首页> 外文OA文献 >A second polymorph of (2E)-1-(4-fluoro­phen­yl)-3-(3,4,5-trimethoxy­phen­yl)prop-2-en-1-one
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A second polymorph of (2E)-1-(4-fluoro­phen­yl)-3-(3,4,5-trimethoxy­phen­yl)prop-2-en-1-one

机译:(2E)-1-(4-氟­基)-3-(3,4,5-三甲氧基­基)丙-2-烯-1-酮的第二多晶型物

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摘要

The crystal structure of the title compound, C18H17FO4, reported here is a polymorph of the structure first reported by Patil et al. [Mol. Cryst. Liq. Cryst. Sci. Technol. Sect. A (2007), 461, 123–130]. It is a chalcone analog and consists of substituted phenyl rings bonded at the opposite ends of a propenone group, the biologically active region. The dihedral angle between the mean planes of the aromatic rings within the 4-fluoro­phenyl and trimethoxy­phenyl groups is 28.7 (1)° compared to 20.8 (6)° in the published structure. The angles between the mean plane of the prop-2-ene-1-one group and the mean plane of aromatic rings within the 4-fluoro­phenyl and trimethoxy­phenyl groups are 30.3 (4) and 7.4 (7)°, respectively, in contast to 10.7 (3) and 12.36° for the polymorph. While the two 3-meth­oxy groups are in the plane of the trimeth­oxy-substituted ring, the 4-meth­oxy group is in a synclinical [−sc = −78.1 (2)°] or anti­clinical [+ac = 104.0 (4)°] position, compared to a +sc [53.0 (4)°] or −ac [−132.4 (7)°] position. While no classical hydrogen bonds are present, weak inter­molecular C—H⋯π-ring inter­actions are observed which contribute to the stability of the crystal packing. The two polymorphs crystallize in the same space group, P21/c, but have different cell parameters for the a, b and c axes and the β angle. A comparison of the mol­ecular geometries of both polymorphs to a geometry optimized density functional theory (DFT) calculation at the B3-LYP/6–311+G(d,p) level for each structure provides additional support to these observations.
机译:此处报道的标题化合物C18H17FO4的晶体结构是Patil等人首先报道的结构的多晶型物。 [摩尔水晶酒水晶科学技术。教派。 A(2007),461,123–130]。它是查耳酮类似物,由在丙烯酮基团(生物活性区域)的相对端键合的取代苯环组成。 4-氟­苯基和三甲氧基­苯基内的芳环平均平面之间的二面角为28.7(1)°,而在已公开的结构中为20.8(6)°。丙-2-烯-1-一个基团的平均平面与4-氟苯基和三甲氧基苯基内的芳环平均平面之间的夹角分别为30.3°(4)和7.4°(7)°。多晶型物为10.7 12.(3)和12.36°。当两个3-甲氧基在三甲氧基取代的环的平面内时,4-甲氧基在顺斜[-sc = -78.1(2)°]或背斜[+ ac = 104.0(4)°]与+ sc [53.0(4)°]或-ac [−132.4(7)°]位置相比。尽管不存在经典的氢键,但观察到弱的分子间C-H⋯π环相互作用,这有助于晶体堆积的稳定性。这两个多晶型物在相同的空间群P21 / c中结晶,但对于a,b和c轴以及β角具有不同的像元参数。两种多晶型物的分子几何结构与几何优化的密度泛函理论(DFT)计算在B3-LYP / 6–311 + G(d,p)水平上的比较,为这些观察提供了更多的支持。

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