Phase management in single-crystalline vanadium dioxide beams

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Abstract

A systematic study of various metal-insulator transition (MIT) associated phases of VO2, including metallic R phase and insulating phases (T, M1, M2), is required to uncover the physics of MIT and trigger their promising applications. Here, through an oxide inhibitor-assisted stoichiometry engineering, we show that all the insulating phases can be selectively stabilized in single-crystalline VO2 beams at room temperature. The stoichiometry engineering strategy also provides precise spatial control of the phase configurations in as-grown VO2 beams at the submicron-scale, introducing a fresh concept of phase transition route devices. For instance, the combination of different phase transition routes at the two sides of VO2 beams gives birth to a family of single-crystalline VO2 actuators with highly improved performance and functional diversity. This work provides a substantial understanding of the stoichiometry-temperature phase diagram and a stoichiometry engineering strategy for the effective phase management of VO2.

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Shi, R., Chen, Y., Cai, X., Lian, Q., Zhang, Z., Shen, N., … Cheng, C. (2021). Phase management in single-crystalline vanadium dioxide beams. Nature Communications, 12(1). https://doi.org/10.1038/s41467-021-24527-5

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