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一种通用的量子晶体学协议。

A quantum crystallographic protocol for general use.

作者信息

Balmohammadi Yaser, Malaspina Lorraine A, Nakamura Yuiga, Cametti Georgia, Siczek Milosz, Grabowsky Simon

机构信息

Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern, Freiestrasse 3, 3012, Bern, Switzerland.

Japan Synchrotron Radiation Research Institute (JASRI), Sayo-cho, Hyogo, 679-5198, Japan.

出版信息

Sci Rep. 2025 Apr 19;15(1):13584. doi: 10.1038/s41598-025-96400-0.

Abstract

Quantum crystallography has become ever more important in recent years for the accurate determination of molecular and crystal structures. The results of quantum crystallographic refinements of X-ray data are as accurate and precise as from neutron diffraction and they give access to the complete electronic structure of the compound under investigation. Is the method now mature enough and easy enough to use to extend and ultimately supersede standard X-ray crystal structure determination routines? We utilize the world's most common crystal structure-the YLID test crystal that every owner of an X-ray diffractometer receives with their machine-to show under which circumstances routine, low-resolution, and even room-temperature measurements can be subjected to quantum crystallographic refinement. Based on this, we describe a quantum crystallographic protocol step by step that makes application of quantum crystallographic refinement easy to use and reproducible. We encourage that valuable YLID test measurements are not discarded but made available for method development, increasing the availability of repeated measurements from a handful to tens of thousands.

摘要

近年来,量子晶体学对于准确测定分子和晶体结构变得越来越重要。X射线数据的量子晶体学精修结果与中子衍射结果一样准确和精确,并且能够获取所研究化合物的完整电子结构。这种方法现在是否已经足够成熟且易于使用,从而能够扩展并最终取代标准的X射线晶体结构测定程序呢?我们利用世界上最常见的晶体结构——每台X射线衍射仪的所有者都会随仪器收到的YLID测试晶体——来展示在何种情况下常规、低分辨率甚至室温测量可以进行量子晶体学精修。基于此,我们逐步描述了一个量子晶体学方案,该方案使量子晶体学精修的应用易于使用且可重复。我们鼓励不要丢弃有价值的YLID测试测量数据,而是将其用于方法开发,从而将重复测量的可用性从少数增加到数万。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75b2/12009286/00ecdb003341/41598_2025_96400_Sch1_HTML.jpg

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