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Kinetics of the Strain-PromotedOxidation-ControlledCycloalkyne-12-quinone Cycloaddition: Experimental and TheoreticalStudies

机译:应变促进的动力学氧化控制环炔基12-醌环加成:实验和理论学习

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摘要

Stimulated by its success in both bioconjugation and surface modification, we studied the strain-promoted oxidation-controlled cycloalkyne–1,2-quinone cycloaddition (SPOCQ) in three ways. First, the second-order rate constants and activation parameters (ΔH) were determined of various cyclooctynes reacting with 4-tert-butyl-1,2-quinone in a SPOCQ reaction, yielding values for ΔH of 4.5, 7.3, and 12.1 kcal/mol, for bicyclo[6.1.0]non-4-yne (BCN), cyclooctyne (OCT), and dibenzoazacyclooctyne (DIBAC), respectively. Second, their reaction paths were investigated in detail by a range of quantum mechanical calculations. Single-configuration theoretical methods, like various DFT and a range of MP2-based methods, typically overestimate this barrier by 3–8 kcal/mol (after inclusion of zero-point energy, thermal, and solvation corrections), whereas MP2 itself underestimates the barrier significantly. Only dispersion-corrected DFT methods like B97D (yielding 4.9, 6.4, and 12.1 kcal/mol for these three reactions) and high-level CCSD(T) and multireference multiconfiguration AQCCab initio approaches (both yielding 8.2 kcal/mol for BCN) give goodapproximations of experimental data. Finally, the multireference methodsshow that the radical character in the TS is rather small, thus rationalizingthe use of single-reference methods like B97D and SCS-MP2 as intrinsicallyvalid approaches.
机译:受到其在生物结合和表面修饰方面的成功的激发,我们以三种方式研究了应变促进的氧化控制的环炔烃-1,2-醌环加成(SPOCQ)。首先,确定在SPOCQ反应中与4-叔丁基-1,2-醌反应的各种环辛炔的二阶速率常数和活化参数(ΔH),得出ΔH<对双环[6.1.0] non-4-yne(BCN),环辛炔(OCT)和二苯并氮杂环辛炔(DIBAC)的sup>⧧分别为4.5、7.3和12.1 kcal / mol。其次,通过一系列量子力学计算详细研究了它们的反应路径。单配置理论方法,如各种DFT和一系列基于MP2的方法,通常会以3–8 kcal / mol(在包括零点能量,热和溶剂化校正之后)高估此势垒,而MP2本身低估了障碍明显。仅分散校正DFT方法,如B97D(这三个反应的产率分别为4.9、6.4和12.1 kcal / mol)和高级CCSD(T)和多参考多配置AQCC从头算方法(对于BCN而言,两者均产生8.2 kcal / mol)都具有良好的实验数据的近似值。最后,多参照法表明TS中的激进特征很小,因此合理化本质上使用诸如B97D和SCS-MP2之类的单引用方法有效的方法。

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