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用于电化学应用的镍掺杂石墨烯气凝胶的合成

Synthesis of Ni-Doped Graphene Aerogels for Electrochemical Applications.

作者信息

González-Barriuso Marina, Sánchez-Suárez Mario, González-Lavín Judith, Arenillas Ana, Rey-Raap Natalia

机构信息

Institute of Carbon Science and Technology (INCAR-CSIC), Calle Francisco Pintado Fe, 26, 33011 Oviedo, Spain.

Inorganic Chemistry Group, Department of Chemistry and Process and Resource Engineering, School of Industrial and Telecommunication Engineers, University of Cantabria, Avenida de los Castros s.n., 39005 Santander, Spain.

出版信息

Gels. 2024 Mar 4;10(3):180. doi: 10.3390/gels10030180.

Abstract

Carbonaceous materials used in most electrochemical applications require high specific surface area, adequate pore size distribution, and high electrical conductivity to ensure good interaction with the electrolyte and fast electron transport. The development of transition metal doped graphene aerogels is a possible solution, since their structure, morphology, and electrical properties can be controlled during the synthesis process. This work aims to synthesize Ni-doped graphene aerogels to study the role of different nickel salts in the sol-gel reaction and their final properties. The characterization data show that, regardless of the nature of the Ni salts, the surface area, volume of micropores, and enveloped density decrease, while the porosity and electrical conductivity increase. However, differences in morphology, mesopore size distribution, degree of order of the carbon structure, and electrical conductivity were observed depending on the type of Ni salt. It was found that nickel nitrate results in a material with a broader mesopore distribution, higher electrical conductivity, and hence, higher electrochemical surface area, demonstrating that graphene aerogels can be easily synthesized with tailored properties to fit the requirements of specific electrochemical applications.

摘要

大多数电化学应用中使用的碳质材料需要高比表面积、合适的孔径分布和高电导率,以确保与电解质良好相互作用并实现快速电子传输。过渡金属掺杂的石墨烯气凝胶的开发是一种可能的解决方案,因为它们的结构、形态和电学性质可以在合成过程中得到控制。这项工作旨在合成镍掺杂的石墨烯气凝胶,以研究不同镍盐在溶胶 - 凝胶反应中的作用及其最终性能。表征数据表明,无论镍盐的性质如何,表面积、微孔体积和包封密度都会降低,而孔隙率和电导率会增加。然而,根据镍盐的类型,观察到形态、中孔尺寸分布、碳结构的有序度和电导率存在差异。结果发现,硝酸镍会产生一种具有更宽中孔分布、更高电导率以及因此更高电化学表面积的材料,这表明可以轻松合成具有定制性能的石墨烯气凝胶,以满足特定电化学应用的要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb72/10970258/787256ff87dc/gels-10-00180-g001.jpg

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