Perras Frédéric A, Sadow Aaron, Pruski Marek
US DOE, Ames Laboratory, Ames, IA, 50011, USA.
Department of Chemistry, Iowa State University, Ames, IA, 50011, USA.
Chemphyschem. 2017 Aug 18;18(16):2279-2287. doi: 10.1002/cphc.201700299. Epub 2017 Jul 7.
Numerical calculations of enhancement factors offered by dynamic nuclear polarization in solids under magic angle spinning (DNP-MAS) were performed to determine the optimal EPR parameters for a dinitroxide polarizing agent. We found that the DNP performance of a biradical is more tolerant to the relative orientation of the two nitroxide moieties than previously thought. Generally, any condition in which the g tensor components of both radicals are perpendicular to one another is expected to have near-optimal DNP performance. Our results highlight the important role of the exchange coupling, which can lessen the sensitivity of DNP performance to the inter-radical distance, but also lead to lower enhancements when the number of atoms in the linker becomes less than three. Lastly, the calculations showed that the electron T value should be near 500 μs to yield optimal performance. Importantly, the newest polarizing agents already feature all of the qualities of the optimal polarizing agent, leaving little room for further improvement. Further research into DNP polarizing agents should then target non-nitroxide radicals, as well as improvements in sample formulations to advance high-temperature DNP and limit quenching and reactivity.
为确定二硝基氧化物极化剂的最佳电子顺磁共振(EPR)参数,对魔角旋转(DNP-MAS)条件下固体中动态核极化提供的增强因子进行了数值计算。我们发现,双自由基的DNP性能对两个氮氧化物部分的相对取向的耐受性比之前认为的更高。一般来说,两个自由基的g张量分量相互垂直的任何条件都有望具有接近最佳的DNP性能。我们的结果突出了交换耦合的重要作用,它可以降低DNP性能对自由基间距离的敏感性,但当连接基团中的原子数小于三个时也会导致较低的增强效果。最后,计算表明电子T值应接近500 μs才能产生最佳性能。重要的是,最新的极化剂已经具备最佳极化剂的所有特性,进一步改进的空间很小。因此,对DNP极化剂的进一步研究应针对非氮氧化物自由基,以及改进样品配方以推进高温DNP并限制淬灭和反应性。