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Color Polymorphism: Understanding the Diverse Solid-State Packing and Color in Dimethyl-3,6-dichloro-2,5- dihydroxyterephthalate

机译:颜色多态性:了解3,6-dichloro-2,5-dihydroxyterephthalate二甲基二甲基中的固态包装和颜色

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摘要

Dimethyl-3,6-dichloro-2,5-dihydroxyterephthalate (MCHT) is known to exist in three differently packed crystals having three different colors, namely yellow (Y), light yellow (LY), and white (W). Apart from the difference in their color, the molecules in the crystals also differ in their intramolecular O-H···O and O-H···Cl hydrogen bonds. Time-dependent DFT calculations reveal the role of the various types of hydrogen bonds in controlling the color of the polymorphs. Mechanistic pathways that lead to such transformations in the crystal are elucidated by solid-state dispersion-corrected DFT studies. Relative stabilities of the various polymorphs rationalize the experimentally observed transformations between them. Calculations reveal that the minimum-energy pathway for the conversion of the Y form to a W form is through stepwise disrotatory motion of the two -OH groups through a hybrid intermediate having one intramolecular O-H···O and one O-H···Cl bond. The LY form is shown to exist on the higher-energy pathway involving a concerted Y!W transformation.
机译:已知3,6-二氯-2,5-二羟基对苯二甲酸二甲酯(MCHT)存在于三种不同堆积的晶体中,该晶体具有三种不同的颜色,即黄色(Y),浅黄色(LY)和白色(W)。除了颜色不同之外,晶体中的分子的分子内O-H···O和O-H···Cl氢键也不同。随时间变化的DFT计算揭示了各种类型的氢键在控制多晶型物颜色方面的作用。固态弥散校正的DFT研究阐明了导致晶体中这种转变的机制途径。各种多晶型物的相对稳定性合理化了它们之间的实验观察到的转变。计算表明,Y型转化为W型的最小能量途径是通过两个-OH基团通过具有一个分子内OH···O和一个OH···Cl键的杂化中间体的逐步旋转运动。 。 LY形式显示存在于高能量途径中,其涉及一致的Y!W转化。

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