首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Effects of Gas-Phase Basicity on the Proton Transfer between Organic Bases and Trifluoroacetic Acid and Gas Phase: Energetics of Charge Solvation and Salt Bridges
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Effects of Gas-Phase Basicity on the Proton Transfer between Organic Bases and Trifluoroacetic Acid and Gas Phase: Energetics of Charge Solvation and Salt Bridges

机译:气相碱度对有机碱与三氟乙酸和气相之间质子转移的影响:电荷溶剂化和盐桥的能量

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摘要

The unimolecular dissociation pathways and kinetics of a series of protonated trimer ions consisting of two organic bases and trifluoroacetic acid were investigated using blackbody infrared radiative dissociation. Five bases with gas-phase basicities (GB) ranging from 238.4 to 246.2 kcal/mol were used. Both the dissociation pathways and the threshold dissociation energies depend on the GB of the base. Trimers consisting of the two least basic molecules to form protonated base monomers with an E_0 ~1.4 eV. Trimers consisting of the two most basic molecules dissociate to form protonated base dimers with an E_0 ~1.1-1.2 eV. These results indicate that the structures of the trimers change as a function of the GB of the basic molecule. THe predominant structure of the protonated trimers consisting of the two most basic molecules is consistent with a salt bridge in which both of the basic molecules are protonated, and the trifluoroacetic acid molecule is deprotonated, whereas the predominant structure of the protonated trimer consisting of the two least basic molecules are consistent with charge-solvated complexes in which the proton is shared. THe structure of the trimer consisting of the base of intermediate basicity is less clear; it dissociates to form primarily protonated base dimer, but has an E_0 ~1.2 eV. These results are consistent with the structure of this trimer as a salt bridge, but the resulting dissociation A~-·BH~+ product does not appear to be stable as an ion pair in the dissociative transition state.
机译:利用黑体红外辐射解离研究了由两个有机碱和三氟乙酸组成的一系列质子化三聚离子的单分子解离途径和动力学。使用了气相碱度(GB)为238.4至246.2 kcal / mol的5种碱。离解途径和阈值解离能均取决于碱基的GB。由两个最小碱性分子组成的三聚体,形成具有E_0〜1.4 eV的质子化基础单体。由两个最基本分子组成的三聚体解离形成具有E_0〜1.1-1.2 eV的质子化碱基二聚体。这些结果表明,三聚体的结构根据碱性分子的GB而变化。由两个最基本的分子组成的质子化三聚体的主要结构与盐桥一致,其中两个碱性分子都被质子化,三氟乙酸分子被去质子化,而质子化的三聚体的主要结构由两个分子组成至少碱性分子与质子共享的电荷溶剂化复合物是一致的。由中等碱度组成的三聚体的结构不太清楚。它解离形成主要的质子化碱基二聚体,但具有E_0〜1.2 eV。这些结果与该三聚体作为盐桥的结构一致,但是所得的离解A〜-·BH〜+产物在离解过渡态下作为离子对似乎不稳定。

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