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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Gas sensing and electrochemical properties of tetra and octa 2H-chromen-2-one substituted iron(II) phthalocyanines
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Gas sensing and electrochemical properties of tetra and octa 2H-chromen-2-one substituted iron(II) phthalocyanines

机译:四氢和八氢2H-铬-2--2-取代酞菁铁的气体传感和电化学性质

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The synthesis of novel alpha tetra, beta tetra and beta octa 4-(4-methoxyphenyl)-8-methyl-coumarin-7-oxy, and beta octa 4-chloro-5-(4-(4-methoxyphenyl)-8-methylcoumarin-7-oxy) substituted iron(II) phthalocyanines has been achieved by the reaction of the corresponding phthalonitriles with iron(II) acetate. The compounds were characterized by elemental analysis, FT-IR, UV-vis, and MALDI-TOF mass spectrometry. The reduction and oxidation properties of the compounds were identified by voltammetric and in situ spectroelectrochemical measurements. The gas sensing behavior of the spin coated films of the differently substituted iron(II) complexes towards CO2, CO and SO2 was investigated at various temperatures between 300 K and 500 K. While exposure to SO2 had no considerable influence on the sensor current, the presence of CO and CO2 gases led to a large increase in sensor currents. The effect of relative humidity on the CO and CO2 sensing capability of the spin coated films was also studied. The results showed that the presence of water vapor, acting as an interference gas, causes a decrease in the CO2 sensitivity, but an increase in the CO sensitivity of the sensors. The experimental adsorption data were analyzed using the Elovich kinetic model. Linear regression analysis results show that the Elovich equation provides the best correlation for the CO2 and CO adsorption processes under humid conditions. However, the experimental data deviated considerably from the theoretical model under a dry atmosphere.
机译:新型α四,β四和β辛基4-(4-甲氧基苯基)-8-甲基-香豆素-7-氧基和β辛基4-氯-5-(4-(4-甲氧基苯基)-8-的合成通过相应的邻苯二甲腈与乙酸铁(II)的反应已获得了甲基香豆素-7-氧基)取代的铁(II)酞菁。通过元素分析,FT-IR,UV-vis和MALDI-TOF质谱对化合物进行表征。通过伏安法和原位光谱电化学测量鉴定化合物的还原和氧化性质。研究了在300 K和500 K之间的各种温度下,不同取代的铁(II)配合物的旋涂膜对CO2,CO和SO2的气敏特性。虽然暴露于SO2对传感器电流没有显着影响,但是CO和CO2气体的存在导致传感器电流大大增加。还研究了相对湿度对旋涂膜对CO和CO2感测能力的影响。结果表明,作为干扰气体的水蒸气的存在会导致CO2灵敏度降低,但传感器的CO灵敏度提高。使用Elovich动力学模型分析了实验吸附数据。线性回归分析结果表明,Elovich方程为潮湿条件下的CO2和CO吸附过程提供了最佳的相关性。但是,在干燥气氛下,实验数据与理论模型有很大差异。

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