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石墨烯及其类似物在光学、电子、自旋电子学、绿色化学、能源材料、传感和医疗应用中的研究进展

Graphene and Graphene Analogs toward Optical, Electronic, Spintronic, Green-Chemical, Energy-Material, Sensing, and Medical Applications.

机构信息

Center for Superfunctional Materials, Department of Chemistry, School of Natural Science, Ulsan National Institute of Science and Technology (UNIST) , 50 UNIST-gil, Ulsan 44919, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2017 Jul 26;9(29):24393-24406. doi: 10.1021/acsami.7b02864. Epub 2017 Jul 14.

Abstract

This spotlight discusses intriguing properties and diverse applications of graphene (Gr) and Gr analogs. Gr has brought us two-dimensional (2D) chemistry with its exotic 2D features of density of states. Yet, some of the 2D or 2D-like features can be seen on surfaces and at interfaces of bulk materials. The substrate on Gr and functionalization of Gr (including metal decoration, intercalation, doping, and hybridization) modify the unique 2D features of Gr. Despite abundant literature on physical properties and well-known applications of Gr, spotlight works based on the conceptual understanding of the 2D physical and chemical nature of Gr toward vast-ranging applications are hardly found. Here we focus on applications of Gr, based on conceptual understanding of 2D phenomena toward 2D chemistry. Thus, 2D features, defects, edges, and substrate effects of Gr are discussed first. Then, to pattern Gr electronic circuits, insight into differentiating conducting and nonconducting regions is introduced. By utilizing the unique ballistic electron transport properties and edge spin states of Gr, Gr nanoribbons (GNRs) are exploited for the design of ultrasensitive molecular sensing electronic devices (including molecular fingerprinting) and spintronic devices. The highly stable nature of Gr can be utilized for protection of corrosive metals, moisture-sensitive perovskite solar cells, and highly environment-susceptible topological insulators (TIs). Gr analogs have become new types of 2D materials having novel features such as half-metals, TIs, and nonlinear optical properties. The key insights into the functionalized Gr hybrid materials lead to the applications for not only energy storage and electrochemical catalysis, green chemistry, and electronic/spintronic devices but also biosensing and medical applications. All these topics are discussed here with the focus on conceptual understanding. Further possible applications of Gr, GNRs, and Gr analogs are also addressed in a section on outlook and future challenges.

摘要

本专题讨论了石墨烯(Gr)及其类似物的有趣性质和多样化应用。Gr 带来了二维(2D)化学,具有其奇特的 2D 态密度特征。然而,在体材料的表面和界面上也可以看到一些 2D 或 2D 类似的特征。Gr 上的衬底和 Gr 的功能化(包括金属修饰、插层、掺杂和杂化)改变了 Gr 的独特 2D 特征。尽管关于 Gr 的物理性质和众所周知的应用有大量文献,但很少有基于对 Gr 的 2D 物理和化学性质的概念理解的专题工作针对广泛的应用。在这里,我们基于对 Gr 的 2D 现象的概念理解,重点关注 Gr 的应用。因此,首先讨论了 Gr 的 2D 特征、缺陷、边缘和衬底效应。然后,为了对 Gr 电子电路进行图案化,引入了区分导电和非导电区域的见解。利用 Gr 的独特弹道电子输运性质和边缘自旋态,Gr 纳米带(GNRs)被用于设计超灵敏分子传感电子器件(包括分子指纹识别)和自旋电子器件。Gr 的高稳定性可用于保护腐蚀性金属、对湿度敏感的钙钛矿太阳能电池和高度环境敏感的拓扑绝缘体(TIs)。Gr 类似物已成为具有新型特征(如半金属、TIs 和非线性光学性质)的新型 2D 材料。对功能化 Gr 杂化材料的关键见解不仅导致了储能和电化学催化、绿色化学以及电子/自旋电子器件的应用,而且还导致了生物传感和医疗应用。所有这些主题都在这里进行了讨论,重点是概念理解。在展望和未来挑战部分还讨论了 Gr、GNRs 和 Gr 类似物的其他可能应用。

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