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电池-传感器混合体:一种具有完全能量自给能力的新型气体传感模式。

Battery-Sensor Hybrid: A New Gas Sensing Paradigm with Complete Energy Self-Sufficiency.

作者信息

Yan Wenhao, Ma Longtao, Xu Jiangang, Guo Ying, Hu Haibo, Zhi Chunyi, Ho Derek

机构信息

Department of Materials Science and Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong 999077, P.R. China.

School of Physics and Materials Science, Key Laboratory of Structure and Functional Regulation of Hybrid Materials, Ministry of Education, Anhui University, Hefei 230601, China.

出版信息

ACS Appl Mater Interfaces. 2021 Oct 6;13(39):46507-46517. doi: 10.1021/acsami.1c09255. Epub 2021 Sep 27.

Abstract

Fully autonomous operation has long been an ultimate goal in environmental sensing. Although self-powered gas sensors based on energy harvesting have been widely reported to provide power for autonomous operation, these sensors rely on external sources of harvestable energy, thus are not completely self-sufficient. Herein, a battery-sensor hybrid device that can simultaneously function as both a power source and a gas sensor is presented. The battery-sensor consists of a cathode that reduces NO to NO via a catalyst with Fe-N species distributed on highly graphitic porous nitrogen-doped carbon. On the basis of the efficient and selective electrocatalytic activity of the catalyst, the batterysensor is capable of sensing NO and does so without any external power, overcoming the long-standing grand challenge to achieve complete energy self-sufficiency. Furthermore, through controlling the working current the sensing range can be significantly expanded and electronically tuned, which is not only unprecedented for gas sensors but also of remarkable commercial practicality. The proposed batterysensor hybrid architecture represents a new paradigm toward sensors with complete energy self-sufficiency.

摘要

长期以来,完全自主运行一直是环境传感领域的终极目标。尽管基于能量收集的自供电气体传感器已被广泛报道可为自主运行提供动力,但这些传感器依赖于外部可收集能源,因此并非完全自给自足。在此,我们展示了一种电池 - 传感器混合装置,它能够同时作为电源和气体传感器发挥作用。该电池 - 传感器由一个阴极组成,该阴极通过分布在高度石墨化多孔氮掺杂碳上的具有Fe - N物种的催化剂将NO还原为NO。基于该催化剂高效且选择性的电催化活性,该电池 - 传感器能够在无任何外部电源的情况下检测NO,克服了实现完全能量自给自足这一长期存在的重大挑战。此外,通过控制工作电流,传感范围可以显著扩大并进行电子调谐,这不仅是气体传感器前所未有的,而且具有显著的商业实用性。所提出的电池 - 传感器混合架构代表了一种实现完全能量自给自足传感器的新范式。

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