论文标题

用于柔性和可拉伸电子设备的导电2D材料涂料:石墨烯和MXENES的比较综述

Electrically Conductive 2D Material Coatings for Flexible & Stretchable Electronics: A Comparative Review of Graphenes & MXenes

论文作者

Mercadillo, Vicente Orts, Chan, Kai Chio, Caironi, Mario, Athanassiou, Athanassia, Kinloch, Ian A., Bissett, Mark, Cataldi, Pietro

论文摘要

人们对从刚性和刚性基材转变为更灵活和可拉伸的平台(例如薄型塑料,纺织品和泡沫)的电路越来越感兴趣。同时,推动更可持续,生物相容性和成本效益的导电墨水涂层这些底物,这导致了具有新型纳米材料的制剂的开发。其中,由于它们越来越容易且可扩展的产生,高电导率以及与现有制造技术的兼容性,因此2D材料,尤其是石墨烯和MXENES引起了强烈的研究兴趣。它们可实现一系列电子设备,包括应变和压力传感器,超级电容器,热电发生器和加热器。这些新的具有2D材料涂料开发的新型灵活且可拉伸的电子设备有望在可穿戴,医疗保健和物联网领域解锁令人兴奋的应用。这篇综述调查了过去6年中发表的200多种文章的关键数据,以对现场进展的最新进展进行定量分析,并在该技术的未来方向和前景上进行遮阳。我们发现,尽管石墨烯和MXENES的化学起源不同,它们的共享电气性能和2D形态,保证了最终应用中有趣的性能,为将来的共同进步和进步留下了很大的空间。

There is growing interest in transitioning electronic components and circuitry from stiff and rigid substrates to more flexible and stretchable platforms, such as thin plastics, textiles, and foams. In parallel, the push for more sustainable, biocompatible, and cost-efficient conductive inks to coat these substrates, has led to the development of formulations with novel nanomaterials. Among these, 2D materials, and particularly graphenes and MXenes, have received intense research interest due to their increasingly facile and scalable production, high electrical conductivity, and compatibility with existing manufacturing techniques. They enable a range of electronic devices, including strain and pressure sensors, supercapacitors, thermoelectric generators, and heaters. These new flexible and stretchable electronic devices developed with 2D material coatings are poised to unlock exciting applications in the wearable, healthcare and Internet of Things sectors. This review has surveyed key data from more than 200 articles published over the last 6 years, to provide a quantitative analysis of recent progress in the field and shade light on future directions and prospects of this technology. We find that despite the different chemical origins of graphenes and MXenes, their shared electrical properties and 2D morphology, guarantee intriguing performance in end applications, leaving plenty of space for shared progress and advancements in the future.

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