Department of Chemistry - Ångström Laboratory, Uppsala University, SE-75120 Uppsala, Sweden.
Department of Physics, Lund University, Box 118, SE-22100 Lund, Sweden.
Phys Chem Chem Phys. 2022 Feb 9;24(6):3598-3610. doi: 10.1039/d1cp03667j.
Manganese-oxo species catalyze key reactions, including C-H bond activation or dioxygen formation in natural photosynthesis. To better understand relevant reaction intermediates, we characterize electronic states and geometric structures of [MnO] manganese-oxo complexes that represent a wide range of manganese oxidation states. To this end, we apply soft X-ray spectroscopy in a cryogenic ion trap, combined with multiconfigurational wavefunction calculations. We identify [MnO] as a rare high-spin manganese(V) oxo complex with key similarities to six-coordinated manganese(V) oxo systems that are proposed as reaction intermediates in catalytic dioxygen bond formation.
锰氧物种催化关键反应,包括在自然光合作用中 C-H 键的活化或氧气的形成。为了更好地理解相关的反应中间体,我们对代表广泛锰氧化态的[MnO]锰氧配合物的电子态和几何结构进行了表征。为此,我们在低温离子阱中应用软 X 射线光谱学,结合多组态波函数计算。我们将[MnO]鉴定为一种罕见的高自旋锰(V)氧配合物,与六配位锰(V)氧配合物具有关键相似性,后者被提议为催化氧键形成反应中的中间体。