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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Experimental Determination of Activation Energies for Gas-Phase Ethyl and n-Propyl Cation Transfer Reactions
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Experimental Determination of Activation Energies for Gas-Phase Ethyl and n-Propyl Cation Transfer Reactions

机译:气相乙基和正丙基阳离子转移反应活化能的实验确定

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Alkyl cation transfer reactions between ethanol and protonated ethanol and ethanol and protonated propionitrile, as well as between n-propanol and protonated n-propanol have been investigated experimentally by low-pressure Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometry. The two ethyl cation transfer reactions were found to be the dominant reaction channels with association being only a minor reaction pathway. The n-propyl cation transfer reaction was found to compete with the association pathway resulting in an approximately 50:50 mixture of protonated di-n-propyl ether and the proton-bound dimer of n-propanol, depending on temperature and pressure. The enthalpies of activation were determined to be -16.1 ± 0.8, -17.5 ± 0.8, and -15.7 ± 0.9 kJ mol~(-1) for the ethanol/protonated ethanol, ethanol/protonated propionitrile, and n-propanol/protonated n-propanol alkyl cation transfer reactions, respectively. The entropies of activation were found to be essentially the same, -121 ± 28 J K~(-1) mol~(-1), for all three reactions. All entropies of activation were found to be essentially the same, -121 ± 28 J K~(-1) mol~(-1), for all three reactions. All experimentally determined thermochemical properties agreed very well with those calculated at the MP2/6-31+G(d)//B3LYP/6-31+G~* level of theory. Furthermore, the enthalpies and entropies of activation for the methy, ethyl, and n-propyl cation transfer reactions between the neutral alcohols and the respective protonated alcohols were found to be the same within experimental uncertainty.
机译:通过低压傅里叶变换离子回旋共振(FT-ICR)质谱研究了乙醇与质子化乙醇,乙醇与质子化丙腈之间以及正丙醇与质子化正丙醇之间的烷基阳离子转移反应。发现两个乙基阳离子转移反应是主要的反应通道,缔合仅是次要的反应途径。发现正丙基阳离子转移反应与缔合途径竞争,这取决于温度和压力,导致质子化的二正丙基醚和质子结合的正丙醇二聚体的比例约为50:50。对于乙醇/质子化乙醇,乙醇/质子化丙腈和正丙醇/质子化正丙醇,活化焓确定为-16.1±0.8,-17.5±0.8和-15.7±0.9 kJ mol〜(-1)。丙醇烷基阳离子转移反应分别。发现所有三个反应的活化熵基本相同,为-121±28 J K〜(-1)mol〜(-1)。发现所有三个反应的所有活化熵基本相同,-121±28 J K〜(-1)mol〜(-1)。所有实验确定的热化学性质都与理论上的MP2 / 6-31 + G(d)// B3LYP / 6-31 + G〜*计算的性质非常吻合。此外,发现在实验不确定性范围内,中性醇与相应质子化醇之间的甲基,乙基和正丙基阳离子转移反应的活化焓和熵是相同的。

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