Excited state properties of Rh2(O2CCH3)4:: Solution photochemistry and photoinitiated DNA cleavage

被引:14
作者
Bradley, PM [1 ]
Fu, PKL [1 ]
Turro, C [1 ]
机构
[1] Ohio State Univ, Dept Chem, Columbus, OH 43210 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
D O I
10.1080/02603590108050878
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The photophysical properties of Rh-2(O2CCH3)(4)(L)(2) (L = CH3OH, THF = tetra-hydrofuran, PPh3 = triphenylphosphine, py = pyridine) were explored upon excitation with visible light. All the complexes exhibit a long-lived transient absorption signal (tau = 3.5 - 5.0 mus) assigned as an electronic excited state of each molecule, An optical transition at similar to 760 nm is observed in the spectra of the transients, whose position is relatively independent of axial ligand, No emission from the Rh-2(O2CCH3)(4)(L)(2) (L = CH3OH, THF, PPh3, py) systems was observed at room temperature or at 77 K, but energy transfer from excited Rh-2(O2CCH3)(4)(PPh3)(2) to tetracene and perylene takes place to form the (3)pi pi (*) excited state of each acceptor. Electron transfer from Rh-*(2)(O2CCH3)(4)(PPh3)(2) to dimethyl viologen (MV2+) and chloro-p-benzoquinone (Cl-BQ) takes place with quenching rate constants (k(q)) of 8.0 x 10(6) M-1 s(-1) and 1.2 x 10(6) M-1 s(-1) in methanol, respectively. A k(q) value of 2 x 10(8) M-1 s(-1) was measured for the quenching of the excited state of Rh-2(O2CCH3)(4)(PPh3)(2) by O-2 in methanol. The results of the energy and electron transfer experiments are consistent with the production of an excited state of Rh-2(O2CCH3)(4)(PPh3)(2) with energy, E-00, between 1.34 eV and 1.77 eV. The excited state of Rh-2(O2CCH3)(4) is not able to undergo hydrogen abstraction chemistry. However, the photoproduced one-electron oxidized complex, Rh-2(O2CCH3)(4)(+), is able to convert isopropanol to acetone and to efficiently cleave DNA with lambda (irr) less than or equal to 610 nm.
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页码:393 / 426
页数:34
相关论文
共 145 条
[1]  
Allen CM, 1999, PHOTOCHEM PHOTOBIOL, V70, P512
[2]   [PT2(MU-CH3CO2-O,O')4(H2O)2](CLO4)2, A PLATINUM(III) DIMERIC CATION WITH A VERY SHORT, COMPRESSED, METAL METAL BOND [J].
APPLETON, TG ;
BYRIEL, KA ;
HALL, JR ;
KENNARD, CHL ;
MATHIESON, MT .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (18) :7305-7307
[3]   AXIAL-LIGAND SUBSTITUTION-REACTIONS OF DIRHODIUM(II) TETRAACETATE WITH PHOSPHINES AND PHOSPHITES IN ACETONITRILE [J].
AQUINO, MAS ;
MACARTNEY, DH .
INORGANIC CHEMISTRY, 1987, 26 (16) :2696-2699
[4]   LIGAND SUBSTITUTION-REACTIONS OF DIRHODIUM(II) TETRAACETATE WITH WATER-SOLUBLE PHOSPHINES [J].
AQUINO, MAS ;
MACARTNEY, DH .
INORGANIC CHEMISTRY, 1988, 27 (16) :2868-2872
[5]   Evidence for binding of dirhodium bis-acetate units to adjacent GG and AA sites on single-stranded DNA [J].
Asara, JM ;
Hess, JS ;
Lozada, E ;
Dunbar, KR ;
Allison, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (01) :8-13
[6]  
Bard AJ, 1978, ENCY ELECTROCHEMISTR, V12
[7]  
BEAR JL, 1975, CANCER CHEMOTH REP 1, V59, P611
[8]   Studies of antibacterial activity of binuclear rhodium(II) complexes with heterocyclic nitrogen ligands [J].
Bien, M ;
Pruchnik, FP ;
Seniuk, A ;
Lachowicz, TM ;
Jakimowicz, P .
JOURNAL OF INORGANIC BIOCHEMISTRY, 1999, 73 (1-2) :49-55
[9]   Solution structure of the head-to-head dimer of calicheamicin oligosaccharide domain and d(CGTAGGATATCCTACG)(2) [J].
Bifulco, G ;
Galeone, A ;
GomezPaloma, L ;
Nicolaou, KC ;
Chazin, WJ .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1996, 118 (37) :8817-8824
[10]   Photochemistry and reaction intermediates of the bimetallic Group VIII cyclopentadienyl metal carbonyl compounds, (η5-C5H5)2M2(CO)4 and their derivatives [J].
Bitterwolf, TE .
COORDINATION CHEMISTRY REVIEWS, 2000, 206 :419-450