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Systematic Analysis of Poly(o-aminophenol) Humidity Sensors

机译:聚( o -氨基苯酚)湿度传感器的系统分析

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A thin film of poly(o -aminophenol), POAP, has been used as a sensor for various types of toxic and nontoxic gases: a gateway between the digital and physical worlds. We have carried out a systematic mechanistic investigation of POAP as a humidity sensor; how does it sense different gases? POAP has several convenient features such as flexibility, transparency, and suitability for large-scale manufacturing. With an appropriate theoretical method, molecular oligomers of POAP, NH and O functional groups and the perpendicular side of the polymeric body, are considered as attacking sites for humidity sensing. It is found that the NH position of the polymer acts as an electrophilic center: able to accept electronic cloud density and energetically more favorable compared to the O site. The O site acts as a nucleophilic center and donates electronic cloud density toward H_(2)Ovap. In conclusion, only these two sites are involved in the sensing process which leads to strong intermolecular hydrogen bonding, having a 1.96 ? bond distance and ΔE ~ ?35 kcal mol~(–1). The results suggest that the sensitivity of the sensor improved with the oxidization state of POAP.
机译:聚(邻氨基苯酚)薄膜POAP已被用作各种有毒和无毒气体的传感器:数字世界和物理世界之间的门户。我们已经对POAP作为湿度传感器进行了系统的机械研究。如何感觉到不同的气体? POAP具有一些便利的功能,例如灵活性,透明性和对大规模生产的适用性。通过适当的理论方法,可以将POAP,NH和O官能团的分子低聚物以及聚合物本体的垂直侧面视为湿度传感的进攻部位。发现聚合物的NH位置充当亲电中心:与O位点相比,能够接受电子云密度并且在能量上更有利。 O位点充当亲核中心,并向H_(2)Ovap贡献电子云密度。总之,只有这两个位点参与了感测过程,从而导致强大的分子间氢键,其1.96?键距和ΔE〜?35 kcal mol〜(-1)。结果表明,传感器的灵敏度随POAP的氧化态而提高。

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