Suppr超能文献

通过优化石墨烯上的氧基团简便制备高性能独立式微型超级电容器

Facile Preparation of High-Performance Free-Standing Micro-Supercapacitors by Optimizing Oxygen Groups on Graphene.

作者信息

Chen Shiyu, Sun Hui, Chen Yuewen, Fang Qihan, Huang Ziyuan, Liu Yuan, Chen Jie, Chen Mingming, Cao Dawei

机构信息

School of Physics and Electronic Engineering, Jiangsu University, Zhenjiang, 212013, P. R. China.

Institute of Laser & Optoelectronic Intelligent Manufacturing, Wenzhou University, Wenzhou, 325035, P. R. China.

出版信息

Small. 2024 Dec;20(49):e2404307. doi: 10.1002/smll.202404307. Epub 2024 Sep 6.

Abstract

Free-standing micro-supercapacitor (MSC) devices without substrate or current collectors are promising for practical applications. However, it is still difficult to prepare high-performance free-standing MSC devices because of the requirement of optimized active sites, conductivity, ion diffusion, controlled patterns, moisture susceptibility, etc. Here, it is proposed that the optimization of oxygen level on graphene is promising to solve these requirements because of the balance of sp and sp hybridization. Using the medium-oxidized graphene, the flexible, conductive, hydro-stable, easy-processing film can be facilely obtained, which facilitates the preparation of free-standing MSC electrodes. After constructing with gel electrolyte, the free-standing MSC device shows a high capacitance of 898.4 mF cm using aqueous-gel electrolyte and 383.6 mF cm using ion-gel electrolyte with mass loading of ca. 10 mg cm. Correspondingly, the MSC device can achieve a landmark energy density of 42.6 µWh cm at 0.85 mW cm (7.1 mWh cm at 141.7 mW cm). The advantages of high performance, facile preparation, and low inactive components make the free-standing MSC device promising for practical applications.

摘要

无基底或集流体的独立式微型超级电容器(MSC)器件在实际应用中具有广阔前景。然而,由于需要优化活性位点、导电性、离子扩散、可控图案、湿度敏感性等,制备高性能的独立式MSC器件仍然具有挑战性。在此,有人提出,由于sp和sp杂化的平衡,优化石墨烯上的氧含量有望满足这些要求。使用中氧化石墨烯,可以轻松获得柔性、导电、水稳定且易于加工的薄膜,这有利于制备独立式MSC电极。在用凝胶电解质构建后,独立式MSC器件在使用水凝胶电解质时表现出898.4 mF cm的高电容,在使用离子凝胶电解质且质量负载约为10 mg cm时表现出383.6 mF cm的高电容。相应地,该MSC器件在0.85 mW cm时可实现42.6 µWh cm的标志性能量密度(在141.7 mW cm时为7.1 mWh cm)。高性能、制备简便和低非活性成分等优点使得独立式MSC器件在实际应用中具有广阔前景。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验