首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Gas-phase H/D exchange reactions of polyamine complexes: (M+H)(+), (M plus alkali metal(+)), and (M+2H)(2+)
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Gas-phase H/D exchange reactions of polyamine complexes: (M+H)(+), (M plus alkali metal(+)), and (M+2H)(2+)

机译:多胺配合物的气相H / D交换反应:(M + H)(+),(M加碱金属(+))和(M + 2H)(2+)

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Gas-phase hydrogen/deuterium exchange reactions between noncovalent polyamine complexes and D2O, CH3OD, or ND3 are undertaken in a quadrupole ion tray mass spectrometer. Structural features of the protonated polyamines can be differentiated by the rates and overall extent of exchange, specifically the presence of propylene units and/or a cyclic structure noticeably decreases exchange compared to the exchange observed for acyclic polyamines with only ethylene bridges between amino groups. Significant differences are observed for singly protonated vs, doubly protonated complexes, where the doubly protonated complexes undergo more efficient exchange at a higher rate than the analogous singly protonated complexes. Molecular modeling calculations suggest that more diffuse conformations may exist for the higher charge states, thus facilitating H/D exchange. In addition, H/D exchange reactions between the alkali metal cationized complexes and ND3 are nearly quenched, compared to the significant exchange seen for singly protonated complexes. A conformational change or the loss of a low energy reaction pathway may explain the limited exchange reactions seen when a bulky cation replaces a proton in the complex. (J Am Soc Mass Spectrom 2000, 11, 711-721) (C) 2000 American Society for Mass Spectrometry. [References: 29]
机译:非共价多胺复合物与D2O,CH3OD或ND3之间的气相氢/氘交换反应在四极离子盘质谱仪中进行。质子化多胺的结构特征可以通过交换的速率和整体程度来区分,特别是与在氨基之间仅具有乙烯桥的无环多胺所观察到的交换相比,丙烯单元和/或环状结构的存在显着降低了交换。观察到单质子化与双质子化的配合物之间存在显着差异,其中双质子化的配合物比类似的单质子化的配合物以更高的速率进行更有效的交换。分子模型计算表明,较高电荷态可能存在更多的扩散构象,从而促进了H / D交换。此外,与单质子化复合物的大量交换相比,碱金属阳离子化复合物和ND3之间的H / D交换反应几乎被终止。构象变化或低能反应途径的丧失可以解释当大体积阳离子取代复合物中的质子时看到的有限的交换反应。 (J Am Soc Mass Spectrom 2000,11,711-721)(C)2000美国质谱学会。 [参考:29]

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