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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Metalloradical intermediates in electrocatalytic reduction of CO2 to CO: Mn versus Re bis-N-heterocyclic carbene pincers
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Metalloradical intermediates in electrocatalytic reduction of CO2 to CO: Mn versus Re bis-N-heterocyclic carbene pincers

机译:CO 2电催化还原的金属体中间体:Mn与再生 - N-杂环切片钳

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This work examines the relative reactivities of Re-I and Mn-I tricarbonyl pyridine-2,6-bis-N-heterocyclic carbene pincers M(CO)(3)(CNCX)-X-Bn (M = Re, Mn and X = Cl and Br) towards catalysis for the electrochemical conversion of CO2 to CO. Unlike prior well-studied group VII catalysts, Mn(CO)(3)(CNCX)-X-Bn is extraordinarily active, while the new Re(CO)(3)(CNCX)-X-Bn complex surprisingly does not exhibit catalytic response. DFT calculations shed light on this puzzling behavior and show that the redox-active pyridine-2,6-bis-N-heterocyclic carbene ligand facilitates the reduction of the ground-state complexes; however, the extent of electronic delocalization in the reduced intermediates differs in the degree of metalloradical character. The highly-active Mn(CO)(3)(CNCX)-X-Bn complex proceeds through an intermediate with nucleophilic metalloradical character in which 66% of the unpaired electron spin resides on Mn. In contrast, Re(CO)(3)(CNCX)-X-Bn reduction proceeds through an intermediate with less metalloradical character in which only 38% of the unpaired spin is localized on Re with the remainder delocalized over the ligand. The energetic penalty of the electron delocalization of an electron on the ligand affects the M-CO bond strengths and related kinetic barriers. We discuss these observations in the context of turnover-enabling effects in CO2 reductions mediated by group VII NHC pincer molecular electrocatalysts.
机译:该工作检测RE-I和MN-I三羰基吡啶-2,6-双 - N-杂环丙烯钳M(CO)(3)(CNCX)-X-BN(M = RE,MN和X.的相对反应性= Cl和Br)致催化Co2与CO的电化学转化。与先前研究的常见的催化剂不同,Mn(CO)(3)(CNCX)-X-BN非常活跃,而新Re(CO) (3)(CNCX)-X-BN复杂令人惊讶地没有表现出催化反应。 DFT计算在这种令人费解的行为上揭示了光线,表明氧化还原活性吡啶-2,6-双 - N-杂环配体有助于降低地 - 状态络合物;然而,降低中间体中电子临床化的程度在金属体特征的程度不同。高活性Mn(CO)(3)(CNCX)-X-BN复合物通过具有亲核金属化特性的中间体进行,其中66%的未配对电子旋转位于Mn上。相反,RE(CO)(3)(CNCX)-X-BN还原通过中间体进行,其中较少的金属体特征,其中仅38%的未配对旋转在RE上占据在配体上的剩余部分的局部化。在配体上的电子电子临床化的能量损失会影响M-Co键合强度和相关动力学屏障。在VII NHC钳子分子电催化剂介导的CO 2减少中,我们在营业额的效果的背景下讨论这些观察。

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