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Gadolinium (III) ion in liquid water: Structure, dynamics, and magnetic interactions from first principles

机译:液态水中的d离子:基于第一原理的结构,动力学和磁相互作用

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We applied first principles molecular dynamics (MD) technique to study structure, dynamics, and magnetic interactions of the Gd3+ aqua ion dissolved in liquid water, a prototypical system for Gd-based complexes used as contrast agents for magnetic resonance imaging. The first coordination sphere contains eight water molecules with an average Gd-O distance of 2.37 A and an average geometric arrangement close to a square antiprism. The mean tilt angle of the electric dipole vector of these water molecules is theta=145 degrees. In our picosecond time scale simulation we observe no exchange event from the first coordination sphere but only fast "wagging" motions. The second coordination sphere is well pronounced though water molecules in this sphere are subjected to large amplitude dynamic motions. The isotropic hyperfine coupling constants for the inner sphere water molecules [< A(iso)(O-17(I))>=0.65 +/- 0.03 MHz, < A(iso)(H-1(I))>=0.085 +/- 0.005 MHz] are in good agreement with experimental data and with an earlier study using classical MD. Second sphere Fermi contact hyperfine coupling constants calculated are more than one order of magnitude smaller and of opposite sign as those of the first coordination sphere. The effect of spin polarization induced by the paramagnetic Gd3+ ion on the dipolar hyperfine interaction was found to be sizable only for the O-17 nuclei of inner sphere water molecules and has a screening character. (c) 2007 American Institute of Physics.
机译:我们应用了第一原理分子动力学(MD)技术研究了溶解在液态水中的Gd3 +铝离子的结构,动力学和磁相互作用,这是基于Gd的络合物的原型系统,该络合物用作磁共振成像的造影剂。第一配位球包含八个水分子,其平均Gd-O距离为2.37 A,平均几何排列接近方形反棱镜。这些水分子的电偶极子向量的平均倾斜角为theta = 145度。在我们的皮秒时标仿真中,我们没有观察到来自第一个协调域的任何交换事件,而只是观察到了快速的“摆动”运动。尽管该球中的水分子经历了大幅度的动态运动,但它在第二个协调球中的表现却很明显。内层水分子的各向同性超精细耦合常数[ = 0.65 +/- 0.03 MHz, = 0.085 +/- 0.005 MHz]与实验数据和使用经典MD的早期研究非常吻合。计算出的第二球费米接触超精细耦合常数比第一协调球小一个数量级,并且符号相反。发现顺磁性Gd3 +离子引起的自旋极化对偶极超精细相互作用的影响仅对于内球水分子的O-17核而言是相当大的,并且具有屏蔽特征。 (c)2007年美国物理研究所。

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