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首页> 外文期刊>Mass Spectrometry Reviews >GAS-PHASE BASICITIES OF POLYFUNCTIONAL MOLECULES. PART 1: THEORY AND METHODS
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GAS-PHASE BASICITIES OF POLYFUNCTIONAL MOLECULES. PART 1: THEORY AND METHODS

机译:多功能分子的气相基础。第1部分:理论与方法

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摘要

The experimental and theoretical methods of determination of gas-phase basicities, proton affinities and protonation entropies are presented in a tutorial form. Particularities and limitations of these methods when applied to polyfunctional molecules are emphasized. Structural effects during the protonation process in the gas-phase and their consequences on the corresponding thermochemistry are reviewed and classified. The role of the nature of the basic site (protonation on non-bonded electron pairs or on n-electron systems) and of substituent effects (electrostatic and resonance) are first examined. Then, linear correlations observed between gas-phase basicities and ionization energies or substituent constants are recalled. Hydrogen bonding plays a special part in proton transfer reactions and in the protonation characteristics of polyfunctional molecules. A survey of the main properties of intermolecular and intramolecular hydrogen bonding in both neutral and protonated species is proposed. Consequences on the protonation thermochemistry, particularly of polyfunctional molecules are discussed. Finally, chemical reactions which may potentially occur inside protonated clusters during the measurement of gas-phase basicities or inside a protonated polyfunctional molecule is examined. Examples of bond dissociations with hydride or alkyl migrations, proton transport catalysis, tautomerization, cyclization, ring opening and nucleophilic substitution are presented to illustrate the potentially complex chemistry that may accompany the protonation of polyfunctional molecules.
机译:确定气相碱度,质子亲和力和质子化熵的实验和理论方法以教程形式提供。强调了这些方法应用于多官能分子时的特殊性和局限性。对气相质子化过程中的结构效应及其对相应热化学的影响进行了回顾和分类。首先检查了基本位点的性质(非键合电子对或n电子系统上的质子化)和取代基效应(静电和共振)的作用。然后,调用在气相碱度和电离能或取代基常数之间观察到的线性相关性。氢键在质子转移反应和多官能分子的质子化特性中起特殊作用。提出了调查中性和质子化物种中分子间和分子内氢键的主要性质。讨论了质子热化学的后果,特别是多官能分子的质子热化学的后果。最后,检查了在气相碱性测量期间质子化簇内部或质子化多官能分子内部可能发生的化学反应。提出了具有氢化物或烷基迁移,质子转运催化,互变异构,环化,开环和亲核取代的键解离的例子,以说明可能伴随多官能分子的质子化的潜在复杂化学。

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