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Recent Advances in Graphene Quantum Dots: Synthesis, Properties, and Applications
Small Methods ( IF 10.7 ) Pub Date : 2018-07-04 , DOI: 10.1002/smtd.201800050
Enamul Haque 1, 2, 3 , Jeonghun Kim 4 , Victor Malgras 5 , Kakarla Raghava Reddy 2 , Alister C. Ward 3 , Jungmok You 6 , Yoshio Bando 1, 5 , Md. Shahriar A. Hossain 7 , Yusuke Yamauchi 4, 6
Affiliation  

Here, an interesting, new 0D material is presented: graphene quantum dots. The new properties arising from quantum confinement and edge effects after converting 2D graphene into graphene quantum dots have attracted great interest in various disciplines, such as physics, biology, materials, and chemistry. Here, the recent technological advances in the field of graphene quantum dots reported in the literature on both a theoretical and an experimental basis are highlighted. Various synthesis methodologies and physical properties are discussed, along with their implementation in energy (supercapacitors, fuel cells, photovoltaic devices, light‐emitting diodes), biomedical (biosensors, drug delivery, bioimaging), and environmental applications.

中文翻译:

石墨烯量子点的最新进展:合成,性质和应用。

在这里,展示了一种有趣的新型0D材料:石墨烯量子点。将2D石墨烯转换为石墨烯量子点后,由量子限制和边缘效应引起的新特性引起了各个学科的极大兴趣,例如物理,生物学,材料和化学。在此,从理论上和实验上突出了文献中报道的石墨烯量子点领域中的最新技术进展。讨论了各种合成方法和物理特性,以及它们在能源(超级电容器,燃料电池,光伏设备,发光二极管),生物医学(生物传感器,药物输送,生物成像)和环境应用中的实现方式。
更新日期:2018-07-04
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