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可控三维花状银碳纤电极作为具有高稳定性的柔性海洋电场传感器

Controllable 3D Flower-Like Ag-CF Electrodes as Flexible Marine Electric Field Sensors with High Stability.

作者信息

Hu Zhihui, He Tiancheng, Li Wenhao, Huang Jinping, Zhang Aiqi, Wang Shiyu, Zhou Wei, Xu Jianmei

机构信息

Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan 430074, Hubei, China.

出版信息

Inorg Chem. 2023 Feb 27;62(8):3541-3554. doi: 10.1021/acs.inorgchem.2c04039. Epub 2023 Feb 15.

Abstract

Construction of three-dimensional (3D) flower-like nanostructures with controlled morphologies has emerged as an attractive tool by scientists in the marine electric field sensor research field due to their peculiar structural features. Herein, novel 3D flower-like Ag-CF capacitive composite electrodes have been created by an eco-friendly water-bath strategy via AgNO as a sliver source and subsequently compounded with carbon fibers (CFs) pretreated by thermal oxidation. A series of electrode samples with various morphologies obtained by modulating different reaction times and temperatures bring about the dominant formation mechanism of these nanostructures and the influence behavior on the CF electrode in detail. Especially, the 3D flower-like Ag-CF electrode shows a large surface area acquired under the conditions of 80 °C and 15 min, which can provide more electroactive sites in electrochemical analysis and exhibit a maximum areal specific capacitance of 619.75 mF·cm at a scanning speed of 10 mV·s. This is mainly due to the synergistic behavior of the unique 3D flower-like morphology and the large specific surface area of CFs. Furthermore, a cylinder-shaped Ag-CF sensor is designed, which delivers a superior potential difference of 33.08 μV, a potential difference drift of 18.62 μV/24 h for 30 days, and a self-noise of 0.92 nV/rt (Hz)@1 Hz. In this work, the intriguing synthesis strategy can be a promising facile approach to manufacture the controllable 3D flower-like Ag-CF electrode for electric field sensor applications.

摘要

构建具有可控形态的三维(3D)花状纳米结构,因其独特的结构特征,已成为海洋电场传感器研究领域科学家们引人注目的工具。在此,通过以硝酸银为银源的环保水浴策略,制备了新型3D花状Ag-CF电容复合电极,随后与经热氧化预处理的碳纤维(CFs)复合。通过调节不同反应时间和温度获得的一系列具有不同形态的电极样品,详细揭示了这些纳米结构的主要形成机制以及对CF电极的影响行为。特别是,3D花状Ag-CF电极在80℃和15分钟的条件下具有较大的表面积,这在电化学分析中可提供更多的电活性位点,并在扫描速度为10 mV·s时表现出619.75 mF·cm的最大面积比电容。这主要归因于独特的3D花状形态与CFs大比表面积的协同作用。此外,设计了一种圆柱形Ag-CF传感器,其具有33.08 μV的优异电位差、30天内18.62 μV/24 h的电位差漂移以及0.92 nV/rt(Hz)@1 Hz的自噪声。在这项工作中,这种有趣的合成策略可能是一种有前景的简便方法,用于制造用于电场传感器应用的可控3D花状Ag-CF电极。

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