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Substituent Effect on Porphyrin Film-Gas Interaction by Optical Waveguide: Spectrum Analysis and Molecular Dynamic Simulation

机译:光波导卟啉薄膜 - 气体相互作用的取代基:光谱分析与分子动态模拟

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摘要

Substituent effect on optical gas sensing performance in porphyrin-based optical waveguide detection system was studied by molecular dynamics simulation (MDS), absorption/emission spectrum analysis, and optical waveguide (OWG) detection. The affinities of porphyrin with seven types of substituents (–H, –OH, –tBu, –COOH, –NH2, –OCH3, –SO3−) on para position of meso-phenyl porphyrin toward gas molecules in adsorption process were studied in different size of boxes with the same pressure and concentration. Analyte gases (CO2, H2S, HCl, NO2) were exposed to porphyrin film in absorption spectrophotometer, and in OWG with evanescent field excited by a guiding laser light with 670 nm wavelength. The extent of interaction between host molecule and the guest analytes was analyzed by the number of gas molecules in vicinity of 0.3 nm around substituents of porphyrin molecules. Optical waveguide results reveal that sulfonate porphyrin is mostly responsive to hydrochloride, hydrosulfide gas and nitrogen dioxide gases with strong response intensity. Molecular dynamics and spectral analysis provide objective information about the molecular state and sensing properties. Molecular rearrangements induced by gas exposure was studied by spectral analysis and surface morphology before and after gas exposure taking hydrosulfide gas as an example. Film-gas interaction mechanism was discussed in terms of each gas and substituent group characters.
机译:通过分子动力学模拟(MDS),吸收/发射光谱分析和光波导(OWG)检测研究了基于卟啉基光波导检测系统中光学气体传感性能的取代基效应。在不同的情况下,研究了在吸附过程中,卟啉与七种取代基(-H,-OH,-TBU,-COOH,-NH2,-OOH3,-O3)对吸附过程中的气体分子的氮素位置的亲和力的亲和力具有相同压力和浓度的盒子的大小。分析物气体(CO 2,H 2 S,HCl,NO 2)暴露于吸收分光光度计中的卟啉膜,以及通过具有670nm波长的引导激光激发的vang encescent场。通过在卟啉分子的取代基附近0.3nm附近的气体分子的数量分析宿主分子与来宾分析之间的相互作用程度。光波导结果显示,磺酸盐卟啉主要响应盐酸盐,氢硫化物气体和二氧化氮气体具有强的反应强度。分子动力学和光谱分析提供了有关分子状态和感测性质的客观信息。通过硫化氢气体以前和之后通过氢硫化物气体作为示例,通过光谱分析和表面形态学研究通过气体暴露引起的分子重排。就各种气体和取代基组织而讨论了薄膜气相相互作用机理。

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