首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >Characterization of the products of aniline peroxydisulfate oligo/polymerization in media with different pH by resonance Raman spectroscopy at 413.1 and 1064 nm excitation wavelengths
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Characterization of the products of aniline peroxydisulfate oligo/polymerization in media with different pH by resonance Raman spectroscopy at 413.1 and 1064 nm excitation wavelengths

机译:在413.1和1064 nm激发波长下通过共振拉曼光谱表征具有不同pH的介质中苯胺过氧二硫酸盐低聚/聚合产物的特性

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The pH-structure correlation of the products of aniline peroxydisulfate reaction was mainly investigated by resonance Raman spectroscopy. The reactions of aniline and ammonium peroxydisulfate were carried out in aqueous solutions of initial pH ranging from 4.9 to 13.2 and monomer/oxidant molar ratio of 4/1. For an initial pH of 4.9, the spectroscopic techniques showed that the emeraldine salt form of polyaniline (PANI-ES) is the main product, corroborating that the usual head-to-tail coupling mechanism is taking place. The resonance Raman spectra at 1064 nm exciting wavelength were useful to detect the emeraldine salt as a minor product for reactions at an initial pH of 5.3-11.5. The Raman spectra of the main product of the reaction at initial pH of 13.2 excited at 1064 and 413.1 nm showed new spectral features consistent with 1,4-Michael-type adducts of aniline monomers and 1,4-benzoquinone-monoimine unit. These compounds and their products of hydrolysis/oxidation are the predominant species for the reaction media of initial pH from 5.3 to 13.2. In order to get PANI with different nanoscale morphologies, a pH value of more than 0 or 1 was used in the aniline polymerization. The spectroscopic data obtained in this work reveal that head-to-tail coupling does not occur when aniline reacts at media pH higher than about 5. It is suggested that chemical structures of the products of aniline oxidation by an unusual mechanism are the driving force for the development of assorted morphologies.
机译:苯胺过二硫酸盐反应产物的pH-结构相关性主要通过共振拉曼光谱研究。苯胺和过氧二硫酸铵的反应是在初始pH值为4.9-13.2,单体/氧化剂摩尔比为4/1的水溶液中进行的。对于初始pH值为4.9,光谱技术表明聚苯胺的翡翠盐形式(PANI-ES)是主要产物,这证实了通常的头对尾偶联机理正在发生。在1064 nm激发波长处的共振拉曼光谱可用于检测作为次要产物的翡翠盐,其初始pH为5.3-11.5。在1064和413.1 nm激发的初始pH为13.2时反应主要产物的拉曼光谱显示出新的光谱特征,与苯胺单体和1,4-苯醌-单亚胺单元的1,4-Michael型加合物一致。这些化合物及其水解/氧化产物是初始pH从5.3至13.2的反应介质的主要种类。为了得到具有不同纳米级形态的PANI,在苯胺聚合中使用大于0或1的pH值。在这项工作中获得的光谱数据表明,当苯胺在高于约5的介质pH下反应时,不会发生头尾耦合。这表明苯胺氧化产物的化学结构是由异常机理驱动的。各种形态的发展。

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