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首页> 外文期刊>Chemistry: A European journal >Bond Angle Versus Torsional Deformation in an Overcrowded Alkene: 9-(2,2,2-Triphenylethylidene)fluorene
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Bond Angle Versus Torsional Deformation in an Overcrowded Alkene: 9-(2,2,2-Triphenylethylidene)fluorene

机译:过度拥挤的烯烃中的键角与扭转变形:9-(2,2,2-三苯乙叉基)芴

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摘要

Competition between bond angle and torsional strain in sterically crowded alkenes generally causes twisting in tetrasubstitued alkenes, while most structurally characterized trisubstituted alkenes are planar. To investigate structural effects of steric repulsion between a planar aromatic ring and a vicinal triphenylmethyl (trityl) group, 9-(2,2,2-triphenylethylidene)florene (1a) was synthesized by reaction of 9-bromomethylenefluorene with triphenylmethyllithium. For comparison with a less strained analogue, 9-ethylidene-fluorene (1b) was prepared by reaction of fluorenone with ethylmagnesium bromide. The X-ray crystal structures show that the difference between bond angles at the 9-fluorenyl carbon atom is much larger for 1a (12.9 deg) than 1b (2.6 deg). Bond angle and torsional deformations were compared theoretically (HF/6-31+G~*) with the tert-butyl analogue (1c), 1,2,2-tri-tert-butylethene (7), and 2,4,4-trimethyl-2-pentene (8) and crystallographically with six known 1,1-di-aryl-2-tert-alkylethenes (2). The trisubstituted alkenes formed three groups with 1) large angle distortion with moderate twisting (1a, 1b, and 7), 2) moderte bending with a large range of torsional angles (2), and 3) little bending or twisting (1b and 8). For the entire series, there appears to be a delicate balance between angle and torsional deformation, but twisting appears to produce smaller relief from steric strain than angle bending. In the crystallographically characterized trisubstituted alkenes, the choice between the two is mainly deterined by more sutable packing forces.
机译:在空间上拥挤的烯烃中,键角和扭转应变之间的竞争通常会导致四取代烯烃发生扭曲,而大多数具有结构特征的三取代烯烃是平面的。为了研究平面芳香环与邻位三苯甲基(三苯甲基)之间的空间排斥的结构效应,通过9-溴亚甲基芴与三苯基甲基锂的反应合成了9-(2,2,2-三苯乙叉基)弗洛烯(1a)。为了与应变较小的类似物进行比较,通过芴酮与乙基溴化镁的反应制备了9-亚乙基芴(1b)。 X射线晶体结构表明,对于1a(12.9度),在9-芴基碳原子处的键角之间的差比1b(2.6度)大得多。理论上将键角和扭转变形(HF / 6-31 + G〜*)与叔丁基类似物(1c),1,2,2-三叔丁基乙烯(7)和2,4,4进行了比较-三甲基-2-戊烯(8),并用六种已知的1,1-二-芳基-2-叔烷基乙烯(2)结晶。三取代烯烃形成三个基团:1)大角度扭曲,适度扭曲(1a,1b和7),2)中度弯曲,扭曲角范围大(2),3)弯曲或扭曲小(1b和8) )。在整个系列中,角度和扭转变形之间似乎存在微妙的平衡,但是与角度弯曲相比,扭转似乎会产生较小的空间应变缓解。在晶体学上表征的三取代烯烃中,两者之间的选择主要由更稳定的填充力决定。

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