Near-white light emission from single crystals of cationic dinuclear gold(i) complexes with bridged diphosphine ligands

被引:5
|
作者
Osawa, Masahisa [1 ]
Soma, Sakie [1 ]
Kobayashi, Hiroyuki [1 ]
Tanaka, Yuya [2 ]
Hoshino, Mikio [1 ]
机构
[1] Nippon Inst Technol, Dept Appl Chem, Gakuendai 4-1,Miyashiro Machi, Saitama 3458501, Japan
[2] Tokyo Inst Technol, Inst Innovat Res, Lab Chem & Life Sci, R1-27,4259 Nagatsuta,Midori Ku, Yokohama 2268503, Japan
关键词
COINAGE METAL-COMPLEXES; PHOTOPHYSICAL PROPERTIES; MOLECULAR-STRUCTURES; PHOTOLUMINESCENCE PROPERTIES; HARNESSING FLUORESCENCE; HALIDE-COMPLEXES; DUAL EMISSION; LUMINESCENCE; STATE; PHOSPHORESCENCE;
D O I
10.1039/d2dt03785h
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Three cationic dinuclear Au(I) complexes containing acetonitrile (AN) as an ancillary ligand were synthesized: [mu-L-Me(AuAN)(2)]middot2BF(4) (1), [mu-L-Et(AuAN)(2)]middot2BF(4) (2), and [mu-L-iPr(AuAN)(2)]middot2BF(4 )(3) (L-Me = {1,2-bis[bis (2-methylphenyl)phosphino]benzene}, L-Et = {1,2-bis[bis(2-ethylphenyl)phosphino]benzene}, and L-iPr = {1,2-bis[bis(2-isopropylphenyl)phosphino]benzene}). The unique structures of complexes 1-3 with two P-Au(I)-AN rods bridged by rigid diphosphine ligands were determined through X-ray analysis. The Au(I)- Au(I) distances observed for complexes 1-3 were as short as 2.9804-3.0457 & Aring;, indicating an aurophilic interaction between two Au(I) atoms. Unlike complexes 2 and 3, complex 1 incorporated CH2Cl2 into the crystals as crystalline solvent molecules. Luminescence studies in the crystalline state revealed that complexes 1 and 2 mainly exhibited bluish-purple phosphorescence (PH) at 293 K: the former had a PH peak wavelength at 415 nm with the photoluminescence quantum yield Phi(PL) = 0.12, and the latter at 430 nm with Phi(PL )= 0.13. Meanwhile, complex 3 displayed near-white PH, that is dual PH with two PH bands centered at 425 and 580 nm with Phi(PL )= 0.44. The PH spectra and lifetimes of complexes 2 and 3 were measured in the temperature range of 77-293 K. The two PH bands observed for complex 3 were suggested to originate from the two emissive excited triplet states, which were in thermal equilibrium. From theoretical calculations, the dual PH observed for complex 3 is explained to occur from the two excited triplet states, T-1H and T-1L: the former exhibits a high-energy PH band (bluish-purple) and the latter exhibits a low-energy PH band (orange). The T-1H state is considered (ILCT)-I-3 with a structure similar to that of the S-0-optimized structure. Conversely, the T-1L state is assumed to be a (MLCT)-M-3 with a T-1-optimized structure, which has a short Au(I)-Au(I) bond and two bent rods (Au-AN). The thermal equilibrium between the two excited states is discussed based on computational calculations and photophysical data in the temperature range of 77-293 K. With regard to the crystal of complex 1, we were unable to precisely measure the temperature-dependent emission spectra and lifetimes, particularly at low temperatures, because the cooled crystals became irreversibly turbid over time.
