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电子和核相互作用对铜(I)二亚胺配合物激发态性质和结构动力学的影响。

Effects of electronic and nuclear interactions on the excited-state properties and structural dynamics of copper(I) diimine complexes.

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208-3113, USA.

出版信息

J Phys Chem B. 2013 Feb 14;117(6):1921-31. doi: 10.1021/jp311643t. Epub 2013 Jan 31.

DOI:10.1021/jp311643t
PMID:23323679
Abstract

The effects of structural constraints on the metal-to-ligand charge transfer (MLCT) excited state structural dynamics of cuprous bis-2,9-diphenyl-phenanthroline (Cu(I)(dpp)(2)) in both coordinating acetonitrile and noncoordinating toluene were studied using X-ray transient absorption (XTA) spectroscopy and density functional theory (DFT) calculations. The phenyl groups attached to the phenanthroline ligands not only effectively shield the Cu(I) center from solvent molecules, but also force a flattened tetrahedral coordination geometry of the Cu(I) center. Consequently, the MLCT state lifetime in Cu(I)(dpp)(2) is solvent-independent, unlike the previously studied 2,9-methyl substituted bis-phenanthroline Cu(I) complex. The MLCT state of Cu(I)(dpp)(2) still undergoes a "pseudo Jahn-Teller distortion," with the angle between the two phenanthroline ligand planes decreased further by 7°. The XTA results indicate that, in the MLCT excited state of Cu(I)(dpp)(2), the phenyls at the 2, 9 positions of the phenanthroline rotate, breaking the π-π interaction with the phenanthroline ligands without ever rotating in-plane with the phenanthroline ligands. Hence, the transferred electron density from the Cu(I) center is localized on the phenanthroline moiety with no charge density present on the phenyl rings. The insight about the effect of the structural constraints on the MLCT state properties will guide the design of Cu(I) diimine complexes with suitable excited-state properties to function as earth-abundant dye sensitizers for solar electricity generation.

摘要

结构约束对铜(I)双-2,9-二苯基菲咯啉([Cu(I)(dpp)(2)]+)在配位乙腈和非配位甲苯中配体到金属电荷转移(MLCT)激发态结构动力学的影响,使用 X 射线瞬态吸收(XTA)光谱和密度泛函理论(DFT)计算进行了研究。连接到菲咯啉配体上的苯基不仅有效地将 Cu(I)中心与溶剂分子屏蔽,而且还迫使 Cu(I)中心具有扁平的四面体配位几何形状。因此,与先前研究的 2,9-甲基取代双菲咯啉 Cu(I)配合物不同,[Cu(I)(dpp)(2)]+中的 MLCT 态寿命与溶剂无关。[Cu(I)(dpp)(2)]+的 MLCT 态仍经历“伪 Jahn-Teller 畸变”,两个菲咯啉配体平面之间的夹角进一步减小了 7°。XTA 结果表明,在[Cu(I)(dpp)(2)]+的 MLCT 激发态中,菲咯啉的 2,9 位上的苯基旋转,破坏了与菲咯啉配体的π-π相互作用,但从未与菲咯啉配体平面内旋转。因此,从 Cu(I)中心转移的电子密度定位于菲咯啉部分,而苯环上没有电荷密度。关于结构约束对 MLCT 态性质的影响的见解将指导具有合适激发态性质的 Cu(I)二亚胺配合物的设计,作为用于太阳能发电的丰富地球染料敏化剂。

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