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首页> 外文期刊>Theoretical chemistry accounts >Site-, enantio- and stereo-selectivities of the 1,3-dipolar cycloaddition reactions of oxanorbornadiene with C,N-disubstituted nitrones and dimethyl nitrilimines: a DFT mechanistic study
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Site-, enantio- and stereo-selectivities of the 1,3-dipolar cycloaddition reactions of oxanorbornadiene with C,N-disubstituted nitrones and dimethyl nitrilimines: a DFT mechanistic study

机译:氧砍硼硼和二甲基硝基和二甲基硝基胺的1,3-偶极环加成反应的部位 - ,肾上腺素和立体选择性:DFT机制研究

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摘要

1,3-Dipolar cycloaddition of nitrones to oxanorbornadienes is an important method for the enantioselective synthesis of highly substituted 5-membered heterocycles such as furans and isoxazolidines, which have high utility in the chemical and pharmaceutical industries. The mechanism of the reaction and the effects of substituents on the (3 + 2) cycloaddition reactions (32CA) of C,N-dialkyl nitrones with a series of substituted oxanorbornadienes have been studied with focus on the site-selectivity (attack on the more substituted double bond of the oxanorbornadiene derivatives versus attack on the less substituted double bond), enantioselectivity and stereo-selectivity using density functional theory calculations at the M06/6-311++G(d,p) of theory. The results showed that the addition step to form the bicyclic isoxazolidines cycloadducts has generally low barriers compared to the cycloreversion step which converts the cycloadducts into furans and monocyclic isoxazolidines. Generally, electron-withdrawing substituents favour the nitrone attack on the highly substituted double bond, while electron-donating substituents favour the attack on less substituted double bond. The R enantiomers are generally favoured over the S enantiomers, and exo stereo-isomers are generally favoured over the endo stereo-isomers, irrespective of substituents.
机译:1,3-偶极环加成硝酸盐氧橡胶至氧化植物,是对高度取代的5-元杂环如呋喃和异恶唑酯的对映选择性合成的重要方法,其在化学和制药行业具有高效用。已经研究了C,N-二烷基亚硝酮的(3 + 2)环加成反应(32Ca)对具有一系列取代的氧化鼠冰刀的机制,并专注于场地选择性(越来越多在理论的M06 / 6-311 ++ G(D,P)的M06 / 6-311 ++ G(D)的密度泛函理论计算取代OxanorbornadieNe衍生物与攻击的双键对较少取代的双键的攻击),对映选择性和立体选择性。结果表明,与环趾转变步骤相比,形成双环异恶唑烷环形加深器的加入步骤通常具有低屏障,其转化为呋喃和单环异恶唑啉。通常,吸电子取代基对高度取代的双键有利于硝基攻击,而电子赋予取代基对较少取代的双键的发作有利于攻击。 R对映体通常在S对映体上受到青睐,而EXO立体异构体通常在endo立体异构体上偏好,无论取代基如何。

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