引用
收藏
页码:2956 / 2965
页数:11
相关论文
共 49 条
  • [41] Highly-directional emission patterns based on near single guided mode extraction from GaN-based ultrathin microcavity light-emitting diodes with photonic crystals
    Lai, Chun-Feng
    Kuo, Hao-Chung
    Yu, Peichen
    Lu, Tien-Chang
    Chao, Chia-Hsin
    Yen, Hsi-Hsuan
    Yeh, Wen-Yung
    APPLIED PHYSICS LETTERS, 2010, 97 (01)
  • [42] Enhancement of white-light-emission from single-phase Sr5(PO4)3F:Eu2+,Mn2+ phosphors for near-UV white LEDs
    Feng, Yaomiao
    Huang, Jinping
    Liu, Lili
    Liu, Jie
    Yu, Xibin
    DALTON TRANSACTIONS, 2015, 44 (33) : 15006 - 15013
  • [43] Design and preparation of white light emission from up-conversion transitions in Er3+/Tm3+/Yb3+ co-doped cubic zirconia single crystals
    Wu, Limin
    Pan, Yihua
    Xu, Shoulei
    Zhang, Peng
    Wu, Wenxia
    Hao, Yan
    Ta, Shengdi
    Wang, Yazhao
    Goodman, Bernard Albert
    Deng, Wen
    CERAMICS INTERNATIONAL, 2023, 49 (18) : 29682 - 29689
  • [44] White Light Emission from Single-Component Cs7Cd3Br13:Pb2+,Mn2+Crystals with High Quantum Efficiency and Enhanced Thermodynamic Stability
    Gao, Meng
    Pan, Yuexiao
    Peng, Chengdong
    Ding, Yihong
    Lian, Hongzhou
    Li, Liyi
    Lin, Jun
    CHEMISTRY OF MATERIALS, 2023,
  • [45] White Light Emission from Single-Component Cs7Cd3Br13:Pb2+,Mn2+ Crystals with High Quantum Efficiency and Enhanced Thermodynamic Stability
    Gao, Meng
    Pan, Yuexiao
    Peng, Chengdong
    Ding, Yihong
    Lian, Hongzhou
    Li, Liyi
    Lin, Jun
    Chemistry of Materials, 2023, 35 (02) : 773 - 782
  • [46] Dual Emissive Cu:InP/ZnS/InP/ZnS Nanocrystals: Single-Source "Greener" Emitters with Flexibly Tunable Emission from Visible to Near-Infrared and Their Application in White Light-Emitting Diodes
    Zhang, Zhuolei
    Liu, Dong
    Li, Dongze
    Huang, Keke
    Zhang, Ying
    Shi, Zhan
    Xie, Renguo
    Han, Ming-Yong
    Wang, Yue
    Yang, Wensheng
    CHEMISTRY OF MATERIALS, 2015, 27 (04) : 1405 - 1411
  • [47] White-light emission from a single-emitting-component Ca9Gd(PO4)7:Eu2+,Mn2+ phosphor with tunable luminescent properties for near-UV light-emitting diodes
    Guo, Ning
    You, Hongpeng
    Song, Yanhua
    Yang, Mei
    Liu, Kai
    Zheng, Yuhua
    Huang, Yeju
    Zhang, Hongjie
    JOURNAL OF MATERIALS CHEMISTRY, 2010, 20 (41) : 9061 - 9067
  • [48] Developing a Cost-Effective Bioassay to Detect Alkaline Phosphatase Activity and Generating White Light Emission from a Single Nano-Assembly by Conjugating Vitamin B6 Cofactors with Lysozyme-Stabilized Fluorescent Gold Nanoclusters
    Upadhyay, Yachana
    Kumar, Rajender
    Sahoo, Suban K.
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8 (10) : 4107 - 4113
  • [49] SYNTHESES AND CHARACTERIZATION OF DINUCLEAR GOLD(I) RING AND OPEN-RING COMPLEXES CONTAINING SATURATED AND UNSATURATED DITHIOL BRIDGING LIGANDS AND PHOSPHINE OR BIS(DIPHOSPHINE) DONOR LIGANDS - CRYSTAL-STRUCTURES OF [AU2(MU-S(CH2)3S)(MU-DPPM)],[AU2(MU-MNT)(PPH3)2], [AU2(MU-S2C6H4)(PPH3)2], AND [AU4(MU-S2C6H3CH3)2(PET3)2]
    DAVILA, RM
    ELDUQUE, A
    GRANT, T
    STAPLES, RJ
    FACKLER, JP
    INORGANIC CHEMISTRY, 1993, 32 (09) : 1749 - 1755