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利用电子自旋簇的动态核极化

Dynamic Nuclear Polarization Using Electron Spin Cluster.

作者信息

Chaklashiya Raj K, Equbal Asif, Shernyukov Andrey, Li Yuanxin, Tsay Karen, Stern Quentin, Tormyshev Victor, Bagryanskaya Elena, Han Songi

机构信息

Materials Department, University of California, Santa Barbara, Santa Barbara, California 93106, United States.

Division of Chemistry, New York University Abu Dhabi, Abu Dhabi, United Arab Emirates.

出版信息

J Phys Chem Lett. 2024 May 23;15(20):5366-5375. doi: 10.1021/acs.jpclett.4c00182. Epub 2024 May 12.

Abstract

Dynamic nuclear polarization (DNP) utilizing narrow-line electron spin clusters (ESCs) to achieve nuclear spin resonance matching (ESC-DNP) by microwave irradiation is a promising way to achieve NMR signal enhancements with a wide design scope requiring low microwave power at high magnetic field. Here we present the design for a trityl-based tetra-radical (TetraTrityl) to achieve DNP for H NMR at 7 T, supported by experimental data and quantum mechanical simulations. A slow-relaxing ( ≈ 1 ms) 4-ESC is found to require at least two electron spin pairs at <8 Å e-e spin distance to yield H ESC-DNP enhancement, while squeezing the rest of the e-e spin distances to <12 Å results in optimal H ESC-DNP enhancements. Fast-relaxing ESCs ( ≈ 10 μs) are found to require a weakly coupled narrow-line radical (sensitizer) to extract polarization from the ESC. These results provide design principles for achieving a power-efficient DNP at high field via ESC-DNP.

摘要

利用窄线电子自旋簇(ESC)通过微波辐照实现核自旋共振匹配(ESC-DNP)的动态核极化(DNP)是一种很有前景的方法,可在宽设计范围内以低微波功率在高磁场下实现核磁共振信号增强。在此,我们展示了一种基于三芳基甲基的四自由基(四三芳基甲基)的设计,以在7 T下实现用于氢核磁共振的DNP,并得到了实验数据和量子力学模拟的支持。发现一个慢弛豫(≈1毫秒)的4-ESC在电子-电子自旋距离<8 Å时至少需要两个电子自旋对才能产生氢ESC-DNP增强,而将其余电子-电子自旋距离压缩到<12 Å会导致最佳的氢ESC-DNP增强。发现快弛豫的ESC(≈10微秒)需要一个弱耦合窄线自由基(敏化剂)从ESC中提取极化。这些结果为通过ESC-DNP在高场实现功率高效的DNP提供了设计原则。

相似文献

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Dynamic Nuclear Polarization Using Electron Spin Cluster.利用电子自旋簇的动态核极化
J Phys Chem Lett. 2024 May 23;15(20):5366-5375. doi: 10.1021/acs.jpclett.4c00182. Epub 2024 May 12.
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