首页> 外文期刊>Journal of chemical theory and computation: JCTC >Can Biomimetic Zinc Compounds Assist a (3+2) Cycloaddition Reaction? A Theoretical Perspective
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Can Biomimetic Zinc Compounds Assist a (3+2) Cycloaddition Reaction? A Theoretical Perspective

机译:仿生锌化合物可以促进(3 + 2)环加成反应吗? 理论观点

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Compounds bearing tetrazole rings are valuable facets in numerous branches of chemistry including metabolic imaging and the production of drugs and high-energy materials. Synthesis of tetrazoles with the help of organocatalysts has intensively been explored, while enzyme-directed click chemistry has attracted less attention and was only used in inhibitor design so far. Herein, we have investigated the possibility of a biomimetic catalyst based on a Lewis acid approach by exploring the anionic cycloaddition of azide and acetonitrile catalyzed by ZnBr2 in comparison with different biomimetic Zn(II) models. Density functional based calculations in the gas phase and with implicit solvation indicate that a variety of bioinspired zinc complexes should be able to catalyze tetrazole formation with catalytic enhancements comparable to zinc bromide salts. Such bioinspired routes could provide new possibilities for the stereo- and regioselectively controlled synthesis of tetrazoles.
机译:轴承四唑环的化合物是众多化学分支中的有价值的小面,包括代谢成像和药物和高能量材料的生产。 在有机催化剂的帮助下,探讨了四唑的合成,同时引导酶联的咔哒化学引起了较少的关注,并仅用于抑制剂设计。 在此,我们研究了通过ZnBr2催化的叠氮化物和乙腈的阴离子环加成,与不同的Zn(II)模型相比,通过探索通过ZnBr2催化的阴离子环加成来研究仿生酸方法的可能性。 基于密度的基于气相和隐性溶剂的计算表明各种生物悬浮的锌络合物应该能够催化与锌溴盐相当的催化增强的四唑形成。 这种生物悬浮的路线可以为立体声和区域选择性控制的四唑合成提供新的可能性。

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