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碳点和石墨烯量子点中光致发光的激发依赖性和独立性:对发射机制的见解

Excitation dependence and independence of photoluminescence in carbon dots and graphene quantum dots: insights into the mechanism of emission.

作者信息

Siddique Abu Bakar, Hossain Syed Minhaz, Pramanick Ashit Kumar, Ray Mallar

机构信息

Aditya College of Engineering and Technology, Surampalem - 533437, Andhra Pradesh, India.

Department of Physics, Indian Institute of Engineering Science and Technology, Shibpur, P.O.: Botanic Garden, Howrah, 711103, West Bengal, India.

出版信息

Nanoscale. 2021 Oct 14;13(39):16662-16671. doi: 10.1039/d1nr04301c.

Abstract

Excitation-dependent, multicolor emission from different varieties of 0D carbon systems has attracted immense research attention. It is generally accepted that some variants of 0D carbon exhibit excitation dependent emission, while other variants do not. A third variant exhibits both excitation dependent as well as excitation independent emission. In this work we investigate the structure, composition, steady-state emission-excitation and photoluminescence decay dynamics of three distinctly different variants of 0D carbon - amorphous carbon dots (aCDs), graphene quantum dots (GQDs) and nitrogen-doped GQDs (NGQDs). We find that despite significant differences in the structure and composition there is a striking similarity in the excitation energy dependence of the emission characteristics of these three different dots. All of them exhibit excitation energy independent emission below some threshold wavelength (), and above this threshold the emission becomes excitation dependent. We also demonstrate that a similar trend is apparent for nearly all variants of 0D carbon reported in the literature. The threshold wavelength correlates well with the excitation wavelength for the most intense emission and the photoluminescence excitation peaks, suggesting a common origin of light emission in these carbon dots. The findings provide important clues for developing a unified general picture for understanding the light emission mechanism in 0D carbon nanostructures.

摘要

零维碳体系不同变体的激发依赖型多色发射引起了广泛的研究关注。人们普遍认为,零维碳的某些变体表现出激发依赖型发射,而其他变体则不然。第三种变体既表现出激发依赖型发射,也表现出激发非依赖型发射。在这项工作中,我们研究了零维碳的三种截然不同的变体——非晶碳点(aCDs)、石墨烯量子点(GQDs)和氮掺杂石墨烯量子点(NGQDs)的结构、组成、稳态发射-激发以及光致发光衰减动力学。我们发现,尽管这三种不同量子点的结构和组成存在显著差异,但它们发射特性的激发能量依赖性却有着惊人的相似性。在某个阈值波长()以下,它们都表现出激发能量非依赖型发射,而高于这个阈值时,发射则变为激发依赖型。我们还证明,文献中报道的几乎所有零维碳变体都有类似的趋势。阈值波长与最强发射和光致发光激发峰的激发波长密切相关,这表明这些碳点的发光有共同的起源。这些发现为构建一个统一的总体框架以理解零维碳纳米结构的发光机制提供了重要线索。

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