Kumar Pawan, Dua Shweta, Kaur Ravinder, Kumar Mahesh, Bhatt Geeta
Department of Electronic Science, South Campus University of Delhi New Delhi-110021 India.
Non-Collegiate Women's Education Board, University of Delhi New Delhi-110007 India.
RSC Adv. 2022 Feb 8;12(8):4714-4759. doi: 10.1039/d1ra08452f. eCollection 2022 Feb 3.
Carbon quantum dots are a new frontier in the field of fluorescent nanomaterials, and they exhibit fascinating properties such as biocompatibility, low toxicity, eco-friendliness, good water solubility and photostability. In addition, the synthesis of these nanoparticles is facile, rapid, and satisfies green chemistry principles. CQDs have easily tunable optical properties and have found applications in bioimaging, nanomedicine, drug delivery, solar cells, light-emitting diodes, photocatalysis, electrocatalysis and other related areas. This article systematically reviews carbon quantum dot structure, their synthesis techniques, recent advancements, the effects of doping and surface engineering on their optical properties, and related photoluminescence models in detail. The challenges associated with these nanomaterials and their prospects are discussed, and special emphasis has been placed on the application of carbon quantum dots in enhancing the performance of photovoltaics and white light-emitting diodes.
碳量子点是荧光纳米材料领域的一个新前沿,它们具有诸如生物相容性、低毒性、环境友好性、良好的水溶性和光稳定性等迷人特性。此外,这些纳米颗粒的合成简便、快速,且符合绿色化学原则。碳量子点具有易于调节的光学性质,并已在生物成像、纳米医学、药物递送、太阳能电池、发光二极管、光催化、电催化及其他相关领域得到应用。本文系统地详细综述了碳量子点的结构、合成技术、最新进展、掺杂和表面工程对其光学性质的影响以及相关的光致发光模型。讨论了与这些纳米材料相关的挑战及其前景,并特别强调了碳量子点在提高光伏和白色发光二极管性能方面的应用。