首页> 外文期刊>Acta Crystallographica, Section B. Structural science, crystal engineering and materials >Structure of Pigment Yellow 181 dimethylsulfoxide N-methyl-2-pyrrolidone (1:1:1) solvate from XRPD + DFT-D
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Structure of Pigment Yellow 181 dimethylsulfoxide N-methyl-2-pyrrolidone (1:1:1) solvate from XRPD + DFT-D

机译:XRPD + DFT-D的颜料黄181二甲基亚砜N-甲基-2-吡咯烷酮(1:1:1)溶剂化物的结构

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摘要

With only a 2.6 A ° resolution laboratory powder diffraction pattern of the - phase of Pigment Yellow 181 (P.Y. 181) available, crystal-structure solution and Rietveld refinement proved challenging; especially when the crystal structure was shown to be a triclinic dimethylsulfoxide N-methyl-2-pyrrolidone (1:1:1) solvate. The crystal structure, which in principle has 28 possible degrees of freedom, was determined in three stages by a combination of simulated annealing, partial Rietveld refinement with dummy atoms replacing the solvent molecules and further simulated annealing. The θ phase not being of commercial interest, additional experiments were not economically feasible and additional dispersion-corrected density functional theory (DFT-D) calculations were employed to confirm the correctness of the crystal structure. After the correctness of the structure had been ascertained, the bond lengths and valence angles from the DFT-D minimized crystal structure were fed back into the Rietveld refinement as geometrical restraints ('polymorph-dependent restraints') to further improve the details of the crystal structure; the positions of the H atoms were also taken from the DFT-D calculations. The final crystal structure is a layered structure with an elaborate network of hydrogen bonds.
机译:仅有颜料黄181(P.Y. 181)的-相分辨率为2.6 A°的实验室粉末衍射图,证明晶体结构解决方案和Rietveld提纯极具挑战性。特别是当晶体结构显示为三斜甲基二甲亚砜N-甲基-2-吡咯烷酮(1:1:1)溶剂化物时。晶体结构原则上具有28个可能的自由度,它是通过模拟退火,部分Rietveld精炼(用伪原子代替溶剂分子)和进一步模拟退火的组合,分三个阶段确定的。 θ相没有商业意义,另外的实验在经济上也不可行,并且另外的色散校正的密度泛函理论(DFT-D)计算被用来确认晶体结构的正确性。确定结构的正确性之后,将DFT-D最小化晶体结构的键长和化合价角作为几何约束(“多晶型依赖性约束”)反馈到Rietveld改进中,以进一步改善晶体的细节结构体; H原子的位置也从DFT-D计算得出。最终的晶体结构是具有精心设计的氢键网络的层状结构。

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