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Welcoming natural isotopic abundance in solid-state NMR: probing π-stacking and supramolecular structure of organic nanoassemblies using DNP

机译:在固态NMR中欢迎天然同位素丰度:使用DNP探测有机纳米组件的π堆积和超分子结构

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摘要

The self-assembly of small organic molecules is an intriguing phenomenon, which provides nanoscale structures for applications in numerous fields from medicine to molecular electronics. Detailed knowledge of their structure, in particular on the supramolecular level, is a prerequisite for the rational design of improved self-assembled systems. In this work, we prove the feasibility of a novel concept of NMR-based 3D structure determination of such assemblies in the solid state. The key point of this concept is the deliberate use of samples that contain 13C at its natural isotopic abundance (NA, 1.1%), while exploiting magic-angle spinning dynamic nuclear polarization (MAS-DNP) to compensate for the reduced sensitivity. Since dipolar truncation effects are suppressed to a large extent in NA samples, unique and highly informative spectra can be recorded which are impossible to obtain on an isotopically labeled system. On the self-assembled cyclic diphenylalanine peptide, we demonstrate the detection of long-range internuclear distances up to ∼7 Å, allowing us to observe π-stacking through 13C–13C correlation spectra, providing a powerful tool for the analysis of one of the most important non-covalent interactions. Furthermore, experimental polarization transfer curves are in remarkable agreement with numerical simulations based on the crystallographic structure, and can be fully rationalized as the superposition of intra- and intermolecular contributions. This new approach to NMR crystallography provides access to rich and precise structural information, opening up a new avenue to de novo crystal structure determination by NMR.
机译:有机小分子的自组装是一个有趣的现象,它为从医学到分子电子学等众多领域的应用提供了纳米级结构。对它们的结构,特别是在超分子水平上的详细了解,是合理设计改进的自组装系统的先决条件。在这项工作中,我们证明了以固态为基础的此类组件的基于NMR的3D结构确定的新概念的可行性。这个概念的关键是故意使用天然同位素丰度(NA,1.1%)中含有13 C的样品,同时利用魔角旋转动态核极化(MAS-DNP)来弥补灵敏度降低的问题。由于在NA样品中偶极截短效应得到了很大程度的抑制,因此可以记录独特且高度有用的光谱,这在同位素标记的系统中是不可能获得的。在自组装的环状二苯丙氨酸肽上,我们证明了检测到约7Å的长距离核间距离,使我们能够通过13C–13C相关光谱观察π堆积,为分析其中一种分子提供了强大的工具。最重要的非共价相互作用。此外,实验的极化转移曲线与基于晶体结构的数值模拟非常吻合,并且可以作为分子内和分子间作用的叠加而完全合理化。这种新的NMR晶体学方法提供了丰富而精确的结构信息,为NMR从头确定晶体结构开辟了一条新途径。

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