Kohler Lars, Hadt Ryan G, Hayes Dugan, Chen Lin X, Mulfort Karen L
Division of Chemical Sciences and Engineering, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439, USA.
Dalton Trans. 2017 Oct 14;46(38):13088-13100. doi: 10.1039/c7dt02476b. Epub 2017 Sep 25.
In this report we describe the synthesis of a new phenanthroline ligand, 2,9-di(2,4,6-tri-isopropyl-phenyl)-1,10-phenanthroline (bL2) and its use as the blocking ligand in the preparation of two new heteroleptic Cu(i)diimine complexes. Analysis of the CuHETPHEN single crystal structures shows a distinct distortion from an ideal tetrahedral geometry around the Cu(i) center, forced by the secondary phenanthroline ligand rotating to accommodate the isopropyl groups of bL2. The increased steric bulk of bL2 as compared to the more commonly used 2,9-dimesityl-1,10-phenanthroline blocking ligand prohibits intramolecular ligand-ligand interaction, which is unique among CuHETPHEN complexes. The ground state optical and redox properties of CuHETPHEN complexes are responsive to the substitution on the blocking ligand even though the differences in structure are far removed from the Cu(i) center. Transient optical spectroscopy was used to understand the excited state kinetics in both coordinating and non-coordinating solvents following visible excitation. Substitution of the blocking phenanthroline ligand has a significant impact on the MLCT decay and can be used to increase the excited state lifetime by 50%. Electronic structure calculations established relationships between ground and excited state properties, and general entatic state concepts are discussed for copper photosensitizers. This work contributes to the growing library of CuHETPHEN complexes and broadens the fundamental understanding of their ground and excited state properties.
在本报告中,我们描述了一种新型菲咯啉配体2,9-二(2,4,6-三异丙基苯基)-1,10-菲咯啉(bL2)的合成及其作为封端配体在制备两种新型异配体Cu(i)二亚胺配合物中的应用。对CuHETPHEN单晶结构的分析表明,由于二级菲咯啉配体旋转以容纳bL2的异丙基,Cu(i)中心周围的理想四面体几何结构出现了明显扭曲。与更常用的2,9-二甲基苯基-1,10-菲咯啉封端配体相比,bL2的空间位阻增大,这阻止了分子内配体-配体相互作用,这在CuHETPHEN配合物中是独一无二的。尽管结构差异与Cu(i)中心相距甚远,但CuHETPHEN配合物的基态光学和氧化还原性质对封端配体上的取代反应仍有响应。利用瞬态光谱来理解在可见激发后,配位和非配位溶剂中的激发态动力学。封端菲咯啉配体的取代对MLCT衰减有显著影响,可用于将激发态寿命延长50%。电子结构计算建立了基态和激发态性质之间的关系,并讨论了铜光敏剂的一般内稳状态概念。这项工作丰富了CuHETPHEN配合物的文库,并拓宽了对其基态和激发态性质的基本理解。