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Enhanced photocatalytic performance of ZnO/rGO composite materials prepared via an improved two-steps method

机译:改进的两步法制备的ZnO / rGO复合材料的光催化性能增强

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摘要

A series of ZnO/rGO composite materials were successfully prepared by an improved two-steps method. During the two-steps process, Zn2+ ions were firstly adsorbed and in-situ converted to Zn(OH)(2) on GO sheets by the slow hydrolysis and then heat-converted to ZnO. At the same time, GO was partially reduced to rGO and further exfoliated and unfolded. Thus a real composite material ZnO/rGO was obtained. The photocatalytic performance of the as-prepared composite materials was higher than single ZnO and GO. The improved photocatalytic property of ZnO/rGO was mainly ascribed to the enhanced adsorption of MO, closely contact of ZnO and rGO, the quick electron transfer from excited ZnO particles to rGO sheets, the activation of MOad-rGO molecules via pi-pi interaction between MO and rGO to produce the activated species MOad-*-rGO, short diffusion length of the species MOad-* from rGO to ZnO particles, and strong oxidation power of ZnO-h(+). (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:采用改进的两步法成功制备了一系列ZnO / rGO复合材料。在两步过程中,首先通过缓慢水解将Zn2 +离子吸附并在GO板上原位转化为Zn(OH)(2),然后将其热转化为ZnO。同时,GO被部分还原为rGO,并进一步剥落并展开。因此获得了真正的复合材料ZnO / rGO。所制备的复合材料的光催化性能高于单一的ZnO和GO。 ZnO / rGO的光催化性能提高主要归因于MO的增强吸附,ZnO和rGO的紧密接触,电子从激发的ZnO颗粒快速转移到rGO片,MOad-rGO分子通过pi-pi相互作用活化MO和rGO产生活化物种MOad-*-rGO,物种MOad- *从rGO到ZnO颗粒的扩散长度短,并且ZnO-h(+)的氧化能力强。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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