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基于VO的异质结的柔印-热光电子效应调制的近红外巨光响应用于光通信

Flexo-Pyrophotronic Effect Modulated Giant Near Infrared Photoresponse from VO -Based Heterojunction for Optical Communication.

作者信息

Kumar Mohit, Kim Dukhwan, Seo Hyungtak

机构信息

Department of Energy Systems Research, Ajou University, Suwon, 16499, Republic of Korea.

Department of Materials Science and Engineering, Ajou University, Suwon, 16499, Republic of Korea.

出版信息

Small Methods. 2024 Feb;8(2):e2300425. doi: 10.1002/smtd.202300425. Epub 2023 Jul 9.

Abstract

The flexoelectric phenomenon, which occurs when materials undergo mechanical deformation and cause strain gradients and a related spontaneous electric polarization field, can result in wide variety of energy- and cost-saving mechano-opto-electronics, such as night vision, communication, and security. However, accurate sensing of weak intensities under self-powered conditions with stable photocurrent and rapid temporal response remains essential despite the challenges related to having suitable band alignment and high junction quality. Taking use of the flexoelectric phenomena, it is shown that a centrosymmetric VO -based heterojunction exhibits a self-powered (i.e., 0 V), infrared (λ = 940 nm) photoresponse. Specifically, the device shows giant current modulation (10 %), good responsivity of >2.4 mA W , reasonable specific detectivity of ≈10 Jones, and a fast response speed of 0.5 ms, even at the nanoscale modulation. Through manipulation of the applied inhomogeneous force, the sensitivity of the infrared response is enhanced (> 640%). Ultrafast night optical communication like Morse code distress (SOS) signal sensing and high-performing obstacle sensors with potential impact alarms are created as proof-of-concept applications. These findings validate the potential of emerging mechanoelectrical coupling for a wide variety of novel applications, including mechanoptical switches, photovoltaics, sensors, and autonomous vehicles, which require tunable optoelectronic performance.

摘要

挠曲电现象是指材料发生机械变形时产生应变梯度并引发相关的自发极化电场,这一现象可带来多种节能型机电光电子器件,如夜视、通信和安全领域的器件。然而,尽管在实现合适的能带排列和高质量结方面存在挑战,但在自供电条件下准确探测微弱强度并保持稳定的光电流和快速的时间响应仍然至关重要。利用挠曲电现象,研究表明一种基于中心对称VO的异质结展现出自供电(即0 V)的红外(λ = 940 nm)光响应。具体而言,该器件显示出巨大的电流调制(10%)、大于2.4 mA/W的良好响应度、约10 Jones的合理比探测率以及0.5 ms的快速响应速度,即使在纳米级调制下也是如此。通过施加非均匀力的操控,红外响应的灵敏度得以提高(> 640%)。超快夜间光通信如莫尔斯电码遇险(SOS)信号传感以及具有潜在碰撞警报功能的高性能障碍物传感器作为概念验证应用得以实现。这些发现验证了新兴机电耦合在多种新型应用中的潜力,包括机械光开关、光伏、传感器和自动驾驶车辆等需要可调谐光电性能的应用。

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