Cattaneo Mauricio, Gallmeier Elisabeth T, Abate Pedro O, Mercado Brandon Q, Mayer James M
INQUINOA (CONICET-UNT), Facultad de Bioquímica, Química y Farmacia, Instituto de Química Física, CONICET-Universidad Nacional de Tucumán, Ayacucho 471 (4000), San Miguel de Tucumán, Argentina.
Department of Chemistry, Yale University, New Haven, Connecticut, 06520, United States.
Chemistry. 2024 Sep 25;30(54):e202401308. doi: 10.1002/chem.202401308. Epub 2024 Sep 5.
Most redox processes that break/form bonds involve net 2e changes, and many are coupled to protons. Yet most proton-coupled electron transfer (PCET) studies focus on 1e/1H reactions. Reported here is a family of molecular models that undergo tunable 2e/2H redox changes. Complexes (Xbpy)Ru(en*) and (Xbpy)Ru(en*-H) have been synthesized with bpy=2,2'-bipyridine with 4,4'-subtitutions X=-NMe, -OMe, -Me, -H, -CF; and en*=2,3-dimethyl-2,3-butanediamine. They have been characterized by IR, UV-vis, and NMR spectroscopies, XRD, electrochemistry, mass spectrometry, DFT and (TD)DFT computations. The introduction of electron-withdrawing and donating groups at the 4,4'-position of the bpy ligand affects the complexes' redox potentials, pK's, and Bond Dissociation Free Energies (BDFEs) of the N-H bonds in the en* ligands. The average BDFEs for the overall 2e/2H PCET span over 5 kcal/mol. Notably, these complexes all show marked potential inversion over an extended range, ΔpK>25 units and ΔE>1.4 V. Potential inversion remains despite the electronic influence of bpy's substitutions which regulate N-H properties several bonds apart by trans-effect over dπ-molecular orbitals at the Ru center. The experimental and computational results presented in this work support the presence of strong coupling between electrons and protons, for modelling insights of 2e/2H transfer reactivity.
大多数断裂/形成化学键的氧化还原过程涉及净2电子变化,且许多过程与质子耦合。然而,大多数质子耦合电子转移(PCET)研究集中在1电子/1质子反应上。本文报道了一类经历可调2电子/2质子氧化还原变化的分子模型。已经合成了配合物[(Xbpy)Ru(en*)] (PF)和[(Xbpy)Ru(en*-H)] (PF),其中bpy = 2,2'-联吡啶,4,4'-位取代基X = -NMe、-OMe、-Me、-H、-CF;en* = 2,3-二甲基-2,3-丁二胺。它们通过红外光谱、紫外-可见光谱、核磁共振光谱、X射线衍射、电化学、质谱、密度泛函理论(DFT)和含时密度泛函理论(TD)DFT计算进行了表征。在bpy配体的4,4'-位引入吸电子和供电子基团会影响配合物的氧化还原电位、pK值以及en*配体中N-H键的键解离自由能(BDFE)。整个2电子/2质子PCET的平均BDFE跨度超过5千卡/摩尔。值得注意的是,这些配合物在很宽的范围内都显示出明显的电位反转,ΔpK>25个单位,ΔE>1.4伏。尽管bpy取代基的电子效应通过Ru中心dπ分子轨道上的反位效应调节相隔几个键的N-H性质,但电位反转仍然存在。本文给出的实验和计算结果支持电子与质子之间存在强耦合,有助于对2电子/2质子转移反应性进行建模研究。