在二维CdS双层中以tribology驱动的压电调制:一项第一原则调查
A S M Jannatul Islam1, Md Sherajul Islam1, Ashraful G Bhuiyan1
1Department of Electrical and Electronic Engineering, Khulna University of Engineering &Technology Khulna 9203 Bangladesh sheraj_kuet@eee.kuet.ac.bd.
RSC advances
|December 15, 2025
概括
二维硫化 (CdS) 双层在三元学压力下表现出增强的压电性. 在CdS中这种tribopiezoelectric效应显示了先进的纳米能量采集应用的前景.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术纳米技术
- 收集能源 收集能源
背景情况:
- 二维 (2D) 硫化 (CdS) 具有显著的电子负差异和非中心对称性,导致显著的压电效应.
- 这使得2D CdS成为下一代能源采集技术的强大候选者.
研究的目的:
- 在tribological效应下研究二维CdS双层的压电特性.
- 评估使用这些特性用于纳米能量采集的可行性.
主要方法:
- 将平面内滑动和平面外压缩应用于二维CdS双层.
- 分析了潜在能量,极化偏差,电荷密度,剪切强度,诱导电压和功率密度.
主要成果:
- 在平面内滑动诱导了从A-B到A-A堆叠的过渡,显著提高了平面外的压电.
- 垂直压缩产生了724-1365 meV的最大波纹能量和49.79-99.20 GPa的剪切强度.
- 垂直压缩在二维CdS双层中产生了0.35V的诱导电压.
结论:
- 一个基于2D CdS双层的压缩滑动运动纳米发电机模型实现了高达51.72mW cm-2的功率密度.
- 这些发现为通过CdS中的tribopiezoelectric效应提取纳米能量打开了道路.
- 这项研究支持可穿戴电子设备,自动供电设备和无线技术的进步.
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