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首页> 外文期刊>Electrochimica Acta >The influence of polarization of titania nanotubes modified by a hybrid system made of a conducting polymer PEDOT and Prussian Blue redox network on the Raman spectroscopy response and photoelectrochemical properties
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The influence of polarization of titania nanotubes modified by a hybrid system made of a conducting polymer PEDOT and Prussian Blue redox network on the Raman spectroscopy response and photoelectrochemical properties

机译:用杂交系统改变的二氧化钛纳米管偏振的影响在拉曼光谱响应和光电化学性质上进行了电导聚合物佩戴物和普鲁士蓝氧化还原网络的影响

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摘要

In this work we show the impact of applied potential on network vibrations and photoelectrochemical properties of a composite material containing hydrogenated titania nanotubes and poly (3,4-ethylenedioxythiophene) with iron hexacyanoferrate (H-TiO2/pEDOT: Fehcf) acting as a redox centre. For this purpose, Raman spectroscopy measurements under the working electrode (WE) polarization were carried out, allowing investigation of changes in the structure of the obtained heterojunction. The photoelectrochemical behaviour of the H-TiO2/pEDOT: Fehcf composite was also studied at different potentials of WE. Both, in-situ Raman spectroelectrochemical and transient photocurrent measurements were performed in aqueous 0.1MK(2)SO(4) electrolyte. The reduction and oxidation of the electrode material enabled control of the organic matrix doping level and in consequence processes occurring at the electrode/electrolyte interface. The intensity of bands typical for the organic part of the junction strongly depends on the applied potential: the highest intensity of Raman bands characteristic for the pEDOT chain was observed in the cathodic potential range, whereas under anodic polarization pEDOT signals diminish. On the contrary, the intensity and the positions of anatase active modes remain almost unchanged independently of the applied potential. Furthermore, the effect of various polarization conditions within the anodic and cathodic potential ranges on the photocurrents was also observed. The maximum value of the photocurrent is reached at +0.8 V vs. Ag/AgCl/0.1M KCl and equals 290 mA/cm(2). (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们显示在含有氢化二氧化钛纳米管和聚(3,4-亚乙二氧基)铁六氰基铁酸盐(H-的TiO 2 / PEDOT:Fehcf)网络的振动和复合材料的光电化学性质施加电势的影响充当氧化还原中心。为了这个目的,拉曼光谱工作电极(WE)极化下测量进行时,允许在所获得的异质结结构的变化进行调查。该H-的TiO 2 / PEDOT的光电化学行为:Fehcf复合也进行了研究,在WE的不同的电位。既,原位拉曼光谱电化学和在水性0.1MK(2)SO(4)电解液中进行短暂的光电流测量。电极材料的还原和氧化使有机基质掺杂水平的并在电极/电解质界面处发生的结果的过程控制。频带典型结的有机部分的强度强烈地取决于所施加的电位:在阴极电位范围内观察到的拉曼谱带的PEDOT链特性的强度最高,而下阳极极化PEDOT信号减弱。相反,强度和锐钛矿型的活动模式的位置基本保持不变的独立施加电位。此外,还观察到对光电流的阳极和阴极电势的范围内的各种极化条件的影响。在0.8 V,相对于银/氯化银/ 0.1M KCl的到达光电流的最大值和等于290毫安/厘米(2)。 (c)2018年elestvier有限公司保留所有权利。

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