Gaurav Ashish, Jain Amrita, Tripathi Santosh Kumar
Graduate Institute of Photonics and Optoelectronics, National Taiwan University, Taipei 10617, Taiwan.
Institute of Fundamental Technological Research, Polish Academy of Sciences, Pawińskiego 5B, 02-106 Warsaw, Poland.
Materials (Basel). 2022 Nov 8;15(22):7888. doi: 10.3390/ma15227888.
Carbon/graphene quantum dots are 0D fluorescent carbon materials with sizes ranging from 2 nm to around 50 nm, with some attractive properties and diverse applications. Different synthesis routes, bandgap variation, higher stability, low toxicity with tunable emission, and the variation of physical and chemical properties with change in size have drawn immense attention to its potential application in different optoelectronics-based materials, especially advanced light-emitting diodes and energy storage devices. WLEDs are a strong candidate for the future of solid-state lighting due to their higher luminance and luminous efficiency. High-performance batteries play an important part in terms of energy saving and storage. In this review article, the authors provide a comparative analysis of recent and ongoing advances in synthesis (top-down and bottom-up), properties, and wide applications in different kinds of next-generation light-emitting diodes such as WLEDs, and energy storage devices such as batteries (Li-B, Na-B) and supercapacitors. Furthermore, they discuss the potential applications and progress of carbon dots in battery applications such as electrode materials. The authors also summarise the developmental stages and challenges in the existing field, the state-of-the-art of carbon/graphene quantum dots, and the potential and possible solutions for the same.
碳/石墨烯量子点是尺寸范围从2纳米到约50纳米的零维荧光碳材料,具有一些吸引人的特性和多样的应用。不同的合成路线、带隙变化、更高的稳定性、具有可调发射的低毒性以及随着尺寸变化的物理和化学性质变化,使其在不同的基于光电子学的材料,特别是先进发光二极管和储能器件中的潜在应用备受关注。由于其更高的亮度和发光效率,白光发光二极管是固态照明未来的有力候选者。高性能电池在节能和储能方面发挥着重要作用。在这篇综述文章中,作者对合成(自上而下和自下而上)、性质以及在不同类型的下一代发光二极管如白光发光二极管和储能器件如电池(锂-硼、钠-硼)和超级电容器等方面的广泛应用的最新进展和正在进行的进展进行了比较分析。此外,他们还讨论了碳点在电池应用如电极材料方面的潜在应用和进展。作者还总结了现有领域的发展阶段和挑战、碳/石墨烯量子点的最新技术水平以及针对此的潜力和可能的解决方案。