http://scholars.ntou.edu.tw/handle/123456789/5688
標題: | Excellent oxidation resistive MXene aqueous ink for micro-supercapacitor application | 作者: | Wu, Chien-Wei Unnikrishnan, Binesh Chen, I-Wen Peter Harroun, Scott G. Chang, Huan-Tsung Huang, Chih-Ching |
關鍵字: | TITANIUM-DIOXIDE NANOPARTICLES;SURFACE MODIFICATION;TI3C2TX MXENE;CARBIDE MXENE;TIO2;INTERCALATION;SPECTROSCOPY;EXFOLIATION;CAPACITANCE;MECHANISM | 公開日期: | 三月-2020 | 出版社: | ELSEVIER | 卷: | 25 | 起(迄)頁: | 563-571 | 來源出版物: | ENERGY STORAGE MATER | 摘要: | Uniform and stable interdigitated electrodes are essential for planar micro-supercapacitor applications. Two-dimensional (2D) materials, such as transition-metal MXenes have become attractive nanomaterials for microsupercapacitor applications due to their layered structure and high electrical conductivity. However, the low stability of MXenes in aqueous media limits their long-term storage and application. Here, we demonstrate in-situ synthesis and capping of Ti3C2Tx MXenes with sodium ascorbate (SA) to obtain SA-MXene dispersion with high resistance against oxidation even after 80 days of storage at ambient temperature and exposed to air. The in-situ synthesis process increases the interlayer spacing of SA-MXene sheets, and increases their energy storage efficiency, without compromising their electrical conductivity. A printable SA-MXene ink was prepared with Triton X-100 and propylene glycol as modifiers to print interdigitated micro-supercapacitor electrodes with an inkjet printer. Our solid-state micro-supercapacitor made without current collector exhibits areal and volumetric capacitance of 108.1 mF cm(-2) and 720.7 F cm(-3), respectively. This work highlights the potential application of ligand-capped stable MXenes as a water-based ink in printing devices for the fabrication of micro-electronics and supercapacitors. |
URI: | http://scholars.ntou.edu.tw/handle/123456789/5688 | ISSN: | 2405-8297 | DOI: | 10.1016/j.ensm.2019.09.026 |
顯示於: | 生命科學暨生物科技學系 07 AFFORDABLE & CLEAN ENERGY |
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