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Heterolytic Benzene C−H Activation by a Cyclometalated Iridium(III) Dihydroxo Pyridyl Complex: Synthesis, Hydrogen−Deuterium Exchange, and Density Functional Study

机译:环金属化铱(III)二氢氧吡啶基配合物的杂化苯CH活化:合成,氢氘交换和密度泛函研究

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摘要

We report the synthesis of the pincer-cyclometalated (NNC^(t-Bu))Ir(III) dihydroxo pyridyl complex 6, which catalyzes hydrogen−deuterium (H/D) exchange between water and benzene in the presence of base (TOF = ~6 × 10^(−3) s^(−1) at 190 °C). Experimental and density functional theory (B3LYP) studies suggest that H/D exchange occurs through loss of pyridine followed by benzene coordination and C−H bond activation by a heterolytic substitution mechanism to give a phenyl aquo complex, which may dimerize. Exchange of H_2O for D_2O followed by the microscopic reverse of CH activation leads to deuterium incorporation into benzene. Synthesis of the μ-hydroxo phenyl dinuclear complex [(NNC^(t-Bu))Ir(Ph)(μ-OH)]_2 (9) also catalyzes H/D exchange with a turnover frequency (TOF = ~7 × 10^(−3) s^(−1) at 190 °C) similar to that for 6.
机译:我们报告了钳形环金属化(NNC ^(t-Bu))Ir(III)二氢氧吡啶基络合物6的合成,该催化剂在碱存在下催化水与苯之间的氢氘(H / D)交换(TOF =在190°C时约为〜6×10 ^(-3)s ^(-1))。实验和密度泛函理论(B3LYP)研究表明,H / D交换是通过吡啶的丢失,随后的苯配位和CH-H键的杂合取代机理活化而产生的,其苯二酚络合物可能二聚。 H_2O交换为D_2O,然后微观上反转了CH活化,导致氘掺入苯中。 μ-羟基苯基双核络合物[(NNC ^(t-Bu))Ir(Ph)(μ-OH)] _ 2(9)的合成还催化了H / D交换,其转换频率为(TOF =〜7×10 ^(-3)s ^(-1)在190°C)与6相似。

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