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通过原位反应合成的用于高性能柔性超级电容器的碳纳米管@钛酸锶纳米复合材料

CNT@SrTiO Nanocomposites Synthesized by In Situ Reaction for a High-Performance Flexible Supercapacitor.

作者信息

Cao Yue, Li Shijingmin, Zhong Jinhua, Cao Yi, Qiu Wenfeng

机构信息

South China Advanced Institute for Soft Matter Science and Technology, School of Emergent Soft Matter, South China University of Technology, Guangzhou 510640, China.

Guangdong Provincial Key Laboratory of Functional and Intelligent Hybrid Materials and Devices, South China University of Technology, Guangzhou 510640, China.

出版信息

ACS Omega. 2024 May 7;9(20):22423-22435. doi: 10.1021/acsomega.4c01890. eCollection 2024 May 21.

Abstract

This study presents the in situ synthesis of CNT@SrTiO nanocomposite films for the development of high-performance flexible supercapacitors. The synthesis process involved the use of organic-inorganic hybrid polymers containing metal elements as precursors for thermal decomposition reaction under a reducing atmosphere. Due to the formation of chemical bonding between Ti elements and the CNTs, the interface between STO and CNT surface could provide additional active sites for ion transport and storage. Thereby, the incorporation of SrTiO nanoparticles into CNTs enhanced the electrochemical performance of the resulting nanocomposite membranes. To further investigate the influence of STO content and synthesis temperature, we conducted a detailed analysis. The findings indicated that the CNT@STO film with 25% STO content, synthesized at 700 °C, and possessed optimal performance with an areal capacitance of 6682 mF·cm at 5 mV·s. Furthermore, a symmetrical flexible supercapacitor assembled by two CNT@STO-25 electrodes demonstrated strong application potential in wearable devices, owing to its long cycle life, excellent flexibility, and high energy density of 430.2 μWh·cm (corresponding power density of 4.5 mW·cm). Based on these results, we believe that this study provides a fresh idea for the development of novel flexible energy storage materials.

摘要

本研究展示了用于高性能柔性超级电容器开发的碳纳米管@钛酸锶纳米复合薄膜的原位合成。合成过程涉及使用含金属元素的有机-无机杂化聚合物作为前驱体,在还原气氛下进行热分解反应。由于钛元素与碳纳米管之间形成化学键,钛酸锶(STO)与碳纳米管表面之间的界面可为离子传输和存储提供额外的活性位点。因此,将钛酸锶纳米颗粒掺入碳纳米管中增强了所得纳米复合膜的电化学性能。为了进一步研究STO含量和合成温度的影响,我们进行了详细分析。结果表明,在700℃合成的含25% STO的碳纳米管@STO薄膜具有最佳性能,在5 mV·s时面积电容为6682 mF·cm 。此外,由两个碳纳米管@STO-25电极组装而成的对称柔性超级电容器由于其长循环寿命、优异的柔韧性和430.2 μWh·cm的高能量密度(对应功率密度为4.5 mW·cm),在可穿戴设备中显示出强大的应用潜力。基于这些结果,我们认为本研究为新型柔性储能材料的开发提供了新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20df/11112693/60ddb7a1c75c/ao4c01890_0001.jpg

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