School of Materials Science and Engineering, North University of China, Taiyuan, 030051, P. R. China.
Chem Rec. 2016 Feb;16(1):219-30. doi: 10.1111/tcr.201500225. Epub 2015 Dec 12.
We report recent progress in tuning optical properties and photocatalytic activities of carbon-based quantum dots (carbon-based QDs) through their surface groups. It is increasingly clear that the properties of carbon-based QDs are more dependent on their surface groups than on their size. The present challenge remains as to how to control the type, number, and conformation of the heterogeneous groups on the surface of carbon-based QDs when considering their target applications. By reviewing the related achievements, this personal account aims to help us understand the roles different surface groups play in tuning the properties of carbon-based QDs. A number of significant accomplishments have demonstrated that surface groups possess strong power in engineering electronic structure and controlling photogenerated charge behaviors of carbon-based QDs. However, effective strategies for modifying carbon-based QDs with diverse heterogeneous groups are still needed.
我们报告了通过其表面基团来调整基于碳的量子点(碳量子点)的光学性质和光催化活性的最新进展。越来越明显的是,碳量子点的性质与其表面基团的关系比其尺寸更为密切。目前的挑战仍然是,当考虑到碳量子点的目标应用时,如何控制其表面基团的类型、数量和构象的多样性。通过回顾相关成果,本个人述评旨在帮助我们理解不同表面基团在调整碳量子点性质方面的作用。许多重要的研究成果已经表明,表面基团在工程化电子结构和控制碳量子点光生电荷行为方面具有强大的能力。然而,仍然需要有效的策略来用各种异质基团来修饰碳量子点。