Sekiya Ryo, Haino Takeharu
Department of Chemistry Graduate School of Advanced Science and Engineering, Hiroshima University, 1-3-1, Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan.
Chem Asian J. 2020 Aug 3;15(15):2316-2328. doi: 10.1002/asia.202000196. Epub 2020 Jul 17.
Nanographenes (NGs), also known as graphene quantum dots, have recently been developed as nanoscale graphene fragments. These nanocarbon species can be excited with UV light and emit light from the UV-to-visible region. This photoemission has received great attraction across multiple scientific fields. NGs can be produced by cutting off carbon sources or fusing small organic molecules to grow graphitic structures. Furthermore, the organic synthesis of NGs has been intensely studied. Recently, the number of research papers on postsynthetic modification of NGs has gradually increased. Installed organic groups can tune the properties of NGs and provide new functionalities, opening the door for the development of sophisticated carbon-based functional materials. This review sheds light on recent progress in the postsynthetic modification of NGs and provides a brief summary of their production methods.
纳米石墨烯(NGs),也被称为石墨烯量子点,是近年来发展起来的纳米级石墨烯片段。这些纳米碳物种可以被紫外光激发,并发出从紫外到可见光区域的光。这种光发射在多个科学领域引起了极大的关注。纳米石墨烯可以通过切断碳源或融合小分子来生长石墨结构而产生。此外,人们对纳米石墨烯的有机合成进行了深入研究。最近,关于纳米石墨烯合成后修饰的研究论文数量逐渐增加。引入的有机基团可以调节纳米石墨烯的性质并提供新的功能,为开发复杂的碳基功能材料打开了大门。本文综述了纳米石墨烯合成后修饰的最新进展,并简要总结了其制备方法。