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UNIMOLECULAR REACTION KINETICS IN THE HIGH-PRESSURE LIMIT WITHOUT COLLISIONS

机译:高压极限下无碰撞的单分子反应动力学

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摘要

Molecular activation by blackbody photons, first postulated in 1919 by Perrin, plays a dominant role in the unimolecular dissociation of large ions trapped at low pressure in a Fourier-transform mass spectrometer. Under readily achievable experimental conditions, molecular ions of the protein ubiquitin equilibrate with the blackbody radiation field inside the vacuum chamber. The internal energy of a population of these ions is given by a Boltzmann distribution. From the temperature dependence of unimolecular dissociation rate constants measured in the zero-pressure limit, Arrhenius activation parameters equal to those in the high-pressure limit are obtained.
机译:黑体光子的分子活化作用(最初由Perrin于1919年提出)在傅立叶变换质谱仪中低压捕获的大离子的单分子解离中起主要作用。在容易达到的实验条件下,蛋白质泛素的分子离子与真空室内的黑体辐射场平衡。这些离子的内部能量由玻尔兹曼分布给出。从在零压力极限中测得的单分子解离速率常数的温度依赖性,获得与高压极限中的那些相等的阿伦尼乌斯活化参数。

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