Corzilius Björn
Institute of Chemistry and Department of Life, Light and Matter, University of Rostock, 18059 Rostock, Germany; email:
Annu Rev Phys Chem. 2020 Apr 20;71:143-170. doi: 10.1146/annurev-physchem-071119-040222. Epub 2020 Feb 19.
Dynamic nuclear polarization (DNP) is one of the most prominent methods of sensitivity enhancement in nuclear magnetic resonance (NMR). Even though solid-state DNP under magic-angle spinning (MAS) has left the proof-of-concept phase and has become an important tool for structural investigations of biomolecules as well as materials, it is still far from mainstream applicability because of the potentially overwhelming combination of unique instrumentation, complex sample preparation, and a multitude of different mechanisms and methods available. In this review, I introduce the diverse field and history of DNP, combining aspects of NMR and electron paramagnetic resonance. I then explain the general concepts and detailed mechanisms relevant at high magnetic field, including solution-state methods based on Overhauser DNP but with a greater focus on the more established MAS DNP methods. Finally, I review practical considerations and fields of application and discuss future developments.
动态核极化(DNP)是核磁共振(NMR)中最显著的灵敏度增强方法之一。尽管在魔角旋转(MAS)下的固态DNP已走出概念验证阶段,并已成为生物分子以及材料结构研究的重要工具,但由于其独特的仪器设备、复杂的样品制备以及众多不同的机制和方法可能带来的压倒性组合,它仍远未达到主流应用水平。在这篇综述中,我介绍了DNP的不同领域和历史,结合了NMR和电子顺磁共振的各个方面。然后我解释了在高磁场下相关的一般概念和详细机制,包括基于奥弗豪泽DNP的溶液态方法,但更侧重于更成熟的MAS DNP方法。最后,我回顾了实际考虑因素和应用领域,并讨论了未来的发展。