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配体加速的铜催化叠氮化物-炔烃环加成反应:机理报告

Ligand-accelerated Cu-catalyzed azide-alkyne cycloaddition: a mechanistic report.

作者信息

Rodionov Valentin O, Presolski Stanislav I, Díaz David Díaz, Fokin Valery V, Finn M G

机构信息

Department of Chemistry and The Skaggs Institute of Chemical Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

J Am Chem Soc. 2007 Oct 24;129(42):12705-12. doi: 10.1021/ja072679d. Epub 2007 Oct 3.

Abstract

The experimental rate law for the Cu(I)-catalyzed azide-alkyne cycloaddition (CuAAC) reaction was found to vary in complex ways with concentration, the presence of chloride ion, and the presence of accelerating ligands. Several examples of discontinuous ("threshold behavior") kinetics were observed, along with a decidedly nonlinear correlation of electronic substituent parameter with the rate of CuAAC reaction with p-substituted arylazides. The previously observed tendency of the CuAAC reaction to provide ditriazoles from a conformationally constrained 1,3-diazide was found to be affected by a class of polybenzimidazole ligands introduced in the accompanying article. Various lines of evidence suggest that the standard tris(triazolylmethyl)amine ligand binds less strongly to Cu(I) than its benzimidazole analogues. On the basis of these observations, it is proposed that (a) a central nitrogen donor provides electron density at Cu(I) that assists the cycloaddition reaction, (b) the three-armed motif bearing relatively weakly coordinating heterocyclic ligands serves to bind the metal with sufficient strength while providing access to necessary coordination site(s), (c) at least two active catalysts or mechanisms are operative under the conditions studied, and (d) pendant acid or ester arms in the proper position can assist the reaction by speeding the protiolysis step that cleaves the Cu-C bond of a Cu.triazolyl intermediate.

摘要

实验发现,铜(I)催化的叠氮化物-炔烃环加成(CuAAC)反应的速率定律会因浓度、氯离子的存在以及促进配体的存在而以复杂的方式变化。观察到了几个不连续(“阈值行为”)动力学的例子,同时,电子取代基参数与对取代芳基叠氮化物的CuAAC反应速率之间存在明显的非线性相关性。在随附文章中引入的一类聚苯并咪唑配体被发现会影响先前观察到的CuAAC反应从构象受限的1,3-二叠氮化物生成二唑的趋势。各种证据表明,标准的三(三唑基甲基)胺配体与铜(I)的结合力比其苯并咪唑类似物弱。基于这些观察结果,有人提出:(a)中心氮供体在铜(I)处提供电子密度,协助环加成反应;(b)带有配位较弱的杂环配体的三臂基序以足够的强度结合金属,同时提供通往必要配位位点的通道;(c)在所研究的条件下,至少有两种活性催化剂或机制起作用;(d)适当位置的侧链酸或酯臂可以通过加速裂解铜-三唑基中间体的铜-碳键的质子分解步骤来协助反应。

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