Insights Focused on Hybrid Graphene Modifications within the Nanoscale for Opto-Electronics Perspectives

Guillermo Bracamonte
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引用次数: 1

Abstract

This brief letter presents this Special Issue nominated as “Hybrid Graphene-based Materials: Synthesis, Characterization, Properties, and Applications”. This intends to show and discuss the main properties of Graphene and its derivatives; and how it could be synthesized, modified and tuned for Optics, Electro-Optics, Electronics, and Quantum characteristics. In this context, the synthesis and chemical modifications were highlighted for the design of Hybrid composites, platforms. In this context, it was afforded to varied developments within Multidisciplinary fields for high-impact Research and applications. In this manner, Graphene joined to other organic and inorganic materials showed different properties compared to free and non-modified Graphene. This fact, permitted to tune of electronic properties through materials that were transferred to applications. For example, the high electronic density could generate pseudo-electromagnetic fields and other phenomena such as luminescence, electronic conductions, and specific Quantum states that could be joined to optical active materials. Thus, it was afforded to the discussion and introduction in this other Research field as well. In this manner, it was intended to afford an overview of the high-impact Research and potential perspectives of Hybrid Graphene materials.
光电子学视角下纳米尺度下混合石墨烯修饰的见解
这封简短的信介绍了本期特刊,被提名为“混合石墨烯基材料:合成、表征、性能和应用”。本文旨在展示和讨论石墨烯及其衍生物的主要性质;以及如何合成、修改和调整光学、电光、电子学和量子特性。在此背景下,杂化复合材料的合成和化学修饰成为设计平台的重点。在这方面,它提供给多学科领域内的各种发展,以进行高影响的研究和应用。通过这种方式,石墨烯与其他有机和无机材料结合,与自由和未修饰的石墨烯相比,表现出不同的性能。这一事实允许通过转移到应用程序的材料来调整电子特性。例如,高电子密度可以产生伪电磁场和其他现象,如发光、电子传导和特定的量子态,这些现象可以加入到光学活性材料中。从而也为其他研究领域的探讨和介绍提供了参考。通过这种方式,本文旨在概述杂化石墨烯材料的高影响力研究和潜在前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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