the phase‐pure 1T’ MoS 2 . The K 2 S intercalation and 1T’ MoS 2 synthesis are simultaneously done in only one step, leading to uniform intercalation and 1T’ phase purity. This engineered intercalation structure achieves stabilization of 1T’ MoS 2 without changing its in‐plane structure. It keeps 1T’ phase structure and 100% phase purity even after 750 °C annealing or 1‐year aging exposed to air, while 1T’ MoS 2 transforms to 2H phase gradually, or instantly over 97 °C. The theory calculation results show that the K 2 S intercalation lowers the formation energy and makes metastable 1T’ phase become stable. As a result, this stabilization method prevents gradual degeneration of applications performance that is inevitable in the past. This mass‐production‐available method has been successfully proved versatile for various 1T’ TMDs with numerous alkali metal chalcogenides intercalation. It eliminates a significant disadvantage of 1T’ TMDs, which can facilitate the investigation of novel properties and the development of fresh applications.
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