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溶液核磁共振中的长寿命态:低磁场中分子内偶极弛豫的选择规则。

Long-lived states in solution NMR: selection rules for intramolecular dipolar relaxation in low magnetic fields.

作者信息

Vinogradov Elena, Grant Aaron K

机构信息

Department of Radiology, Beth Israel Deaconess Medical Center, and Harvard Medical School, Ansin Building, Room 222, 330 Brookline Avenue, Boston, MA 02215, USA.

出版信息

J Magn Reson. 2007 Sep;188(1):176-82. doi: 10.1016/j.jmr.2007.05.015. Epub 2007 Jun 3.

Abstract

Recent work has shown that singlet states of two-spin systems in low magnetic fields can have lifetimes up to an order of magnitude longer than the usual spin-lattice relaxation time. This result may enable new applications of NMR, and in particular hyperpolarized NMR via parahydrogen-induced polarization, to the study of slow processes that take place over previously inaccessible timescales. At present it is unclear whether similar results apply to multi-spin systems, or if these long lifetimes are a peculiarity of the two-spin case. Moderately long-lived states have been observed in systems containing more than two spins, although the mechanisms that prolong their lifetimes are not well understood. Here we present formalism for the study of relaxation in multi-spin systems in low magnetic fields. This approach is used to derive a family of quantum-mechanical selection rules governing intramolecular dipolar relaxation at low field that may account for the extended lifetimes observed in multi-spin systems.

摘要

最近的研究表明,低磁场中两自旋系统的单重态寿命可比通常的自旋晶格弛豫时间长一个数量级。这一结果可能使核磁共振(NMR),特别是通过仲氢诱导极化的超极化NMR,在研究以前无法达到的时间尺度上发生的缓慢过程方面有新的应用。目前尚不清楚类似的结果是否适用于多自旋系统,或者这些长寿命是否是两自旋情况所特有的。在包含两个以上自旋的系统中已经观察到了寿命适中的状态,尽管延长其寿命的机制还不太清楚。在这里,我们提出了一种形式体系,用于研究低磁场中多自旋系统的弛豫。这种方法被用于推导一族在低场下控制分子内偶极弛豫的量子力学选择规则,这些规则可能解释了在多自旋系统中观察到的延长寿命。

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