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- W3205611885 abstract "Abstract As an important regulatory method, the phase engineering strategy is widely used to develop functional materials with desired properties. Herein, we combine a solvothermal method with post‐annealing treatment to controllably synthesize multifunctional MoSe 2 flower‐like nanostructures (FNSs) in different crystal phases. Based on the different phases of MoSe 2 FNSs, we systematically investigate their performance in lithium‐ion storage, the hydrogen evolution reaction (HER), and the hydrogenation of nitrophenol. The results show that 1T‐MoSe 2 FNSs possess superior performance in lithium‐ion batteries, HER, and hydrogenation of PNP compared with 2H‐MoSe 2 FNSs. Moreover, density functional theory calculations reveal that 1T‐MoSe 2 FNSs exhibits a higher chemisorption energy than that of 2H‐MoSe 2 FNSs, which is beneficial for the improvement of the lithium‐ion storage capacity. This work provides an effective way to develop functional materials based on phase engineering." @default.
- W3205611885 created "2021-10-25" @default.
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- W3205611885 date "2021-11-02" @default.
- W3205611885 modified "2023-10-16" @default.
- W3205611885 title "Phase‐Controllable Synthesis of Multifunctional 1T‐MoSe<sub>2</sub> Nanostructures: Applications in Lithium‐Ion Batteries, Electrocatalytic Hydrogen Evolution, and the Hydrogenation Reaction" @default.
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- W3205611885 doi "https://doi.org/10.1002/celc.202101146" @default.
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