Palatinus Lukás
Institute of Physics, Prague, Czechia.
Acta Crystallogr A. 2004 Nov;60(Pt 6):604-10. doi: 10.1107/S0108767304022433. Epub 2004 Oct 26.
The charge flipping algorithm proposed by Oszlányi & Suto [Acta Cryst. (2004), A60, 134-141] for ab initio reconstruction of crystal structures is generalized towards superspace. Its efficiency is demonstrated by successful reconstruction of eight known incommensurately modulated structures from experimental data. The output of the charge flipping algorithm is an electron density with symmetry P1. The symmetry of the structure is recovered by locating the positions of symmetry operators and averaging the density over the symmetry-related pixels. The reconstruction of a modulated structure by the charge flipping algorithm and the accuracy of the result is demonstrated in detail on the modulated structure of tetraphenylphosphonium hexabromotellurate(IV) bis[dibromoselenate(I)].
奥兹拉尼伊和苏托[《晶体学报》(2004年),A60,134 - 141]提出的用于从头开始重建晶体结构的电荷翻转算法被推广到超空间。通过从实验数据成功重建八个已知的非公度调制结构,证明了其效率。电荷翻转算法的输出是具有P1对称性的电子密度。通过定位对称算符的位置并在与对称相关的像素上对密度进行平均来恢复结构的对称性。在四苯基鏻六溴碲酸盐(IV)双[二溴硒酸盐(I)]的调制结构上详细展示了用电荷翻转算法重建调制结构及其结果的准确性。