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Picosecond water dynamics adjacent to charged paramagnetic ions measured by magnetic relaxation dispersion

机译:通过磁弛豫色散测量的带电顺磁离子附近的皮秒水动力学

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摘要

Measurements of water-proton spin-lattice relaxation rate constants as a function of magnetic field strength [magnetic relaxation dispersion (MRD)] in aqueous solutions of paramagnetic solutes reveal a peak in the MRD profile. These previously unobserved peaks require that the time correlation functions describing the water-proton-electron dipolar coupling have a periodic contribution. In aqueous solutions of iron(III) ion the peak corresponds to a frequency of 8.7 cm(-1), which the authors ascribe to the motion of water participating in the second coordination sphere of the triply charged solute ion. Similar peaks of weaker intensity in the same time range are observed for aqueous solutions of chromium(III) chloride as well as for ion pairs formed by ammonium ion with trioxalatochromate(III) ion. The widths of the dispersion peaks are consistent with a lifetime for the periodic motion in the range of 5 ps or longer.
机译:在顺磁性溶质的水溶液中,水质子自旋晶格弛豫速率常数作为磁场强度的函数[磁弛豫色散(MRD)]的测量显示了MRD轮廓中的一个峰值。这些先前未观察到的峰需要描述水-质子-电子偶极耦合的时间相关函数具有周期性贡献。在铁(III)离子水溶液中,该峰对应于8.7 cm(-1)的频率,作者将其归因于参与三重带电溶质离子的第二配位球的水的运动。在相同的时间范围内,对于氯化铬(III)水溶液以及由铵离子与三草酸铬酸酯(III)离子形成的离子对,都观察到了类似的强度减弱峰。色散峰的宽度与周期运动的寿命一致,范围为5 ps或更长。

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