首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Conformational polymorphism and thermochemical analysis of 5,5 '''-bis[( 2,2,5,5-tetramethyl-1-aza-2,5-disila-1-cyclopentyl)ethyl]-2,2 ': 5 ', 2 '' : 5 '',2 '''-quaterthiophene
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Conformational polymorphism and thermochemical analysis of 5,5 '''-bis[( 2,2,5,5-tetramethyl-1-aza-2,5-disila-1-cyclopentyl)ethyl]-2,2 ': 5 ', 2 '' : 5 '',2 '''-quaterthiophene

机译:5,5'-双[(2,2,5,5-四甲基-1-氮杂-2,5-二硅-1-环戊基)乙基] -2,2':5'的构象多态性和热化学分析,2'':5'',2'''-四噻吩

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摘要

The titled compound exists as two polymorphic solid phases (denoted form-I and form-II). Form-I obtained by as-synthesized material is a more stable phase. Form-II is a less stable phase. Spontaneous solid-solid transformation from form-II to form-I is observed in the temperature range between room temperature and the melting point of form-I (T-m = 156.5 degrees C), and its activation energy is estimated to be 96 kJ mol(-1) by Arrhenius plot. The solid-solute-solid transformation (recrystallization from solution) from form-II to form-I is also observed. In contrast, form-II is obtained only by a solid-melt-solid transformation from form-I. Therefore, the system of two polymorphs is monotropic. The solid-state NMR measurement shows that form-I has the molecular conformation of complete S-syn-anti-syn in the oligothiophene backbone, whereas form-II has that of S-all-anti. With the solution NMR data, the polymorphism could not be observed. Therefore, the polymorphs originate from the different molecular packing involving the conformational change of the molecule. This unique property is attributed to the extra bulky terminal groups of the compounds. However, despite the extra bulky terminal groups, the mentioned polymorphism is not observed in the titled compound analogue which has S-all-anti conformation (like form-II).
机译:标题化合物以两个多晶型固相(表示为形式I和形式II)存在。通过合成后的材料获得的晶型I是更稳定的相。 II型是不稳定的阶段。在室温至I型熔点(Tm = 156.5摄氏度)之间的温度范围内观察到自II型向I型自发的固-固转变,其活化能估计为96 kJ mol( -1)通过阿累尼乌斯情节。还观察到从形式II到形式I的固-固-固转变(从溶液中重结晶)。相反,II型仅通过从I型固-固-固转变而获得。因此,两个多晶型物的系统是单向的。固态NMR测量表明,形式I在寡噻吩骨架中具有完整的S-syn-反-syn分子构象,而形式II具有S-all-anti。利用溶液NMR数据,不能观察到多态性。因此,多晶型物源自涉及分子构象变化的不同分子堆积。这种独特的性质归因于化合物的额外庞大的端基。然而,尽管末端基团特别庞大,但在具有S-全抗构象的标题化合物类似物中没有观察到上述多态性(如II型)。

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