Suppr超能文献

开壳和闭壳自由基:未配对电子周围的局域几何结构控制魔角旋转动态核极化性能。

Open and Closed Radicals: Local Geometry around Unpaired Electrons Governs Magic-Angle Spinning Dynamic Nuclear Polarization Performance.

机构信息

Institut des Sciences et Ingénierie Chimiques, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.

Aix Marseille Université, CNRS, ICR UMR 7273, 13013 Marseille, France.

出版信息

J Am Chem Soc. 2020 Sep 30;142(39):16587-16599. doi: 10.1021/jacs.0c04911. Epub 2020 Sep 16.

Abstract

The development of magic-angle spinning dynamic nuclear polarization (MAS DNP) has allowed atomic-level characterization of materials for which conventional solid-state NMR is impractical due to the lack of sensitivity. The rapid progress of MAS DNP has been largely enabled through the understanding of rational design concepts for more efficient polarizing agents (PAs). Here, we identify a new design principle which has so far been overlooked. We find that the local geometry around the unpaired electron can change the DNP enhancement by an order of magnitude for two otherwise identical conformers. We present a set of 13 new stable mono- and dinitroxide PAs for MAS DNP NMR where this principle is demonstrated. The radicals are divided into two groups of isomers, named open (O-) and closed (C-), based on the ring conformations in the vicinity of the N-O bond. In all cases, the open conformers exhibit dramatically improved DNP performance as compared to the closed counterparts. In particular, a new urea-based biradical named HydrOPol and a mononitroxide O-MbPyTol yield enhancements of 330 ± 60 and 119 ± 25, respectively, at 9.4 T and 100 K, which are the highest enhancements reported so far in the aqueous solvents used here. We find that while the conformational changes do not significantly affect electron spin-spin distances, they do affect the distribution of the exchange couplings in these biradicals. Electron spin echo envelope modulation (ESEEM) experiments suggest that the improved performance of the open conformers is correlated with higher solvent accessibility.

摘要

魔角旋转动态核极化 (MAS DNP) 的发展使得对那些由于灵敏度不足而使得常规固态 NMR 变得不切实际的材料进行原子级别的特性描述成为可能。MAS DNP 的快速发展在很大程度上得益于对更高效的极化剂 (PAs) 的合理设计概念的理解。在这里,我们确定了一个迄今为止被忽视的新设计原则。我们发现,不成对电子周围的局部几何形状可以使两种其他相同构象的 DNP 增强程度相差一个数量级。我们提出了一组 13 种新的稳定的单和二硝基氧化物 PA,用于 MAS DNP NMR,其中证明了这一原理。这些自由基分为两组异构体,分别命名为开环(O-)和闭环(C-),基于 N-O 键附近的环构象。在所有情况下,与闭环对应物相比,开环构象都表现出显著改善的 DNP 性能。特别是,一种新的基于脲的双自由基名为 HydrOPol 和一种单硝基氧化物 O-MbPyTol,在 9.4 T 和 100 K 下分别产生 330 ± 60 和 119 ± 25 的增强,这是迄今为止在所用水溶剂中报告的最高增强。我们发现,虽然构象变化不会显著影响电子自旋-自旋距离,但它们确实会影响这些双自由基中交换耦合的分布。电子自旋回波调幅 (ESEEM) 实验表明,开环构象的性能提高与更高的溶剂可及性相关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验