Halbritter Thomas, Harrabi Rania, Paul Subhradip, van Tol Johan, Lee Daniel, Hediger Sabine, Sigurdsson Snorri Th, Mentink-Vigier Frédéric, De Paëpe Gaël
Department of Chemistry, University of Iceland, Science Institute Dunhaga 3 107 Reykjavik Iceland
IRIG, MEM, Univ. Grenoble Alpes, CEA, CNRS 38000 Grenoble France
Chem Sci. 2023 Mar 13;14(14):3852-3864. doi: 10.1039/d2sc05880d. eCollection 2023 Apr 5.
Magic angle spinning (MAS) dynamic nuclear polarization (DNP) has significantly broadened the scope of solid-state NMR to study biomolecular systems and materials. In recent years, the advent of very high field DNP combined with fast MAS has brought new challenges in the design of polarizing agents (PA) used to enhance nuclear spin polarization. Here, we present a trityl-nitroxide PA family based on a piperazine linker, named PyrroTriPol, for both aqueous and organic solutions. These new radicals have similar properties to that of TEMTriPol-I and can be readily synthesized, and purified in large quantities thereby ensuring widespread application. The family relies on a rigid bridge connecting the trityl and the nitroxide offering a better control of the electron spin-spin interactions thus providing improved performance across a broad range of magnetic fields and MAS frequencies while requiring reduced microwave power compared to bis-nitroxides. We demonstrate the efficiency of the PyrroTriPol family under a magnetic field of 9.4, 14.1 and 18.8 T with respect to TEMTriPol-I. In particular, the superiority of PyrroTriPol was demonstrated on γ-AlO nanoparticles which enabled the acquisition of a high signal-to-noise surface-selective Al multiple-quantum MAS experiment at 18.8 T and 40 kHz MAS frequency.
魔角旋转(MAS)动态核极化(DNP)显著拓宽了固态核磁共振研究生物分子系统和材料的范围。近年来,超高场DNP与快速MAS的出现给用于增强核自旋极化的极化剂(PA)设计带来了新挑战。在此,我们展示了一种基于哌嗪连接基的三芳基-氮氧化物PA家族,名为PyrroTriPol,适用于水溶液和有机溶液。这些新的自由基具有与TEMTriPol-I相似的性质,易于合成且能大量纯化,从而确保广泛应用。该家族依赖于连接三芳基和氮氧化物的刚性桥,能更好地控制电子自旋-自旋相互作用,因此在广泛的磁场和MAS频率范围内性能得到改善,同时与双氮氧化物相比所需微波功率更低。我们展示了PyrroTriPol家族在9.4、14.1和18.8 T磁场下相对于TEMTriPol-I的效率。特别是,在γ-AlO纳米颗粒上证明了PyrroTriPol的优越性,这使得在18.8 T和40 kHz MAS频率下能够进行高信噪比的表面选择性Al多量子MAS实验。