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Cu-N Dopants Boost Electron Transfer and Photooxidation Reactions of Carbon Dots

机译:Cu-N掺杂剂促进碳点的电子转移和光氧化反应

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摘要

The broadband light-absorption ability of carbon dots (CDs) has inspired their application in photocatalysis, however this has been impeded by poor electron transfer inside the CDs. Herein, we report the preparation of Cu-N-doped CDs (Cu-CDs) and investigate both the doping-promoted electron transfer and the performance of the CDs in photooxidation reactions. The Cu-N doping was achieved through a one-step pyrolytic synthesis of CDs with Na-2[Cu(EDTA)] as precursor. As confirmed by ESR, FTIR, and X-ray photoelectron spectroscopies, the Cuspecies chelates with the carbon matrix through Cu-N complexes. As a result of the Cu-N doping, the electron-accepting and -donating abilities were enhanced 2.5 and 1.5times, and the electric conductivity was also increased to 171.8scm(-1). As a result of these enhanced properties, the photocatalytic efficiency of CDs in the photooxidation reaction of 1,4-dihydro-2,6-dimethylpyridine-3,5-dicarboxylate is improved 3.5-fold after CD doping.
机译:碳点(CD)的宽带光吸收能力激发了它们在光催化中的应用,但是,由于CD内不良的电子转移,阻碍了这一点。在本文中,我们报告了制备Cu-N掺杂的CD(Cu-CD)的过程,并研究了掺杂促进的电子转移和CD在光氧化反应中的性能。 Cu-N掺杂是通过以Na-2 [Cu(EDTA)]为前体的CD一步热解合成而实现的。正如ESR,FTIR和X射线光电子能谱所证实的那样,Cu物种通过Cu-N络合物与碳基质螯合。 Cu-N掺杂的结果是,电子接受能力和供体能力分别提高了2.5倍和1.5倍,电导率也提高到171.8scm(-1)。由于这些增强的性能,在CD掺杂后,CD在1,4-二氢-2,6-二甲基吡啶-3,5-二羧酸酯的光氧化反应中的光催化效率提高了3.5倍。

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