Chakraborty Arnab, Yarnell James E, Sommer Roger D, Roy Subhangi, Castellano Felix N
Department of Chemistry, North Carolina State University , Raleigh, North Carolina 27695-8204, United States.
Inorg Chem. 2018 Feb 5;57(3):1298-1310. doi: 10.1021/acs.inorgchem.7b02736. Epub 2018 Jan 16.
A series of four anti-disposed dinuclear platinum(II) complexes featuring metal-metal-to-ligand charge-transfer (MMLCT) excited states, bridged by either 2-hydroxy-6-methylpyridine or 2-hydroxy-6-phenylpyridine and cyclometalated with 7,8-benzoquinoline or 2-phenylpyridine, are presented. The 2-hydroxypyridine bridging ligands control intramolecular d-d metal-metal σ interactions, affecting the frontier orbitals' electronic structure, resulting in marked changes to the ground- and excited-state properties of these complexes. Three of these molecules possess reversible one-electron oxidations in cyclic voltammetry experiments as a result of strong intramolecular metallophilic interactions. In this series of molecules, X-ray crystallography revealed Pt-Pt distances ranging between 2.815 and 2.878 Å; the former represents the shortest reported metal-metal distance for platinum(II) dimers possessing low-energy MMLCT transitions. All four molecules reported here display visible absorption bands beyond 500 nm and feature MMLCT-based red photoluminescence (PL) above 700 nm at room temperature with high PL quantum yields (up to 4%) and long excited-state lifetimes (up to 341 ns). The latter were recorded using both transient PL and transient absorption experiments that self-consistently yielded quantitatively identical excited-state lifetimes. The energy-gap law was successfully applied to this series of chromophores, documenting this behavior for the first time in molecules possessing MMLCT excited states. The combined data illustrate that entirely new classes of MMLCT chromophores can be envisioned using bridging pyridyl hydroxides in cooperation with various C^N cyclometalates to achieve photophysical properties suitable for excited-state electron- and energy-transfer chemistry.
本文介绍了一系列四个反式双核铂(II)配合物,其具有金属-金属到配体的电荷转移(MMLCT)激发态,由2-羟基-6-甲基吡啶或2-羟基-6-苯基吡啶桥连,并与7,8-苯并喹啉或2-苯基吡啶进行环金属化。2-羟基吡啶桥连配体控制分子内d-d金属-金属σ相互作用,影响前沿轨道的电子结构,导致这些配合物的基态和激发态性质发生显著变化。由于强烈的分子内亲金属相互作用,其中三个分子在循环伏安实验中具有可逆的单电子氧化。在这一系列分子中,X射线晶体学显示Pt-Pt距离在2.815至2.878 Å之间;前者代表具有低能量MMLCT跃迁的铂(II)二聚体报道的最短金属-金属距离。本文报道的所有四个分子在500 nm以上均显示可见吸收带,并在室温下具有基于MMLCT的700 nm以上的红色光致发光(PL),具有高PL量子产率(高达4%)和长激发态寿命(高达341 ns)。后者通过瞬态PL和瞬态吸收实验记录,二者自洽地产生定量相同的激发态寿命。能隙定律成功应用于这一系列发色团,首次在具有MMLCT激发态的分子中记录到这种行为。综合数据表明,使用桥连吡啶醇与各种C^N环金属化物配合,可以设想出全新的MMLCT发色团类别,以实现适合激发态电子和能量转移化学的光物理性质。