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由长寿命自旋态弛豫确定的分子性质。

Molecular properties determined from the relaxation of long-lived spin states.

作者信息

Ahuja Puneet, Sarkar Riddhiman, Vasos Paul R, Bodenhausen Geoffrey

机构信息

Institut des Sciences et Ingénierie Chimiques, Ecole Polytechnique Fédérale de Lausanne (EPFL), Batochime, 1015 Lausanne, Switzerland.

出版信息

J Chem Phys. 2007 Oct 7;127(13):134112. doi: 10.1063/1.2778429.

Abstract

The populations of long-lived spin states, in particular, populations of singlet states that are comprised of antisymmetric combinations of product states, |alpha(I)beta(S)> - |beta(I)alpha(S)>, are characterized by very long lifetimes because the dipole-dipole interaction between the two "active" spins I and S that are involved in such states is inoperative as a relaxation mechanism. The relaxation rate constants of long-lived (singlet) states are therefore determined by the chemical shift anisotropy (CSA) of the active spins and by dipole-dipole interactions with passive spins. For a pair of coupled spins, the singlet-state relaxation rate constants strongly depend on the magnitudes and orientations of the CSA tensors. The relaxation properties of long-lived states therefore reveal new information about molecular symmetry and structure and about spectral density functions that characterize the dynamic behavior.

摘要

特别是长寿命自旋态的布居,尤其是由乘积态的反对称组合|α(I)β(S)> - |β(I)α(S)>构成的单重态布居,具有非常长的寿命,因为参与这些态的两个“活性”自旋I和S之间的偶极-偶极相互作用作为一种弛豫机制不起作用。因此,长寿命(单重态)态的弛豫速率常数由活性自旋的化学位移各向异性(CSA)以及与非活性自旋的偶极-偶极相互作用决定。对于一对耦合自旋,单重态弛豫速率常数强烈依赖于CSA张量的大小和取向。因此,长寿命态的弛豫特性揭示了有关分子对称性和结构以及表征动态行为的谱密度函数的新信息。

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