首页> 外文期刊>The Journal of Organic Chemistry >Alkynyl Crown Ethers as a Scaffold for Hyperconjugative Assistance in Noncatalyzed Azide?Alkyne Click Reactions: Ion Sensing through Enhanced Transition-State Stabilization
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Alkynyl Crown Ethers as a Scaffold for Hyperconjugative Assistance in Noncatalyzed Azide?Alkyne Click Reactions: Ion Sensing through Enhanced Transition-State Stabilization

机译:炔基冠醚作为在非催化叠氮化物?炔烃点击反应中超共轭辅助的支架:通过增强的过渡态稳定性进行离子感测

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摘要

Our recent work has provided an alternative strategy for acceleration of azide/alkyne cycloadditions via selective transition state (TS) stabilization. Optimization of hyperconjugative assistance, provided by the antiperiplanar arrangement of propargylic σ-acceptors relative to the forming bonds, is predicted to relieve strain in cyclooctynes while providing large acceleration to the cycloaddition. The present work investigates this strategy in alkynyl crown ethers, where propargylic C?O bonds contained within the macrocycle are constrained close to proper alignment for hyperconjugative assistance. Preorganization of σ-acceptors into the optimal arrangement for hyperconjugative interactions may alleviate a portion of the entropic penalty for reaching the TS. Optimal alignment can be reinforced, and transition-state stabilization can be further amplified by binding positively charged ions to the crown ether core, highlighting the potential for applications in ion sensing.
机译:我们最近的工作提供了一种通过选择性过渡态(TS)稳定化来加速叠氮化物/炔烃环加成反应的替代策略。预计由炔丙基σ受体相对于形成键的反平面排列提供的超共轭辅助作用的优化,可减轻环辛炔的应变,同时为环加成反应提供较大的加速度。目前的工作是在炔基冠醚中研究这种策略,其中大环内的炔丙基C2O键受约束而接近于超共轭辅助的适当排列。将σ受体预组织为超共轭相互作用的最佳安排可能会减轻一部分熵的损失,从而达到TS。通过将带正电的离子结合到冠醚核上,可以增强最佳对准,并且可以进一步增强过渡态的稳定性,从而突出了在离子感测中的应用潜力。

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