首页> 外文期刊>The Journal of Organic Chemistry >Decreasing Distortion Energies without Strain: Diazo-Selective 1,3-Dipolar Cycloadditions
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Decreasing Distortion Energies without Strain: Diazo-Selective 1,3-Dipolar Cycloadditions

机译:减少应变时的扭曲能:重氮选择性1,3-偶极环加成反应

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The diazo group has attributes that complement those of the azido group for applications in chemical biology. Here, we use computational analyses to provide insights into the chemoselectivity of the diazo group in 1,3-dipolar cycloadditions. Dipole distortion energies are responsible for similar to 80% of the overall energetic barrier for these reactions. Here, we show that diazo compounds, unlike azides, provide an opportunity to decrease that barrier substantially without introducing strain into the dipolarophile. The ensuing rate enhancement is due to the greater nucleophilic character of a diazo group compared to that of an azido group, which can accommodate decreased distortion energies without predistortion. The tuning of distortion energies with substituents in a diazo compound or dipolarophile can enhance reactivity and selectivity in a predictable manner. Notably, these advantages of diazo groups are amplified in water. Our findings provide a theoretical framework that can guide the design and application of both diazo compounds and azides in "orthogonal" contexts, especially for biological investigations.
机译:重氮基团的属性与叠氮基团的属性互补,可用于化学生物学。在这里,我们使用计算分析来深入了解1,3-偶极环加成中重氮基团的化学选择性。偶极子畸变能量约占这些反应总能垒的80%。在这里,我们显示出与叠氮化物不同,重氮化合物提供了减少该势垒的机会,而又不会在双亲亲子中引入应变。随之而来的速率提高是由于重氮基团与叠氮基团相比具有更大的亲核特性,它可以适应降低的畸变能量而无需预失真。用重氮化合物或亲二氟体中的取代基调节畸变能可以以可预测的方式增强反应性和选择性。值得注意的是,重氮基团的这些优点在水中得到放大。我们的发现提供了一个理论框架,可以指导“正交”环境下重氮化合物和叠氮化物的设计和应用,特别是用于生物学研究。

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