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首页> 外文期刊>Inorganic Chemistry Communications >Electrochemiluminescence study of AuNPs/CdTe-QDs/SWCNTs/chitosan nanocomposite modified carbon nanofiber screen-printed electrode with [Ru(bpy)(3)](2+) /TPrA
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Electrochemiluminescence study of AuNPs/CdTe-QDs/SWCNTs/chitosan nanocomposite modified carbon nanofiber screen-printed electrode with [Ru(bpy)(3)](2+) /TPrA

机译:用[Ru(BPY)(3)](2+)/ TPRA的AUNPS / CDTE-QDS / SWCNT /壳聚糖纳米复合材料改性碳纳米纤维丝网印刷电极的电化学荧光研究

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摘要

Generation of ECL by a set of luminophore-corectant system is highly dependent on the concentration of the luminophore, coreactant; applied photomultiplier tube (PMT) voltage; materials, dimensions and the surface area of the electrode. Therefore, in this work firstly concentration of the luminophore ([Ru(bpy)(3)](2+)), coreactant (TPrA); applied voltage on PMT was optimised for the high ECL intensity with the carbon nanofiber screen-printed electrode (CNFs-SPE). Secondly, with the optimised concentration of the [Ru(bpy)(3)](2+), TPrA and optimised applied PMT voltage; ECL intensity of the bare poly(3,4-ethylenedioxythiophene) screen-printed electrode (PEDOT-SPE), carbon screen-printed electrode (C-SPE) and CNFs-SPE was compared. Study demonstrated that the ECL generated on the surface of the PEDOT-SPE, C-SPE and CNFs-SPE was 1214 (a.u.), 3779 (a.u.), and 6346 (a.u.) respectively. Thirdly, bare CNFs-SPE was modified with Chitosan, and nanocomposite of: SWCNTs/Chitosan, CdTe-QDs/Chitosan, AuNPs/Chitosan, CdTe-QDs/SWCNTs/Chitosan, AuNPs/SWCNTs/ Chitosan, CdTe-QDs/AuNPs/Chitosan, and AuNPs/CdTe-QDs/SWCNTs/Chitosan; and their ECL was compared. This study illustrated that AuNPs/CdTe-QDs/SWCNTs/Chitosan-nanocomposite modified CNFs-SPE (AuNPs/CdTe-QDs/SWCNTs/Chitosan/CNFs-SPE) displayed highest ECL (10,452 a.u.), and similar to 200% more as compare to the bare CNFS-SPE. Further, AuNPs/CdTe-QDs/SWCNTs/Chitosan/CNFs-SPE displayed similar to 200% increase in effective surface area and electronic conductivity in comparison to the bare CNFs-SPE. In the fourth and last study, ECL stability of the AuNPs/CdTe-QDs/SWCNTs/Chitosan-nanocomposite for continuous 10 cycles was studied, which showed that AuNPs/CdTe-QDs/SWCNTs/Chitosan/CNFs-SPE was highly stable with only similar to 10% decrease in ECL intensity.
机译:通过一组发光体效应系统产生ECL的产生高度依赖于发光体的浓度;施加的光电倍增管(PMT)电压;材料,尺寸和电极表面积。因此,在这项工作中,首先浓缩发光体([ru(bpy)(3)](2+)),取得(Tpra);用碳纳米河印刷电极(CNFS-SPE)优化PMT上的施加电压。其次,随着[Ru(BPY)(3)](2+),TPRA和优化的PMT电压的优化浓度;比较了裸Goly(3,4-乙二氧基噻吩)丝网印刷电极(PEDOT-SPE),碳丝网印刷电极(C-SPE)和CNFS-SPE的ECL强度。研究证明,在PEDOT-SPE,C-SPE和CNFS-SPE的表面上产生的ECL分别为1214(A.U.),3779(A.U.)和6346(A.u.)。第三,使用壳聚糖和纳米复合材料改性光秃秃的CNFS-SPE:SWCNTS / Chitosan,CDTE-QDS / Chitosan,AUNPS / Chitosan,CDTE-QDS / SWCNT /壳聚糖,AUNPS / SWCNTS / Chitosan,CDTE-QDS / AUNPS /壳聚糖,以及AUNPS / CDTE-QDS / SWCNT /壳聚糖;并比较了他们的ECL。本研究表明,AUNPS / CDTE-QDS / SWCNT /壳聚糖 - 纳米复合材料改性的CNFS-SPE(AUNPS / CDTE-QDS / SWCNTS / CNOFS-SPE)显示出最高的ECL(10,452 AU),并且与比较相似裸露的CNFS-SPE。此外,与裸CNFS-SPE相比,显示出类似于有效表面积和电子电导率的200%增加的AUNPS / CDTE-QDS / SWCNTS / CNFS-SPE。在第四节和最后一项研究中,研究了连续10个循环的AUNPS / CDTE-QDS / SWCNT / SWCNT / SWCNT /壳聚糖纳米复合材料的ECL稳定性,表明AUNPS / CDTE-QDS / SWCNT /壳聚糖/ CNFS-SPE仅具有高度稳定的类似于ECL强度的10%降低。

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