4.6 Review

Electrochemistry in Carbon-based Quantum Dots

期刊

CHEMISTRY-AN ASIAN JOURNAL
卷 15, 期 8, 页码 1214-1224

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/asia.202000097

关键词

Electrochemistry; Carbon quantum dots; Graphene quantum dots; EC sensing; Electrocatalysis; Biofuel cells; EC flexible devices

资金

  1. National Natural Science Foundation of China [21575071]
  2. Natural Science Foundation for Outstanding Young Scientists of Shandong Province [ZR2018JL011]
  3. Qingdao Science AMP
  4. Technology Planning Project [17-6-3-15-gx]
  5. Science AMP
  6. Technology Fund Planning Project of Shandong Colleges and Universities [J16LA13, J18KA112]
  7. Taishan Scholars Program of Shandong Province [tsqn201909088]

向作者/读者索取更多资源

Electrochemistry belongs to an important branch of chemistry that deals with the chemical changes produced by electricity and the production of electricity by chemical changes. Therefore, it can not only act a powerful tool for materials synthesis, but also offer an effective platform for sensing and catalysis. As extraordinary zero-dimensional materials, carbon-based quantum dots (CQDs) have been attracting tremendous attention due to their excellent properties such as good chemical stability, environmental friendliness, nontoxicity and abundant resources. Compared with the traditional methods for the preparation of CQDs, electrochemical (EC) methods offer advantages of simple instrumentation, mild reaction conditions, low cost and mass production. In return, CQDs could provide cost-effective, environmentally friendly, biocompatible, stable and easily-functionalizable probes, modifiers and catalysts for EC sensing. However, no specific review has been presented to systematically summarize both aspects until now. In this review, the EC preparation methods of CQDs are critically discussed focusing on CQDs. We further emphasize the applications of CQDs in EC sensors, electrocatalysis, biofuel cells and EC flexible devices. This review will further the experimental and theoretical understanding of the challenges and future prospective in this field, open new directions on exploring new advanced CQDs in EC to meet the high demands in diverse applications.

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