泛在电子的二维材料

Saptarshi Das
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引用次数: 1

摘要

对二维(2D)材料的兴趣正迅速蔓延到所有科学和工程学科,因为它们精致的物理特性不仅为研究新的和有趣的现象提供了一个平台,而且还承诺解决许多迫在眉睫的技术挑战。随着物联网(IoT)时代的到来,石墨烯、MoS2、WSe2、黑磷等二维层状材料在传统电子、柔性电子、应变电子、自供电电子、光电子甚至脑启发电子等领域得到了广泛的应用。低成本和高产量合成这些2D材料的原始质量对其商业实施至关重要。在我的演讲中,我将提供对二维材料的整体理解,从一种新的电化学方法合成各种二维材料的单层到它们最终在电子各个分支中的普遍应用[1]-[20]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2D Materials for Ubiquitous Electronics
The interest in two dimensional (2D) materials is rapidly spreading across all scientific and engineering disciplines due to their exquisite physical properties which not only provides a platform to investigate new and intriguing phenomena but also promises solutions to many imminent technological challenges. With the emergence of the era of Internet of Things (IoT), the 2D layered materials like graphene, MoS2, WSe2, Black Phosphorus, and many more are finding their widespread applications in conventional electronics, flexible electronics, straintronics, self-powered electronics, optoelectronics and even in brain inspired electronics. Low cost and high yield synthesis of pristine quality of these 2D materials is critical towards their commercial implementation. In my talk, I will provide a holistic understanding of 2D materials starting from a novel electrochemical method of synthesizing monolayers of various 2D materials to their eventual ubiquitous applications in various branches of electronics [1]–[20].
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