Chao Hsiu-Yi, Lu Wei, Li Yanqin, Chan Michael C W, Che Chi-Ming, Cheung Kung-Kai, Zhu Nianyong
Department of Chemistry and HKU-CAS Joint Laboratory on New Materials, The University of Hong Kong, Pokfulam Road, Hong Kong SAR, China.
J Am Chem Soc. 2002 Dec 11;124(49):14696-706. doi: 10.1021/ja0209417.
A family of mono- and binuclear Cy(3)P-supported gold(I) complexes containing various pi-conjugated linear arylacetylide ligands, including the two homologous series (Cy(3)P)Au(Ctbd1;CC(6)H(4))(n)()(-)(1)(Ctbd1;CPh) and (Cy(3)P)Au(Ctbd1;CC(6)H(4))(n)()Ctbd1;CAu(PCy(3)) (n = 1-4), have been prepared. X-ray crystal analyses revealed no intermolecular aurophilic interactions in their crystal lattice. The lowest-energy singlet transitions are predominately intraligand in nature and exhibit both phenyl and acetylenic (1)(pipi) character. Strong photoluminescence is detected in solid and solution states under ambient conditions, with lifetimes in the microsecond regime. For complexes with a single arylacetylide group, only phosphorescence from the arylacetylide (3)(pipi) state is observed. Vibrational spacings in the solid-state emission spectra can be attributed to a combination of phenyl ring deformation and symmetric phenyl ring and Ctbd1;C stretches. Additional delayed-fluorescence emission is recorded for complexes with multiple p-arylacetylide units, and this is attributed to a triplet-triplet annihilation process. The phosphorescence energy of these complexes are readily modified by altering the length of the conjugated arylacetylide system, while the intensity of phosphorescence relative to fluorescence decreases when the p-arylacetylide chain is elongated. Information regarding the nature and relative energies of arylacetylide singlet and triplet excited states has been derived from the two homologous series and extrapolated to polymeric arylacetylide species. The (3)(pipi) excited-state reduction potentials E degrees [Au(+)/Au] (Au = 1a, 2, and 4) are estimated to be -1.80, -1.28, and -1.17 V versus SSCE, respectively.
已制备出一系列含各种π共轭线性芳基乙炔配体的单核和双核Cy(3)P配位的金(I)配合物,包括两个同系物系列(Cy(3)P)Au(Ctbd1;CC(6)H(4))(n)()(-)(1)(Ctbd1;CPh)和(Cy(3)P)Au(Ctbd1;CC(6)H(4))(n)()Ctbd1;CAu(PCy(3)) (n = 1 - 4)。X射线晶体分析表明它们的晶格中不存在分子间金-金相互作用。能量最低的单重态跃迁本质上主要是配体内跃迁,兼具苯基和乙炔基(1)(pipi)特征。在环境条件下,固态和溶液态均检测到强的光致发光,寿命处于微秒级。对于含单个芳基乙炔基团的配合物,仅观察到来自芳基乙炔(3)(pipi)态的磷光。固态发射光谱中的振动间距可归因于苯环变形以及对称的苯环和Ctbd1;C伸缩振动的组合。对于含多个对芳基乙炔单元的配合物记录到了额外的延迟荧光发射,这归因于三重态-三重态湮灭过程。通过改变共轭芳基乙炔体系的长度可轻松调节这些配合物的磷光能量,而当对芳基乙炔链延长时,磷光相对于荧光的强度降低。已从这两个同系物系列得出有关芳基乙炔单重态和三重态激发态的性质和相对能量的信息,并外推至聚合芳基乙炔物种。相对于饱和甘汞电极,(3)(pipi)激发态还原电位E度[Au(+)/Au] (Au = 1a、2和4)估计分别为-1.80、-1.28和-1.17 V。