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具有大幅增强电化学驱动性能的分子级甲基纤维素/碳化钛纳米片复合材料

Molecular-Level Methylcellulose/MXene Hybrids with Greatly Enhanced Electrochemical Actuation.

作者信息

Chen Shaohua, Ciou Jing-Hao, Yu Fei, Chen Jian, Lv Jian, Lee Pooi See

机构信息

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.

出版信息

Adv Mater. 2022 Jul;34(29):e2200660. doi: 10.1002/adma.202200660. Epub 2022 Jun 12.

Abstract

Ti C T MXene film is promising for electrochemical actuators due to its high electrical conductivity and volumetric capacitance. However, its actuation performance is limited by the slow ion diffusion through the film and poor mechanical property in aqueous electrolytes. Here, molecular-level methylcellulose (MC)/MXene hybrid films are assembled with obviously enlarged layer distance, improved wet strength, and ambient stability. The hybrid films show significantly higher in-plane actuation strain in a liquid electrolyte. Based on direct strain measurements, in situ X-ray diffraction (XRD) and ex situ X-ray photoelectron spectroscopy (XPS) analyses, the actuation enhancement can be ascribed to the enlarged layer distance allowing more water and ions to be intercalated/de-intercalated and MC-induced sliding of MXene sheets. The assembled soft actuator has a high Young's modulus of 1.93 GPa and can be operated in air, generating a peak-to-peak strain difference up to 0.541% under a triangular wave voltage of ±1 V and a blocking force of 4.7 times its own weight.

摘要

Ti C T MXene薄膜因其高电导率和体积电容而在电化学致动器方面具有广阔前景。然而,其致动性能受到通过薄膜的离子扩散缓慢以及在水性电解质中机械性能较差的限制。在此,分子级甲基纤维素(MC)/MXene混合薄膜被组装起来,其层间距明显增大,湿强度提高,且具有环境稳定性。该混合薄膜在液体电解质中表现出明显更高的面内致动应变。基于直接应变测量、原位X射线衍射(XRD)和非原位X射线光电子能谱(XPS)分析,致动增强可归因于增大的层间距允许更多的水和离子嵌入/脱嵌以及MC诱导的MXene片层滑动。所组装的软致动器具有1.93 GPa的高杨氏模量,可在空气中运行,在±1 V的三角波电压下产生高达0.541%的峰 - 峰值应变差,且阻塞力为其自身重量的4.7倍。

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