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首页> 外文期刊>Journal of molecular modeling >Chemical sensors based on N-substituted polyaniline derivatives: reactivity and adsorption studies via electronic structure calculations
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Chemical sensors based on N-substituted polyaniline derivatives: reactivity and adsorption studies via electronic structure calculations

机译:基于N-取代聚苯胺衍生物的化学传感器:通过电子结构计算的反应性和吸附研究

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摘要

Conjugated organic polymers represent an important class of materials for varied technological applications including in active layers of chemical sensors. In this context, polyaniline (PANI) derivatives are promising candidates, mainly due to their high chemical stability, good processability, versatility of synthesis, polymerization, and doping, as well as relative low cost. In this study, electronic structure calculations were carried out for varied N-substituted PANI derivatives in order to investigate the potential sensory properties of these materials. The opto-electronic properties of nine distinct compounds were evaluated and discussed in terms of the employed substituents. Preliminary reactivity studies were performed in order to identify adsorption centers on the oligomer structures via condensed-to-atoms Fukui indexes (CAFI). Finally, adsorption studies were carried out for selected derivatives considering five distinct gaseous analytes. The influence of the analytes on the oligomer properties were investigated via the evaluation of average binding energies and changes on the structural features, optical absorption spectra, frontier orbitals distribution, and total density of states in relation to the isolated oligomers. The obtained results indicate the derivatives PANI-NO2 and PANI-C6H5 as promising materials for the development of improved chemical sensors.
机译:共轭有机聚合物代表了各种重要的材料,用于各种技术应用,包括在化学传感器的有源层中。在这种情况下,聚苯胺(PANI)衍生物是有前途的候选者,主要是由于它们的化学稳定性高,加工性好,合成,聚合和掺杂的多功能性,以及相对低成本。在该研究中,对不同的N-取代的PANI衍生物进行电子结构计算,以研究这些材料的潜在感官特性。评价九种不同化合物的光电性质,并根据所用的取代基进行讨论。进行初步反应性研究,以通过浓缩至原子福井指数(CAFI)鉴定低聚物结构上的吸附中心。最后,考虑五种不同的气态分析物的选定衍生物进行吸附研究。通过评估平均结合能量和结构特征,光学吸收光谱,前沿轨道分布的改变,研究了分析物对低聚物性质的影响,以及与分离的低聚物相关的状态的总密度。所得结果表明衍生物PANI-NO2和PANI-C6H5作为改进化学传感器的开发材料。

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