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由等离子体铜磷胶体纳米晶体增强的柔性宽带石墨烯光电探测器。

Flexible Broadband Graphene Photodetectors Enhanced by Plasmonic Cu P Colloidal Nanocrystals.

作者信息

Sun Tian, Wang Yongjie, Yu Wenzhi, Wang Yusheng, Dai Zhigao, Liu Zeke, Shivananju Bannur Nanjunda, Zhang Yupeng, Fu Kai, Shabbir Babar, Ma Wanli, Li Shaojuan, Bao Qiaoliang

机构信息

Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices and Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou, 215123, P. R. China.

Laboratory of Printable Functional Nanomaterials and Printed Electronics, School of Printing and Packaging, Wuhan University, Wuhan, 430072, P. R. China.

出版信息

Small. 2017 Nov;13(42). doi: 10.1002/smll.201701881. Epub 2017 Sep 22.

Abstract

The integration of graphene with colloidal quantum dots (QDs) that have tunable light absorption affords new opportunities for optoelectronic applications as such a hybrid system solves the problem of both quantity and mobility of photocarriers. In this work, a hybrid system comprising of monolayer graphene and self-doped colloidal copper phosphide (Cu P) QDs is developed for efficient broadband photodetection. Unlike conventional PbS QDs that are toxic, Cu P QDs are environmental friendly and have plasmonic resonant absorption in near-infrared (NIR) wavelength. The half-covered graphene with Cu P nanocrystals (NCs) behaves as a self-driven p-n junction and shows durable photoresponse in NIR range. A comparison experiment reveals that the surface ligand attached to Cu P NCs plays a key role in determining the charge transfer efficiency from Cu P to graphene. The most efficient three-terminal photodetectors based on graphene-Cu P exhibit broadband photoresponse from 400 to 1550 nm with an ultrahigh responsivity (1.59 × 10 A W ) and high photoconductive gain (6.66 × 10 ) at visible wavelength (405 nm), and a good responsivity of 9.34 A W at 1550 nm. The demonstration of flexible graphene-Cu P photodetectors operated at NIR wavelengths may find potential applications in optical sensing, biological imaging, and wearable devices.

摘要

将具有可调光吸收特性的胶体量子点(QDs)与石墨烯相结合,为光电子应用带来了新机遇,因为这种混合系统解决了光载流子的数量和迁移率问题。在这项工作中,开发了一种由单层石墨烯和自掺杂的胶体磷化铜(CuP)量子点组成的混合系统,用于高效宽带光探测。与有毒的传统硫化铅量子点不同,磷化铜量子点对环境友好,并且在近红外(NIR)波长具有等离子体共振吸收。覆盖有磷化铜纳米晶体(NCs)的半覆盖石墨烯表现为自驱动的p-n结,并在近红外范围内显示出持久的光响应。一项对比实验表明,附着在磷化铜纳米晶体上的表面配体在决定从磷化铜到石墨烯的电荷转移效率方面起着关键作用。基于石墨烯-磷化铜的最有效的三端光探测器在可见光波长(405nm)下表现出从400到1550nm的宽带光响应,具有超高响应率(1.59×10 A/W)和高光导增益(6.66×10),在1550nm处具有9.34 A/W的良好响应率。在近红外波长下工作的柔性石墨烯-磷化铜光探测器的演示可能在光学传感、生物成像和可穿戴设备中找到潜在应用。

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