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用于控制人形机器人的金属有机框架对自驱动纳米线基紫外光电探测器的改进

Improvement of Self-Driven Nanowire-Based Ultraviolet Photodetectors by Metal-Organic Frameworks for Controlling Humanoid Robots.

作者信息

Zhang Jianya, Ding Peng, Zhao Yukun, Wang Tianxiang, Wang Yudie, Liu Zhiyang, Song Helun, Zhao Yuewu, Lu Shulong

机构信息

Key Laboratory of Intelligent Optoelectronic Devices and Chips of Jiangsu Higher Education Institutions, School of Physical Science and Technology, Suzhou University of Science and Technology, Suzhou 215009, China.

Key Lab of Nanodevices and Applications, Suzhou Institute of Nano-Tech and Nano-Bionics (SINANO), Chinese Academy of Sciences (CAS), Suzhou 215123, China.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 16;16(41):55715-55721. doi: 10.1021/acsami.4c10447. Epub 2024 Oct 4.

Abstract

Self-driven photodetectors (PDs) hold significant potential for the development of new information devices, which boast the advantages of ultralow power consumption and straightforward fabrication. In this study, we have proposed and demonstrated a self-driven ultraviolet PD utilizing gallium nitride/metal-organic framework (GaN/MOF) heterojunction nanowires successfully. By introducing Gd-ETTC MOFs on the surface of GaN nanowires, the photocurrent and responsivity of the device can be improved by approximately 75% under 310 nm illumination. Furthermore, they can also be effectively enhanced under visible light illumination. Owing to the appropriate energy level alignment, Gd-ETTC MOFs can serve as both a light harvester and a hole conductor, facilitating the efficient absorption, separation, and transmission of photogenerated carriers. It has been observed that due to reduced interface resistance, MOFs can enhance the charge transport through the acceleration of charge transfer. Furthermore, the PD equipped with MOFs is capable of continuous operation for 30,000 s, a feat attributable to the exceptional stability of both GaN nanowires and Gd-ETTC MOFs. By implementation of the humanoid robot systems, the control commands from the self-driven PD can drive the humanoid robot to execute different actions. The PD-equipped autonomous feedback system of a humanoid robot enables a seamless integration of light perception with intelligent robotic actions. Therefore, the design and demonstration of GaN/MOF nanowires hold significant reference value for further enhancing the performance of PDs and broadening their applications in ultralow-power artificial intelligence systems, humanoid intelligent robots, etc.

摘要

自驱动光电探测器(PDs)在新型信息设备的发展中具有巨大潜力,这类设备具有超低功耗和制造工艺简单的优点。在本研究中,我们成功提出并展示了一种利用氮化镓/金属有机框架(GaN/MOF)异质结纳米线的自驱动紫外光电探测器。通过在GaN纳米线表面引入Gd - ETTC MOFs,在310 nm光照下,该器件的光电流和响应度可提高约75%。此外,在可见光照射下它们也能得到有效增强。由于合适的能级排列,Gd - ETTC MOFs既可以作为光捕获器又可以作为空穴导体,有助于光生载流子的高效吸收、分离和传输。据观察,由于界面电阻降低,MOFs可以通过加速电荷转移来增强电荷传输。此外,配备MOFs的光电探测器能够连续运行30000秒,这一成果归功于GaN纳米线和Gd - ETTC MOFs都具有出色的稳定性。通过人形机器人系统的应用,自驱动光电探测器发出的控制指令可以驱动人形机器人执行不同动作。人形机器人配备光电探测器的自主反馈系统实现了光感知与智能机器人动作的无缝集成。因此,GaN/MOF纳米线的设计和展示对于进一步提高光电探测器的性能以及拓宽其在超低功耗人工智能系统、人形智能机器人等领域的应用具有重要的参考价值。

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