Gate-controlled VO 2 phase transition for high-performance smart windows

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Abstract

Vanadium dioxide (VO 2 ) is a promising material for developing energy-saving “smart windows,” owing to its infrared thermochromism induced by metal-insulator transition (MIT). However, its practical application is greatly limited by its relatively high critical temperature (~68°C), low luminous transmittance (<60%), and poor solar energy regulation ability (<15%). Here, we developed a reversible and nonvolatile electric field control of the MIT of a monoclinic VO 2 film. With a solid electrolyte layer assisting gating treatment, we modulated the insertion/extraction of hydrogen into/from the VO 2 lattice at room temperature, causing tristate phase transitions that enable control of light transmittance. The dramatic increase in visible/infrared transmittance due to the phase transition from the metallic (lightly H-doped) to the insulating (heavily H-doped) phase results in an increased solar energy regulation ability up to 26.5%, while maintaining 70.8% visible luminous transmittance. These results break all previous records and exceed the theoretical limit for traditional VO 2 smart windows, making them ready for energy-saving utilization.

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Chen, S., Wang, Z., Ren, H., Chen, Y., Yan, W., Wang, C., … Zou, C. (2019). Gate-controlled VO 2 phase transition for high-performance smart windows. Science Advances, 5(3). https://doi.org/10.1126/sciadv.aav6815

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