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直接生长石墨炔纳米阵列阴极以集成智能固态镁-水系电池。

Directly Growing Graphdiyne Nanoarray Cathode to Integrate an Intelligent Solid Mg-Moisture Battery.

作者信息

Fu Xinlong, He Feng, Gao Jingchi, Yan Xingru, Chang Qian, Zhang Zhihui, Huang Changshui, Li Yuliang

机构信息

CAS Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

School of Chemical Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Am Chem Soc. 2023 Feb 8;145(5):2759-2764. doi: 10.1021/jacs.2c11409. Epub 2022 Dec 29.

Abstract

A continuous humidity and solar-light dual responsive intelligent solid Mg-moisture battery (SMB) with a graphdiyne nanosheets array was fabricated. The integrated battery works based on a new concept of chemical bond conversion on the surface of the graphdiyne nanosheets array that is grown in situ on a 3D melamine sponge (GDY/MS). The unique structure, excellent catalytic, and semiconductor performance of GDY endows the GDY/MS with some outstanding characteristics on trapping and transferring water molecules, catalyzing HER, and utilizing solar energy, making the GDY/MS a new generation cathode for a high-performance intelligent SMB. The performance of the GDY/MS-based smart SMB (GSMB) can be continuously tuned by humidity and solar-light. The GSMB shows a significant positive correlation between open circuit potential (OCP) and humidity, while the natural band gap of GDY makes it further act as a photoelectrode to capture light and generate photoelectrons. The GSMB can be applied as a self-power humidity monitor with an ultrafast response time of <0.24 s, a recovery time of <0.16 s, and a sensitive (36,600%) respiratory sensing performance. This simple and efficient battery-made strategy represents the future development direction of self-power supply equipment, intelligent electronic devices, and intelligent battery integration.

摘要

制备了一种具有石墨炔纳米片阵列的连续湿度和太阳光双响应智能固态镁-湿度电池(SMB)。该集成电池基于在三维三聚氰胺海绵(GDY/MS)上原位生长的石墨炔纳米片阵列表面化学键转换的新概念工作。GDY独特的结构、优异的催化和半导体性能赋予GDY/MS在捕获和转移水分子、催化析氢反应以及利用太阳能方面的一些突出特性,使GDY/MS成为高性能智能SMB的新一代阴极。基于GDY/MS的智能SMB(GSMB)的性能可通过湿度和太阳光进行连续调节。GSMB的开路电位(OCP)与湿度之间呈现显著的正相关,而GDY的天然带隙使其进一步充当光电极以捕获光并产生光电子。GSMB可作为自供电湿度监测器应用,具有<0.24 s的超快响应时间、<0.16 s的恢复时间以及灵敏的(36600%)呼吸传感性能。这种简单高效的电池制造策略代表了自供电设备、智能电子器件和智能电池集成的未来发展方向。

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