| Literature DB >> 33400867 |
Pedro Paulo Ferreira da Rosa1, Shiori Miyazaki2, Haruna Sakamoto2, Yuichi Kitagawa3,4, Kiyoshi Miyata2, Tomoko Akama5, Masato Kobayashi5,4, Koji Fushimi3, Ken Onda2, Tetsuya Taketsugu5,4, Yasuchika Hasegawa3,4.
Abstract
Photophysical properties of europium (Eu(III)) complexes are affected by ligand-to-metal charge transfer (LMCT) states. Two luminescent Eu(III) complexes with three tetramethylheptadionates (tmh) and pyridine (py), [Eu(tmh)3(py)1] (seven-coordinated monocapped-octahedral structure) and [Eu(tmh)3(py)2] (eight-coordinated square antiprismatic structure), were synthesized for geometrical-induced LMCT level control. Distances between Eu(III) and oxygen atoms of tmh ligands were estimated using single-crystal X-ray analyses. The contribution percentages of π-4f mixing in HOMO and LUMO at the optimized structure in the ground state were calculated using DFT (LC-BLYP). The Eu-O distances and their π-4f mixed orbitals affect the energy level of LMCT states in Eu(III) complexes. The LMCT energy level of an eight-coordinated Eu(III) complex was higher than that of a seven-coordinated Eu(III) complex. The energy transfer processes between LMCT and Eu(III) ion were investigated using temperature-dependent and time-resolved emission lifetime measurements of 5D0 → 7FJ transitions of Eu(III) ions. In this study, the LMCT-dependent energy transfer processes of seven- and eight-coordinated Eu(III) complexes are demonstrated for the first time.Entities:
Year: 2021 PMID: 33400867 DOI: 10.1021/acs.jpca.0c09337
Source DB: PubMed Journal: J Phys Chem A ISSN: 1089-5639 Impact factor: 2.781