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A Mini Review on Carbon Quantum Dots: Preparation, Properties, and Electrocatalytic Application

机译:碳量子点的简要回顾:制备,性质和电催化应用。

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摘要

Luminescent carbon quantum dots (CQDs) represent a new form of nanocarbon materials which have gained widespread attention in recent years, especially in chemical sensor, bioimaging, nanomedicine, solar cells, light-emitting diode (LED), and electrocatalysis. CQDs can be prepared simply and inexpensively by multiple techniques, such as the arc-discharge method, microwave pyrolysis, hydrothermal method, and electrochemical synthesis. CQDs show excellent physical and chemical properties like high crystallization, good dispersibility, photoluminescence properties. In particular, the small size, superconductivity, and rapid electron transfer of CQDs endow the CQDs-based composite with improved electric conductivity and catalytic activity. Besides, CQDs have abundant functional groups on the surface which could facilitate the preparation of multi-component electrical active catalysts. The interactions inside these multi-component catalysts may further enhance the catalytic performance by promoting charge transfer which plays an important role in electrochemistry. Most recent researches on CQDs have focused on their fluorescence characteristics and photocatalytic properties. This review will summarize the primary advances of CQDs in the synthetic methods, excellent physical and electronic properties, and application in electrocatalysis, including oxygen reduction reaction (ORR), oxygen evolution reaction (OER), hydrogen evolution reduction (HER), and CO2 reduction reaction (CO2RR).
机译:发光碳量子点(CQD)代表了一种新型的纳米碳材料,近年来受到了广泛的关注,尤其是在化学传感器,生物成像,纳米医学,太阳能电池,发光二极管(LED)和电催化领域。 CQD可以通过多种技术简单,廉价地制备,例如电弧放电法,微波热解法,水热法和电化学合成法。 CQD具有出色的物理和化学性质,例如高结晶度,良好的分散性,光致发光性质。特别地,CQD的小尺寸,超导电性和快速的电子转移赋予基于CQDs的复合材料改善的电导率和催化活性。此外,CQD在表面上具有丰富的官能团,可以促进多组分电活性催化剂的制备。这些多组分催化剂内部的相互作用可通过促进电荷转移进一步增强催化性能,而电荷转移在电化学中起重要作用。关于CQD的最新研究集中于它们的荧光特性和光催化特性。这篇综述将概述CQD在合成方法,优异的物理和电子性能以及在电催化中的应用方面的主要进展,包括氧还原反应(ORR),氧释放反应(OER),氢释放还原(HER)和CO2还原反应(CO2RR)。

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