Room-temperature exceptional plasticity in defective Bi <sub>2</sub> Te <sub>3</sub> -based bulk thermoelectric crystals
Taowu Deng, Zhiqiang Gao, Ze Li, Ze Li, Pengfei Qiu, Zhi Li, Zhi Li, Xinjie Yuan 等 12 位
Chinese Academy of Sciences Shanghai Institute of Ceramics University of Chinese Academy of Sciences Shanghai Jiao Tong University
内容与影响
The recently discovered metal-like room-temperature plasticity in inorganic semiconductors reshapes our knowledge of the physical properties of materials, giving birth to a series of new-concept functional materials. However, current room-temperature plastic inorganic semiconductors are still very rare, and their performance is inferior to that of classic brittle semiconductors. Taking classic bismuth telluride (Bi 2 Te 3 )–based thermoelectric semiconductors as an example, we show that antisite defects can lead to high-density, diverse microstructures that substantially affect mechanical properties and thus successfully transform these bulk semiconductors from brittle to plastic, leading to a high figure of merit of up to 1.05 at 300 kelvin compared with other plastic semiconductors, similar to the best brittle semiconductors. We provide an effective strategy to plastify brittle semiconductors to display good plasticity and excellent functionality simultaneously.
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材料 / 化学Advanced Thermoelectric Materials and Devices
Thermal properties of materials · Magnetic and transport properties of perovskites and related materials
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