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聚吡咯/聚乙烯磺酸薄膜在乙腈中磨合现象的原位傅里叶变换红外光谱研究

In situ FTIR spectroscopy study of the break-in phenomenon observed for PPy/PVS films in acetonitrile.

作者信息

Fernandez Romero Antonio J, López Cascales José J, Otero Toribio F

机构信息

Laboratory of Electrochemistry, Intelligent Materials and Devices (CEMI), ETSII, Campus de Alfonso XIII, Universidad Politécnica de Cartagena, 30203 Cartagena, Spain.

出版信息

J Phys Chem B. 2005 Nov 10;109(44):21078-85. doi: 10.1021/jp054026u.

Abstract

The in situ Fourier transform infrared (in situ FTIR) technique was used for the first time to investigate the break-in phenomenon observed for polypyrrole/poly(vinyl sulfonate) (PPy/PVS) films in acetonitrile containing 0.1 M LiClO(4). Consecutive potential scans provided a continuous increase of the infrared band intensities, simultaneous to an increase observed in the charge involved in the voltammetric peaks, suggesting a rise in the number of the polymeric chains participating in the infrared signal at the same time as the electroactive participants increase in the redox process. Moreover, in situ FTIR spectra evidence that the new infrared-activated chains in each voltammetric cycle adopt the same polymeric structure achieved by the chains activated in the initial cycles. However, if we achieve a cathodic potential limit of -2.1 V (vs Ag/AgCl), a restructuring of the polymeric morphology is observed. In situ FTIR spectra obtained for PPy/ClO(4) films under the same conditions pointed to a steady-state behavior from the very early voltammetric scans. Moreover, the intensities of FTIR bands obtained for PPy/ClO(4) films in the early voltammetric cycles are much higher than those obtained for PPy/PVS films after several potential scans. Only when high cathodic and high anodic potential limits were used for the consecutive cycles did the FTIR band intensities from PPy/PVS become similar to those obtained from PPy/ClO(4), indicating that in both films a similar number of polymeric chains were infrared active. Polarization at a high anodic potential (+1.3 V vs Ag/AgCl) produced overoxidation of the polymer appearing characteristic 1725 cm(-1) band assigned to the formation of carbonyl groups. Furthermore, the approximately 1540 cm(-1) band shifted to higher wavenumbers, indicating that overoxidation reduced the length of conjugated chains in the polypyrrole.

摘要

首次使用原位傅里叶变换红外光谱(原位FTIR)技术研究了在含有0.1 M LiClO₄的乙腈中聚吡咯/聚(乙烯基磺酸盐)(PPy/PVS)薄膜所观察到的磨合现象。连续的电位扫描使红外波段强度持续增加,与此同时,伏安峰中涉及的电荷量也增加,这表明在氧化还原过程中电活性参与物质增加的同时,参与红外信号的聚合物链数量也在增加。此外,原位FTIR光谱证明,每个伏安循环中新的红外激活链采用与初始循环中激活的链相同的聚合物结构。然而,如果我们达到 -2.1 V(相对于Ag/AgCl)的阴极电位极限,就会观察到聚合物形态的重构。在相同条件下为PPy/ClO₄薄膜获得的原位FTIR光谱表明,从非常早期的伏安扫描开始就呈现稳态行为。此外,在早期伏安循环中为PPy/ClO₄薄膜获得的FTIR波段强度远高于在进行几次电位扫描后为PPy/PVS薄膜获得的强度。只有当连续循环使用高阴极和高阳极电位极限时,PPy/PVS的FTIR波段强度才变得与从PPy/ClO₄获得的相似,这表明在两种薄膜中具有相似数量的聚合物链具有红外活性。在高阳极电位(+1.3 V相对于Ag/AgCl)下极化会使聚合物发生过氧化,出现归属于羰基形成的特征性1725 cm⁻¹波段。此外,约1540 cm⁻¹的波段向更高波数移动,表明过氧化缩短了聚吡咯中共轭链的长度。

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