Emsley Lyndon
Institut des Sciences et Ingénierie Chimiques, École Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
Faraday Discuss. 2025 Jan 8;255(0):9-45. doi: 10.1039/d4fd00151f.
Chemical function is directly related to the spatial arrangement of atoms. Consequently, the determination of atomic-level three-dimensional structures has transformed molecular and materials science over the past 60 years. In this context, solid-state NMR has emerged to become the method of choice for atomic-level characterization of complex materials in powder form. In the following we present an overview of current methods for chemical shift driven NMR crystallography, illustrated with applications to complex materials.
化学功能与原子的空间排列直接相关。因此,在过去的60年里,原子级三维结构的测定改变了分子和材料科学。在这种背景下,固态核磁共振已成为对粉末形式的复杂材料进行原子级表征的首选方法。在接下来的内容中,我们将概述当前化学位移驱动的核磁共振晶体学方法,并举例说明其在复杂材料中的应用。