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首页> 外文期刊>Applied Surface Science >Improving the intrinsic properties of rGO sheets by S-doping and the effects of rGO improvements on the photocatalytic performance of Cu_3Se_2/rGO nanocomposites
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Improving the intrinsic properties of rGO sheets by S-doping and the effects of rGO improvements on the photocatalytic performance of Cu_3Se_2/rGO nanocomposites

机译:通过S掺杂改善rGO片的固有特性以及rGO的改善对Cu_3Se_2 / rGO纳米复合材料光催化性能的影响

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The effects of S-doping on intrinsic properties of graphene oxide (GO) sheets such as interlayer spacing, reduction level, and electrical resistance and the influence of these properties on the photocatalytic performance of rGO/Cu3Se2 nanocomposites were investigated. A simple chemical method was used to synthesize S-doped GO sheets and a cost-effective co-precipitation method was used to decorate of the NPs on S-doped GO (as S-doped GO/NPs nanocomposites) and undoped GO (as undoped GO/NPs nanocomposites) sheets. X-ray diffraction (XRD) patterns of the products indicated that GO sheets were changed into reduced GO (rGO) sheets during the synthesis process. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) images showed more exfoliation for the S-doped rGO sheets in comparison to the undoped rGO. X-ray photoelectron spectroscopy (XPS) indicated that S-doping caused an improve reduction level of rGO. UV-vis results revealed that S-doped rGO/NPs nanocomposites had a band-gap value around 2.2 eV that was bigger than the band-gap value of the undoped rGO/NPs that was around 1.9 eV. Room temperature photoluminescence (PL) results indicated that, the electron-hole recombination rate of S-doped rGO/NPs nanocomposites was lower than the undoped rGO/NPs nanocomposites. The photocatalytic activity under visible light irradiation for degradation of methylene blue (MB) dye showed a significant enhancement photocatalytic performance for S-doped rGO/NPs nanocomposites in comparison to the photocatalytic activity of the undoped rGO/NPs nanocomposites. Brunauer-Emmett-Teller (BET) calculation indicated a specific surface area of 251.6 and 220.7 m(2) g(-1) for the S-doped and undoped rGO/NPs nanocomposites, respectively. In addition, photoresponse measurements under visible light source irradiation indicated that, the electrical conductivity of rGO as an intrinsic property of the rGO sheets was increased by S-doping. Finally, according to valence band (VB) edge spectroscopy results of the samples, it was understood that a type-II heterostructure was formed by S-doped rGO/NPs with pristine NPs that was another important factor for the enhancement photocatalytic performance of this sample.
机译:研究了S掺杂对氧化石墨烯(GO)片的固有性质(如层间距,还原度和电阻)的影响,以及这些性质对rGO / Cu3Se2纳米复合材料光催化性能的影响。一种简单的化学方法用于合成S掺杂的GO片材,一种经济有效的共沉淀方法用于装饰S掺杂的GO(作为S掺杂的GO / NPs纳米复合材料)和未掺杂的GO(作为未掺杂的)上的NP。 GO / NPs纳米复合材料)片材。产物的X射线衍射(XRD)图谱表明,在合成过程中,GO片变成了还原的GO(rGO)片。扫描电子显微镜(SEM)和透射电子显微镜(TEM)图像显示,与未掺杂的rGO相比,掺S的rGO片的剥离更多。 X射线光电子能谱(XPS)表明,S掺杂引起rGO还原水平的提高。紫外可见结果表明,掺S的rGO / NPs纳米复合材料的带隙值约为2.2 eV,大于未掺杂的rGO / NPs的带隙值约为1.9 eV。室温光致发光(PL)结果表明,S掺杂rGO / NPs纳米复合材料的电子-空穴复合率低于未掺杂rGO / NPs纳米复合材料。与未掺杂的rGO / NPs纳米复合材料的光催化活性相比,可见光辐射下的亚甲基蓝(MB)染料的降解具有明显的光催化性能。 Brunauer-Emmett-Teller(BET)计算表明,S掺杂和未掺杂的rGO / NPs纳米复合材料的比表面积分别为251.6和220.7 m(2)g(-1)。另外,在可见光源照射下的光响应测量表明,rGO的电导率作为rGO片的固有特性通过S掺杂而增加。最后,根据样品的价带(VB)边缘光谱分析结果,可以理解,S掺杂的rGO / NP与原始的NP形成了II型异质结构,这是增强该样品光催化性能的另一个重要因素。 。

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