首页> 外文期刊>Journal of the American Chemical Society >Notable Effect of an Electron-Withdrawing Group at C3 on the Selective Formation of Alkylidenecyclobutanes in the Thermal Denitrogenation of 4-Spirocyclopropane-1-pyrazolines Nonstatistical Dynamics Effects in the Denitrogenation Reactions
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Notable Effect of an Electron-Withdrawing Group at C3 on the Selective Formation of Alkylidenecyclobutanes in the Thermal Denitrogenation of 4-Spirocyclopropane-1-pyrazolines Nonstatistical Dynamics Effects in the Denitrogenation Reactions

机译:4-螺环丙烷-1-吡唑啉热脱氮中C3的吸电子基团对亚烷基环丁烷选择性形成的显着影响脱氮反应中的非统计动力学效应

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A detailed study of the thermal denitrogenation of 3-carbomethoxy-substituted 4-spirocyclopro-pane-1-pyrazolines 6 was conducted. Alkylidenecyclobutane derivatives 7 were selectively formed in a stereospecific manner. Unrestricted density functional calculations for a 1-pyrazoline 10a indicated that the concerted cleavage of two C-N bonds is the energetically favored process for the denitrogenation reaction to give the 2-spirocyclopropyl 1,3-diyl, followed by a conrotatory ring-closure process, which was calculated to be the energy minimum pathway, to afford a spiropentane derivative. The calculated energy minimum pathway is largely inconsistent with the experimental results observed for the denitrogenation of 6 and 10a. The contradiction between the experimental and standard computational results was solved by considering nonstatistical dynamics effects in the concerted denitrogenation reactions. Although the energy minimum pathway from the transition states of the concerted denitrogenation of the 3-carboalkoxy-substituted 1 -pyrazolines involves generation of the corresponding 1,3-diradicals, many trajectory calculations using the Bohn-Oppenheimer molecular dynamics model from the transition state for the concerted denitrogenation led directly to the formation of alkylidenecyclobutanes at the UB3LYP/6-31G(d) level of theory.
机译:对3-碳甲氧基取代的4-螺环环-窗格-1-吡唑啉6进行热脱氮的详细研究。亚烷基亚环丁烷衍生物7以立体有择方式选择性地形成。对1-吡唑啉10a的密度函数的无限制计算表明,两个CN键的一致断裂是能量上有利的脱氮反应,生成2-spirocyclopropyl 1,3-diyl的过程,然后是旋转性闭环过程,被计算为提供螺戊烷衍生物的最小能量途径。计算出的最小能量途径与6a和10a的脱氮实验结果不一致。通过考虑协同脱氮反应中的非统计动力学效应,解决了实验结果与标准计算结果之间的矛盾。尽管3-羰基烷氧基取代的1-吡唑啉协同脱氮的过渡态所需的最小能量途径涉及相应的1,3-双自由基的产生,但许多使用Bohn-Oppenheimer分子动力学模型从过渡态计算出的轨迹协同的脱氮直接导致在理论上的UB3LYP / 6-31G(d)水平上形成亚烷基环丁烷。

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