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铑(III)配合物催化的木质素衍生芳基醚的氧化还原中性解聚:机理洞察

Redox-neutral depolymerization of lignin-derived aryl ethers catalyzed by Rh(III)-complexes: a mechanistic insight.

作者信息

Zhang Yan, Luo Yafei, Hu Changwei, Tang Dianyong, Su Zhishan

机构信息

Key Laboratory of Green Chemistry and Technology, Ministry of Education, College of Chemistry, Sichuan University, Chengdu, Sichuan, 610064, P. R. China.

College of Pharmacy & International Academy of Targeted Therapeutics and Innovation, Chongqing University of Arts and Sciences, Chongqing, 402160, China.

出版信息

Phys Chem Chem Phys. 2024 Sep 18;26(36):23710-23721. doi: 10.1039/d4cp02660h.

Abstract

Density functional theory (DFT) calculations at the TPSSh-D3(BJ)/def2-TZVP (SMD, water) level of theory were performed to understand the mechanism of redox-neutral depolymerization of four types of lignin-derived aryl ether dimers catalyzed by rhodium-terpyridine ([Rh]) and a binuclear Rh complex ([2Rh]). The cleavage of the C-O bond in the β-O-4 model compound was initiated by the dehydrogenation of the alcohol moiety into a ketone intermediate, followed by the reductive cleavage of the ether bond, producing phenol and aromatic ketone products. The [Rh]-OH intermediate, generated by the interaction between the Rh-complex and NaOH, facilitated the transformation of the alcohol group to a CO group in the lignin model compound and subsequent H-transfer, selectively forming rhodium-H active species and the ketone intermediate. The [2Rh]-H complex exhibited high reactivity, with energy barriers for a rate-determining C-O bond breakage of 35.3 kcal mol. In contrast to 1-phenylethan-1-ol and H, lignin itself acted as a good hydrogen source to generate [Rh]-H species. The transformation of β-O-4 model compounds with the γ-OH group occurred the elimination of the γ-OH group, reduction of the CC bond, and C-O bond cleavage steps. However, since lignin itself was unable to supply enough hydrogen to form [Rh]-H species, the aromatic products were obtained in low yields, as observed in the experiment.

摘要

采用密度泛函理论(DFT)在TPSSh-D3(BJ)/def2-TZVP(SMD,水)理论水平下进行计算,以了解铑-三联吡啶([Rh])和双核铑配合物([2Rh])催化的四种木质素衍生芳基醚二聚体氧化还原中性解聚的机理。β-O-4模型化合物中C-O键的断裂是由醇部分脱氢生成酮中间体引发的,随后醚键发生还原断裂,生成苯酚和芳香酮产物。Rh配合物与NaOH相互作用生成的[Rh]-OH中间体促进了木质素模型化合物中醇基向C=O基团的转化以及随后的H转移,选择性地形成铑-氢活性物种和酮中间体。[2Rh]-H配合物表现出高反应活性,速率决定步骤C-O键断裂的能垒为35.3 kcal/mol。与1-苯基乙醇和H不同,木质素本身作为良好的氢源生成[Rh]-H物种。含γ-OH基团的β-O-4模型化合物的转化发生了γ-OH基团的消除、C=C键的还原和C-O键的断裂步骤。然而,由于木质素本身无法提供足够的氢来形成[Rh]-H物种,如实验中所观察到的,芳香产物的产率较低。

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