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Binding Energies of Protonated Betaine Complexes: A Probe of Zwitterion Structure in the Gas Phase

机译:质子化甜菜碱配合物的结合能:气相两性离子结构的探针。

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摘要

The dissociation kinetics of proton-bound dimers of betaine with molecules of comparable gas-phase basicity were investigated using blackbody infrared radiative dissociation (BIRD). Threshold dissociation energies were obtained from these data using master equation modeling. For bases that have comparable or higher gas-phase basicity, the binding energy of the protonated base·betaine complex is ~1.4 eV. For molecules that are ~2 kcal/mol or more less basic, the dissociation energy of the complexes is ~1.2 eV. The higher binding energy of the former is attributed to an ion–zwitterion structure which has a much larger ion–dipole interaction. The lower binding energy for molecules that are ~2 kcal/mol or more less basic indicates that an ion–molecule structure is more favored. Semiempirical calculations at both the AM1 and PM3 levels indicate the most stable ion–molecule structure is one in which the base interacts with the charged quaternary ammonium end of betaine. These results indicate that the measurement of binding energies of neutral molecules to biological ions could provide a useful probe for the presence of zwitterions and salt bridges in the gas phase. From the BIRD data, the gas-phase basicity of betaine obtained from the kinetic method is found to be 239.2 ± 1.0 kcal/mol. This value is in excellent agreement with the value of 239.3 kcal/mol (298 K) from ab initio calculations at the MP2/6-31+g** level. The measured value is slightly higher than those reported previously. This difference is attributed to entropy effects. The lower ion internal energy and longer time frame of BIRD experiments should provide values closer to those at standard temperature.
机译:使用黑体红外辐射解离(BIRD)研究了甜菜碱与质子结合的二聚体与气相碱性相当的分子的离解动力学。使用主方程模型从这些数据获得阈值解离能。对于具有可比或更高气相碱性的碱,质子化碱·甜菜碱配合物的结合能为〜1.4 eV。对于约2 kcal / mol或更低碱性的分子,络合物的解离能为〜1.2 eV。前者的较高结合能归因于具有更大的离子-偶极相互作用的离子-两性离子结构。碱性原子〜2 kcal / mol或更小分子的结合能较低,这表明离子分子结构更受青睐。在AM1和PM3含量上的半经验计算表明,最稳定的离子-分子结构是碱与甜菜碱的带电荷季铵盐末端相互作用的结构。这些结果表明,中性分子与生物离子结合能的测量可以为气相中两性离子和盐桥的存在提供有用的探针。从BIRD数据,发现通过动力学方法获得的甜菜碱的气相碱性为239.2±1.0kcal / mol。该值与MP2 / 6-31 + g **级别的从头算计算得出的239.3 kcal / mol(298 K)值非常吻合。测量值比以前报告的略高。这种差异归因于熵效应。 BIRD实验的较低的离子内部能量和较长的时间范围应提供接近于标准温度下的值。

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