Institute of Molecular Functional Materials, The University of Hong Kong, Pokfulam Road, Hong Kong, P.R. China.
Inorg Chem. 2012 Jul 16;51(14):7537-45. doi: 10.1021/ic300140w. Epub 2012 Jun 25.
A novel class of luminescent gold(III) complexes containing various tridentate cyclometalating ligands derived from 6-phenyl-2,2'-bipyridine and alkynyl ligands, [Au(RC^N^N)(C≡C-R')]PF(6), has been successfully synthesized and characterized. One of the complexes has also been determined by X-ray crystallography. Electrochemical studies show a ligand-centered reduction originated from the cyclometalating RC^N^N ligands as well as an alkynyl-centered oxidation. The electronic absorption and photoluminescence properties of the complexes have also been investigated. In acetonitrile at room temperature, the complexes show intense absorption at higher energy region with wavelength shorter than 320 nm, and a moderately intense broad absorption band at 374-406 nm, assigned as the metal-perturbed intraligand π-π* transition of the cyclometalating RC(∧)N(∧)N ligand, with some charge transfer character from the aryl ring to the bipyridine moiety. Most of the complexes have been observed to show vibronic-structured emission bands at 469-550 nm in butyronitile glass at 77 K, assigned to an intraligand excited state of the RC^N^N ligand, with some charge transfer character from the aryl to the bipyridyine moiety. Insights into the origin of the absorption and emission have also been provided by density functional theory (DFT) and time-dependent density functional theory (TDDFT) calculations.
一类新型的含各种三齿配位体的金(III)配合物,包括 6-苯基-2,2'-联吡啶和炔基配体衍生的三齿配位体,[Au(RC^N^N)(C≡C-R')]PF(6),已成功合成并进行了表征。其中一个配合物也通过 X 射线晶体学确定。电化学研究表明,配体中心还原起源于环金属 RC^N^N 配体以及炔基中心氧化。还研究了配合物的电子吸收和光致发光性质。在室温下的乙腈中,配合物在较高能量区域显示出强烈的吸收,波长小于 320nm,并且在 374-406nm 处显示出中等强度的宽吸收带,归因于环金属 RC(∧)N(∧)N 配体的金属干扰的内配体π-π*跃迁,具有一些来自芳基环到联吡啶部分的电荷转移特征。大多数配合物在 77K 的丁腈玻璃中观察到在 469-550nm 处显示出带振动结构的发射带,归因于 RC^N^N 配体的内配体激发态,具有一些来自芳基到联吡啶部分的电荷转移特征。密度泛函理论(DFT)和时变密度泛函理论(TDDFT)计算也为吸收和发射的起源提供了深入的了解。