Deakin University, Institute for Frontier Materials, Geelong, VIC 3216, Australia.
Nanoscale. 2017 Dec 7;9(47):18604-18608. doi: 10.1039/c7nr06619h.
The increasing developments in wearable electronics demand compatible power sources such as yarn supercapacitors (YSCs) that can effectively perform in a limited footprint. MXene nanosheets, which have been recently shown in the literature to possess ultra-high volumetric capacitance, were used in this study for the fabrication of YSCs in order to identify their potential merit and performance in YSCs. With the aid of a conductive binder (PEDOT-PSS), YSCs with high mass loading of MXene are demonstrated. These MXene-based YSCs exhibit excellent device performance and stability even under bending and twisting. This study demonstrates that MXene is a promising candidate for YSCs and its further development can lead to flexible power sources with sufficient performance for powering miniaturized and/or wearable electronics.
可穿戴电子产品的日益发展需要兼容的电源,例如能够在有限空间内有效运行的纱线超级电容器 (YSCs)。本研究中使用了 MXene 纳米片来制造 YSCs,因为文献中最近表明它们具有超高体积电容,以确定它们在 YSCs 中的潜在优势和性能。在导电粘结剂 (PEDOT-PSS) 的辅助下,实现了具有高 MXene 质量负载的 YSCs。这些基于 MXene 的 YSCs 即使在弯曲和扭曲的情况下也表现出出色的器件性能和稳定性。本研究表明,MXene 是 YSCs 的一种有前途的候选材料,其进一步发展可以为小型化和/或可穿戴电子设备提供足够性能的灵活电源。