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首页> 外文期刊>The Journal of Chemical Physics >A theoretical basis for spontaneous polarization transfer in non-hydrogenative parahydrogen-induced polarization
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A theoretical basis for spontaneous polarization transfer in non-hydrogenative parahydrogen-induced polarization

机译:非氢化对氢诱导极化中自发极化转移的理论基础

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摘要

When parahydrogen adds to a metal template containing a substrate of interest, the substrate and parahydrogen become coupled, and polarization is shared between the two without the incorporation of the parahydrogen into the substrate. A mechanism for this polarization transfer is presented in which the transfer is propagated through the scalar couplings. At zero field, polarization is transferred between two-, three-, and four-spin zero quantum states, but no single spin magnetization is created. The interplay between the chemical shift evolution and the evolution under scalar coupling at non-zero field generates additional longitudinal spin order and now includes single spin longitudinal z-magnetization. The additional chemical shift interaction introduces a field dependency to the nuclear spin states of the polarized substrate. The net effect of the polarization field strength on the resultant nuclear spin states is shown to be predictable but complex.
机译:当对位氢添加到包含目标底物的金属模板中时,底物和对氢就变成偶联剂,并且在不将对氢掺入底物的情况下,两者之间共享极化。提出了这种极化转移的机制,其中转移通过标量耦合传播。在零场时,极化在两个,三个和四个自旋的零量子状态之间转移,但没有创建单个自旋磁化强度。化学位移演化与非零磁场下标量耦合演化之间的相互作用产生了附加的纵向自旋顺序,现在包括单自旋纵向z磁化。额外的化学位移相互作用将电场依赖关系引入了极化基板的核自旋态。极化场强对最终核自旋态的净影响显示是可预测的,但很复杂。

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