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2,5-双(氯甲基)噻吩和间-二氯甲基苯的缩聚反应
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作者 周菊兴 吴万伟 +1 位作者 L.Giuffré E.Tempesti 《北京师范大学学报(自然科学版)》 CAS 1986年第4期72-76,共5页
采用合成聚苯硫醚的方法,研究了2,5-双(氯甲基)噻吩(DCMT)、间-二氯甲基苯(DCMB)和硫化物的共聚反应,对聚合物做了红外光谱分析测定,计算并分析了含硫量与DCMT和DCMB的摩尔组成的关系以及成膜性能试验.
关键词 氯甲基 甲基苯 红外光谱分析 成膜性能 聚苯硫醚 合成膜 共聚合反应 摩尔数 低聚物 均聚物
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Crossed Molecular Beams and Theoretical Studies of the O(~3P)+1,2-Butadiene Reaction:Dominant Formation of Propene+CO and Ethylidene+Ketene Molecular Channels
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作者 Adriana Caracciolo Gianmarco Vanuzzo +4 位作者 Nadia Balucani Domenico Stranges Silvia Tanteri Carlo Cavallotti Piergiorgio Casavecchia 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第1期113-122,I0002,共11页
Detailed understanding of the mechanism of the combustion relevant multichannel reactions of O(3P) with unsaturated hydrocarbons (UHs) requires the identification of all primary reaction products, the determination of... Detailed understanding of the mechanism of the combustion relevant multichannel reactions of O(3P) with unsaturated hydrocarbons (UHs) requires the identification of all primary reaction products, the determination of their branching ratios and assessment of intersystem crossing (ISC) between triplet and singlet potential energy surfaces (PESs). This can be best achieved combining crossed-molecular-beam (CMB) experiments with universal, soft ionization, mass-spectrometric detection and time-of-flight analysis to high-level ab initio electronic structure calculations of triplet/singlet PESs and RRKM/Master Equation computations of branching ratios (BRs) including ISC. This approach has been recently demonstrated to be successful for O(3P) reactions with the simplest UHs (alkynes, alkenes, dienes) containing two or three carbon atoms. Here, we extend the combined CMB/theoretical approach to the next member in the diene series containing four C atoms, namely 1,2-butadiene (methylallene) to explore how product distributions, branching ratios and ISC vary with increasing molecular complexity going from O(3P))+propadiene to O(3P)+1,2-butadiene. In particular, we focus on the most important, dominant molecular channels, those forming propene+CO (with branching ratio ∽0.5) and ethylidene+ketene (with branching ratio ∽0.15), that lead to chain termination, to be contrasted to radical forming channels (branching ratio ∽0.35) which lead to chain propagation in combustion systems. 展开更多
关键词 Reactive scattering Crossed molecular beams O(3P) reaction dynamics O(3P)+diene reactions Soft electron ionization Intersystem crossing Ab initio quantum chemistry
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