Li Jian, Djurovich Peter I, Alleyne Bert D, Yousufuddin Muhammed, Ho Nam N, Thomas J Christopher, Peters Jonas C, Bau Robert, Thompson Mark E
University of Southern California, Department of Chemistry, Los Angeles, California 90089, USA.
Inorg Chem. 2005 Mar 21;44(6):1713-27. doi: 10.1021/ic048599h.
The synthesis and photophysical characterization of a series of (N,C(2')-(2-para-tolylpyridyl))2 Ir(LL') [(tpy)2 Ir(LL')] (LL' = 2,4-pentanedionato (acac), bis(pyrazolyl)borate ligands and their analogues, diphosphine chelates and tert-butylisocyanide (CN-t-Bu)) are reported. A smaller series of [(dfppy)2 Ir(LL')] (dfppy = N,C(2')-2-(4',6'-difluorophenyl)pyridyl) complexes were also examined along with two previously reported compounds, (ppy)2 Ir(CN)2- and (ppy)2 Ir(NCS)2- (ppy = N,C(2')-2-phenylpyridyl). The (tpy)2 Ir(PPh2CH2)2 BPh2 and (tpy)2 Ir(CN-t-Bu)2 complexes have been structurally characterized by X-ray crystallography. The Ir-C(aryl) bond lengths in (tpy)2 Ir(CN-t-Bu)2+ (2.047(5) and 2.072(5) A) and (tpy)2 Ir(PPh2CH2)2 BPh2 (2.047(9) and 2.057(9) A) are longer than their counterparts in (tpy)2 Ir(acac) (1.982(6) and 1.985(7) A). Density functional theory calculations carried out on (ppy)2 Ir(CN-Me)2+ show that the highest occupied molecular orbital (HOMO) consists of a mixture of phenyl-pi and Ir-d orbitals, while the lowest unoccupied molecular orbital is localized primarily on the pyridyl-pi orbitals. Electrochemical analysis of the (tpy)2 Ir(LL') complexes shows that the reduction potentials are largely unaffected by variation in the ancillary ligand, whereas the oxidation potentials vary over a much wider range (as much as 400 mV between two different LL' ligands). Spectroscopic analysis of the cyclometalated Ir complexes reveals that the lowest energy excited state (T1) is a triplet ligand-centered state (3LC) on the cyclometalating ligand admixed with 1MLCT (MLCT = metal-to-ligand charge-transfer) character. The different ancillary ligands alter the 1MLCT state energy mainly by changing the HOMO energy. Destabilization of the 1MLCT state results in less 1MLCT character mixed into the T1 state, which in turn leads to an increase in the emission energy. The increase in emission energy leads to a linear decrease in ln(k(nr)) (k(nr) = nonradiative decay rate). Decreased 1MLCT character in the T1 state also increases the Huang-Rhys factors in the emission spectra, decreases the extinction coefficient of the T1 transition, and consequently decreases the radiative decay rates (k(r)). Overall, the luminescence quantum yields decline with increasing emission energies. A linear dependence of the radiative decay rate (k(r)) or extinction coefficient (epsilon) on (1/deltaE)2 has been demonstrated, where deltaE is the energy difference between the 1MLCT and 3LC transitions. A value of 200 cm(-1) for the spin-orbital coupling matrix element 3LC absolute value(H(SO)) 1MLCT of the (tpy)2 Ir(LL') complexes can be deduced from this linear relationship. The (fppy)2 Ir(LL') complexes with corresponding ancillary ligands display similar trends in excited-state properties.
报道了一系列(N,C(2')-(2-对甲苯基吡啶基))2 Ir(LL') [(tpy)2 Ir(LL')](LL' = 2,4-戊二酮基(acac)、双(吡唑基)硼酸酯配体及其类似物、二膦螯合物和叔丁基异腈(CN-t-Bu))的合成及光物理表征。还研究了一小系列[(dfppy)2 Ir(LL')](dfppy = N,C(2')-2-(4',6'-二氟苯基)吡啶基)配合物以及两种先前报道的化合物(ppy)2 Ir(CN)2-和(ppy)2 Ir(NCS)2-(ppy = N,C(2')-2-苯基吡啶基)。(tpy)2 Ir(PPh2CH2)2 BPh2和(tpy)2 Ir(CN-t-Bu)2配合物已通过X射线晶体学进行了结构表征。(tpy)2 Ir(CN-t-Bu)2+(2.047(5)和2.072(5) Å)和(tpy)2 Ir(PPh2CH2)2 BPh2(2.047(9)和2.057(9) Å)中的Ir-C(芳基)键长比(tpy)2 Ir(acac)(1.982(6)和1.985(7) Å)中的对应键长更长。对(ppy)2 Ir(CN-Me)2+进行的密度泛函理论计算表明,最高占据分子轨道(HOMO)由苯基-π和Ir-d轨道的混合物组成,而最低未占据分子轨道主要定域在吡啶基-π轨道上。(tpy)2 Ir(LL')配合物的电化学分析表明,还原电位在很大程度上不受辅助配体变化的影响,而氧化电位的变化范围则大得多(两种不同的LL'配体之间相差多达400 mV)环金属化Ir配合物的光谱分析表明,最低能量激发态(T1)是环金属化配体上的三重态配体中心态(3LC),并混合有1MLCT(MLCT = 金属到配体的电荷转移)特征。不同的辅助配体主要通过改变HOMO能量来改变1MLCT态能量。1MLCT态的不稳定导致混入T1态的1MLCT特征减少,进而导致发射能量增加。发射能量的增加导致ln(k(nr))(k(nr) = 非辐射衰减率)呈线性下降。T1态中1MLCT特征的减少也会增加发射光谱中的黄-里斯因子,降低T1跃迁的消光系数,从而降低辐射衰减率(k(r))。总体而言,发光量子产率随着发射能量的增加而下降。已证明辐射衰减率(k(r))或消光系数(ε)与(1/ΔE)2呈线性关系,其中ΔE是1MLCT和3LC跃迁之间的能量差。从该线性关系可以推导出(tpy)2 Ir(LL')配合物的自旋-轨道耦合矩阵元3LC绝对值(H(SO)) 1MLCT的值为200 cm(-1)。具有相应辅助配体的(fppy)2 Ir(LL')配合物在激发态性质方面表现出类似的趋势。