可拉伸Ag2S-MXene光电探测器设计用于增强电气耐久性和高灵敏度。

IF 8.3 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
ACS Applied Materials & Interfaces Pub Date : 2025-01-29 Epub Date: 2025-01-16 DOI:10.1021/acsami.4c19190
Hyejin Rhyu, Chanwon Park, Suhun Jo, Myung Hyun Kang, Wooseok Song, Sun Sook Lee, Jongsun Lim, Sung Myung
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引用次数: 0

摘要

在这项工作中,我们提出了一种简单而直接的方法来制造基于Ag2S和Ti3C2Tx MXene杂化材料的高度可拉伸光电探测器。这些器件表现出卓越的机械弹性,即使在30%应变的10 000次循环后也能保持稳定的电气和光学性能。MXene的加入不仅提高了设备的电气耐久性,而且确保了在重大机械变形下保持导电性,将MXene定位为推进柔性电子产品的关键材料。这些器件在从可见光到红外的宽波长范围内表现出强烈的光响应,证实了它们在柔性和可拉伸光电应用中的潜力。这项研究强调了在可拉伸电子产品中利用MXene的优势,并为为下一代可穿戴技术开发耐用、灵活的设备提供了一条有前途的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stretchable Ag2S-MXene Photodetector Designed for Enhanced Electrical Durability and High Sensitivity.

In this work, we present a facile and straightforward approach for fabricating highly stretchable photodetectors based on Ag2S and Ti3C2Tx MXene hybrid materials. These devices exhibit exceptional mechanical resilience, maintaining stable electrical and optical performance even after 10 000 cycles of 30% strain. The incorporation of MXene not only enhances the device's electrical durability but also ensures the retention of conductivity under significant mechanical deformation, positioning MXene as a critical material for the advancement of flexible electronics. These devices demonstrate strong photoresponses across a broad wavelength range, from visible to infrared, confirming their potential for use in flexible and stretchable optoelectronic applications. This study highlights the advantage of utilizing MXene in stretchable electronics and offers a promising route for developing durable, flexible devices for next-generation wearable technologies.

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来源期刊
ACS Applied Materials & Interfaces
ACS Applied Materials & Interfaces 工程技术-材料科学:综合
CiteScore
16.00
自引率
6.30%
发文量
4978
审稿时长
1.8 months
期刊介绍: ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.
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