首页> 外文期刊>Journal of the American Chemical Society >EXPERIMENTAL AND THEORETICAL ANALYSIS OF THE EFFECTS OF STRAIN DIMINUTION ON THE STEREOSELECTIVITY OF DIENOPHILIC CAPTURE BY PI-FACIALLY NONEQUIVALENT HOMOLOGUES OF ISODICYCLOPENTADIENE
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EXPERIMENTAL AND THEORETICAL ANALYSIS OF THE EFFECTS OF STRAIN DIMINUTION ON THE STEREOSELECTIVITY OF DIENOPHILIC CAPTURE BY PI-FACIALLY NONEQUIVALENT HOMOLOGUES OF ISODICYCLOPENTADIENE

机译:异位环戊二烯的PI非等价同源性对消除应变对双亲捕获立体选择性影响的实验和理论分析

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Four new cyclic dienes, constructed such that their conjugated pi networks are fused to bicyclic frameworks, viz. 6-9, have been prepared. All four are less strained than isodicyclopentadiene (1) and therefore lack the high-lying sigma orbital energy levels that presumably give rise to pi orbital tilting found uniquely in 1. The addition of various dienophiles to these dienes results in predominant Diels-Alder reaction from the top face, in contradistinction to the behavior of 1, which reacts with high below-plane pi-facial diastereoselectivity. The structures of the adducts were determined almost entirely by NOE methods as applied directly to the products themselves, their dihydro derivatives, or quadricyclane photoisomers. The relative energies of the two principal transition states for 6-9 were calculated by means of an MM2 model. The features uncovered by this means showed larger torsional angles between H(1) and C(4) to be invariably associated with bottom-face dienophile capture. Since this ordering of torsional strain effects does not conform with the experimental facts, such contributions cannot be responsible for controlling the stereoselectivity of these cycloadditions. Rather, in the absence of sigma/pi interaction, steric approach control operates, and dienophiles attack preferentially from the sterically less crowded pi surface. [References: 91]
机译:构造了四个新的环状二烯,使它们的共轭pi网络与双环骨架融合,即。 6-9,已经准备好了。这四个分子都比异二环戊二烯(1)应变要小,因此缺乏高位的sigma轨道能级,该能级可能导致1中特有的pi轨道倾斜。向这些二烯添加各种亲二烯体会导致Diels-Alder反应与1的行为相反,它的顶面具有较高的平面pi面非对映选择性。加合物的结构几乎完全由NOE方法确定,直接应用于产品本身,其二氢衍生物或四环烷光异构体。通过MM2模型计算出6-9的两个主要跃迁状态的相对能量。通过这种方法发现的特征显示出H(1)和C(4)之间的较大扭转角总是与底面亲二烯体捕获有关。由于扭转应变作用的这种排序与实验事实不符,因此这些贡献不能负责控制这些环加成物的立体选择性。相反,在没有sigma / pi交互作用的情况下,会执行空间方法控制,并且亲双烯体优先从空间较少拥挤的pi表面进攻。 [参考:91]

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