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Synthesis of Core-Shell Au@TiO2@C Nanoparticles and Their Photocatalytic Properties for the Degradation of Rhodamine B Under Simulated-Solar Light

机译:在模拟 - 极光下,核2@c纳米颗粒及其光催化特性的合成及其光催化特性

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摘要

A simple method to synthesize Au@TiO2@C core-shell sandwich nanoparticles by hydrolysis and depositing carbon quantum dots(CQDs)is reported.The photocatalytic activity of the synthesized material was tested via degrading Rhodamine B(RhB)under simulated-solar light irradiation.The degradation rate was found in the following order: Au@TiO2@C > P25 > Au@TiO2 > TiO2.The superior photocatalytic of Au@TiO2@C was attributed to synergistic effect of Au and CQDs.The CQDs layer coated outside benefits in improving absorption efficiency of solar light host and separation of electron-holes pairs.The Au core can accelerate transfer process of photo excitons which can facilitate photocatalytic reaction.
机译:报道了通过水解和沉积碳量子点(CQD)合成AU@tio2@tio2@tio2@tio2@tio2@tio2@tio2@tio2@tio2@tio2@tio2@tio2@tio2 。降解率按以下顺序找到:au@tio2@c> p25> au@tio2> tio2。 在提高太阳光宿主的吸收效率和电子孔对的分离时,Au核可以加速光激元子的转移过程,从而促进光催化反应。

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