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第一性原理研究 MXene 太赫兹探测器。

First-principles study of a MXene terahertz detector.

机构信息

Sensor System Research Center, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.

出版信息

Nanoscale. 2017 Dec 21;10(1):69-75. doi: 10.1039/c7nr05351g.

Abstract

2D transition metal carbides, nitrides, and carbonitrides called MXenes have attracted increasing attention due to their outstanding properties in many fields. By performing systematic density functional theory calculations, here we show that MXenes can serve as excellent terahertz detecting materials. Giant optical absorption and extinction coefficients are observed in the terahertz range in the most popular MXene, namely, TiC, which is regardless of the stacking degree. Various other optical properties have been investigated as well in the terahertz range for in-depth understanding of its optical response. We find that the thermoelectric figure of merit (ZT) of stacked TiC flakes is comparable to that of carbon nanotube films. Based on excellent terahertz absorption and decent thermoelectric efficiency in MXenes, we finally suggest the promise of MXenes in terahertz detection applications, which includes terahertz bolometers and photothermoelectric detectors. Possible ZT improvements are discussed in large-scale MXene flake films and/or MXene-polymer composite films.

摘要

二维过渡金属碳化物、氮化物和碳氮化物,即 MXenes,由于其在许多领域的优异性能而引起了越来越多的关注。通过进行系统的密度泛函理论计算,我们发现 MXenes 可用作出色的太赫兹检测材料。在最受欢迎的 MXene(即 TiC)中,在太赫兹范围内观察到巨大的光吸收和消光系数,而与堆叠程度无关。为了深入了解其光学响应,我们还在太赫兹范围内研究了各种其他光学性质。我们发现,堆叠 TiC 薄片的热电优值(ZT)与碳纳米管薄膜相当。基于 MXenes 在太赫兹吸收方面的优异性能和相当高的热电效率,我们最终提出了 MXenes 在太赫兹检测应用中的前景,包括太赫兹测辐射热计和光热电探测器。在大规模 MXene 薄片薄膜和/或 MXene-聚合物复合薄膜中讨论了可能的 ZT 提高。

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