纳米制造
纳米技术
材料科学
碲
压电
数码产品
纳米结构
单层
热电效应
各向异性
工程物理
物理
工程类
电气工程
热力学
复合材料
量子力学
冶金
作者
Wenzhuo Wu,Gang Qiu,Yixiu Wang,Ruoxing Wang,Peide D. Ye
摘要
Tellurium (Te) has a trigonal crystal lattice with inherent structural anisotropy. Te is multifunctional, e.g., semiconducting, photoconductive, thermoelectric, piezoelectric, etc., for applications in electronics, sensors, optoelectronics, and energy devices. Due to the inherent structural anisotropy, previously reported synthetic methods predominantly yield one-dimensional (1D) Te nanostructures. Much less is known about 2D Te nanostructures, their processing schemes, and their material properties. This review focuses on the synthesis and morphology control of emerging 2D tellurene and summarizes the latest developments in understanding the fundamental properties of monolayer and few-layer tellurene, as well as the recent advances in demonstrating prototypical tellurene devices. Finally, the prospects for future research and application opportunities as well as the accompanying challenges of 2D tellurene are summarized and highlighted.
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