Structural changes upon photoexcitation into the metal-to-ligand charge-transfer state of [Cu(pqx)(PPh3)2]+ probed by resonance Raman spectroscopy and density functional theory

被引:28
作者
Waterland, MR [1 ]
Howell, SL
Gordon, KC
Burrell, AK
机构
[1] Massey Univ, Inst Fundamental Sci, MacDiarmid Inst Adv Mat & Nanotechnol, Palmerston North, New Zealand
[2] Univ Otago, Dept Chem, MacDiarmid Inst Adv Mat & Nanotechnol, Dunedin, New Zealand
[3] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
关键词
D O I
10.1021/jp052954n
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The structural changes that occur when [Cu(pqx)(PPh3)(2)](+) (pqx is 2-(2'-pyridyl)quinoxaline) undergoes excitation through a metal-to-ligand charge-transfer (MLCT) transition are investigated using resonance Raman excitation profiles coupled with density functional theory (DFT). The DFT calculations predict bond lengths to within 3 pm and absolute deviations of 7 cm(-1) for the vibrational frequencies of [Cu(pqx)(PPh3)(2)](+). TDDFT calculations of oscillator strengths (f = 0.089) and band positions (419 nm) showed close agreement with experiment (f = 0.07, 431 nm). Resonance Raman spectra show the 527 cm(-1) (v(29)) and 1476 cm(-1) (v(75)) modes undergo the largest dimensionless displacement (Delta = 1.5 and 1.1, respectively) following photoexcitation into the MLCT Franck-Condon region. The solvent couples strongly to the MLCT transition and resonance Raman intensity analysis (RRIA) gives a solvent reorganization energy of 3400 cm(-1) for dichloromethane and 2800 cm(-1) for chloroform solutions. A large inner-sphere reorganization of 3430 cm(-1) in dichloromethane solution (3520 cm(-1) in chloroform solution) was found for [Cu(pqx)(PPh3)(2)](+), indicating that the molecule as a whole undergoes significant distortion following MLCT excitation.
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页码:8826 / 8833
页数:8
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共 59 条
[1]  
*ASTM E, 1840 ASTM E, pS1604
[2]   Phosphorescent materials for application to organic light emitting devices [J].
Baldo, MA ;
Thompson, ME ;
Forrest, SR .
PURE AND APPLIED CHEMISTRY, 1999, 71 (11) :2095-2106
[3]   High-efficiency fluorescent organic light-emitting devices using a phosphorescent sensitizer [J].
Baldo, MA ;
Thompson, ME ;
Forrest, SR .
NATURE, 2000, 403 (6771) :750-753
[4]   Highly efficient phosphorescent emission from organic electroluminescent devices [J].
Baldo, MA ;
O'Brien, DF ;
You, Y ;
Shoustikov, A ;
Sibley, S ;
Thompson, ME ;
Forrest, SR .
NATURE, 1998, 395 (6698) :151-154
[5]   Contemporary issues in electron transfer research [J].
Barbara, PF ;
Meyer, TJ ;
Ratner, MA .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (31) :13148-13168
[6]   LEWIS-BASE ADDUCTS OF GROUP-1B METAL(I) COMPOUNDS .20. SYNTHESIS, SPECTROSCOPIC AND STRUCTURAL STUDIES OF ACETONITRILE-SOLVATED TRIPHENYLPHOSPHINE COPPER(I) PERCHLORATE ADDUCTS [J].
BARRON, PF ;
DYASON, JC ;
ENGELHARDT, LM ;
HEALY, PC ;
WHITE, AH .
AUSTRALIAN JOURNAL OF CHEMISTRY, 1985, 38 (02) :261-271
[7]   APPLICATION OF TIME-DEPENDENT RAMAN THEORY TO RAMAN EXCITATION PROFILES OF HEXAMETHYLBENZENE-TETRACYANOETHYLENE ELECTRON-DONOR ACCEPTOR COMPLEX [J].
BRITT, BM ;
MCHALE, JL ;
FRIEDRICH, DM .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (17) :6347-6355
[8]   Synthesis and characterization of phosphorescent cyclometalated platinum complexes [J].
Brooks, J ;
Babayan, Y ;
Lamansky, S ;
Djurovich, PI ;
Tsyba, I ;
Bau, R ;
Thompson, ME .
INORGANIC CHEMISTRY, 2002, 41 (12) :3055-3066
[9]   Resonance Raman and density functional study of the A-band absorption of C5H5[WC≡CPh]O2 [J].
Cheng, YF ;
Phillips, DL ;
He, GZ ;
Che, CM ;
Chi, Y .
CHEMICAL PHYSICS LETTERS, 2001, 338 (4-6) :308-316
[10]   Defining electronic excited states using time-resolved infrared spectroscopy and density functional theory calculations [J].
Dattelbaum, DM ;
Omberg, KM ;
Hay, PJ ;
Gebhart, NL ;
Martin, RL ;
Schoonover, JR ;
Meyer, TJ .
JOURNAL OF PHYSICAL CHEMISTRY A, 2004, 108 (16) :3527-3536