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石墨烯衍生物光学性质的实验与理论探究。

Experimental and theoretical inquiry into optical properties of graphene derivatives.

作者信息

Valimukhametova Alina, Ryan Conor, Paz Thomas, Grote Fabian, Naumov Anton V

机构信息

Department of Physics and Astronomy, Texas Christian University, Fort Worth, Texas, United States of America.

出版信息

Nanotechnology. 2021 Jan 1;32(1):015709. doi: 10.1088/1361-6528/abb971.

Abstract

Graphene oxide (GO), a functional derivative of graphene, is a promising nanomaterial for a variety of optoelectronic applications as it exhibits fluorescence and maintains many of graphene's beneficial physical properties. although other graphene derivatives are chemically plausible and may serve to the benefit of the aforementioned applications, GO remains the one heavily used. the nature of optical behavior of other graphene derivatives has yet to be fully understood and studied. in this work we develop a variety of graphene derivatives and characterize their optical properties concomitantly suggesting a unified model for optical emission in graphene derivatives. in this process we examine the influence of different functional groups on the surface of graphene on its optoelectronic properties. mildly oxidized graphene (oxo-g), nitrated graphene, arylated graphene, brominated graphene, and fluorinated graphene are obtained and characterized via TEM and EDX, FTIR and fluorescence spectroscopies with the latter indicating a potential band gap-derived fluorescence from each of the materials. this suggests that optical properties of graphene derivatives have minimal functional group dependence and are manifested by the localized environments within the flakes. this is confirmed by the hyperchem theoretical modeling of all aforementioned graphene derivatives indicating a similar electronic configuration for all, assessed by the pm3 semi-empirical approach. this work can further serve to describe and predict optical properties of similar graphene-based structures and promote graphene derivatives other than GO for utilization in research and industry.

摘要

氧化石墨烯(GO)是石墨烯的一种功能衍生物,由于其具有荧光特性并保留了石墨烯的许多有益物理性质,因而成为一种极具前景的纳米材料,可用于各种光电子应用。尽管其他石墨烯衍生物在化学上是合理的,并且可能有助于上述应用,但GO仍然是使用最广泛的一种。其他石墨烯衍生物的光学行为本质尚未得到充分理解和研究。在这项工作中,我们制备了多种石墨烯衍生物,并对它们的光学性质进行了表征,同时提出了一个关于石墨烯衍生物光发射的统一模型。在此过程中,我们研究了石墨烯表面不同官能团对其光电子性质的影响。通过透射电子显微镜(TEM)和能谱仪(EDX)、傅里叶变换红外光谱仪(FTIR)以及荧光光谱仪,我们获得并表征了轻度氧化石墨烯(oxo - g)、硝化石墨烯、芳基化石墨烯、溴化石墨烯和氟化石墨烯,后者表明每种材料都有潜在的由带隙产生的荧光。这表明石墨烯衍生物的光学性质对官能团的依赖性最小,并且由薄片内的局部环境所体现。通过对所有上述石墨烯衍生物进行HyperChem理论建模证实了这一点,该建模采用PM3半经验方法评估,结果表明所有衍生物具有相似的电子构型。这项工作可以进一步用于描述和预测类似石墨烯基结构的光学性质,并推广除GO之外的石墨烯衍生物在研究和工业中的应用。

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