热泳
压电
材料科学
热电效应
能量转换
范德瓦尔斯力
电压
碳纳米管
能量转换效率
热的
纳米技术
光电子学
热力学
化学
物理
复合材料
量子力学
纳米颗粒
有机化学
分子
纳米流体
作者
Yu‐Jia Zeng,Yue‐Yang Liu,Hui Pan,Zhong‐Ke Ding,Wu‐Xing Zhou,Li‐Ming Tang,Baowen Li,Ke‐Qiu Chen
标识
DOI:10.3389/fphy.2022.823284
摘要
Piezoelectric effect has proved itself to be a promising energy conversion mechanism that can convert mechanical energy into electricity. Here, we propose an indirect thermoelectric conversion mechanism based on a combination of the thermophoresis and piezoelectric effects. We first analyze this thermally driven mechanism using a simplified theoretical model and then numerically analyze a molecular dynamics (MD) simulation of a hybrid system constructed of a single-layer MoS 2 nanoribbon and a concentric carbon nanotube. We show that the thermophoresis-induced piezoelectric output voltage can reach 3.5 V, and this value can be tuned using a temperature difference. The output voltage obtained using this mechanism is significantly higher than that obtained by heating piezoelectric materials directly. Given the generality of the thermophoresis effect in Van der Waals structures, this mechanism has potential applications in the conversion of thermal energy into electrical energy at the nanoscale level.
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