ELECTROCHEMISTRY IN LIQUID SO2 .12. ELECTROCHEMICAL AND PULSE-RADIOLYSIS STUDIES ON OXIDATION OF ZN(BPY)3(2+), CD(BPY)3(2+), AND 2,2'-BIPYRIDINE

被引:14
作者
CHLISTUNOFF, JB [1 ]
BARD, AJ [1 ]
机构
[1] UNIV TEXAS,DEPT CHEM & BIOCHEM,AUSTIN,TX 78712
关键词
D O I
10.1021/ic00068a023
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The electrochemical oxidation of Zn(bpy)32+, Cd(bpy)32+, and 2,2'-bipyridine (bpy) in liquid sulfur dioxide was studied by cyclic voltammetry (CV) and spectroelectrochemical techniques. Both Zn(bpy)32+ and Cd(bpy)32+ are oxidized in three closely spaced one-electron reversible steps. The standard potentials for these processes referenced vs the ferrocenium/ferrocene couple are as follows: Zn, 2.33 (E-degrees-3/2), 2.43 (E-degrees-4/3), and 2.52 V (E-degrees-5/4); Cd, 2.31 (E-degrees-3/2), 2.39 (E-degrees-4/3), and 2.47 V (E-degrees-5/4). Additional multielecton irreversible oxidations were also seen for both complexes at potentials closer to the anodic background limit. The reversible processes were attributed to consecutive oxidations of the three bpy ligands to corresponding radical cations. The blue-colored Zn(bpy)2(bpy.+)3+ was generated in a spectroelectrochemical cell and molar absorptivities (epsilon(391 nm) = 8790, epsilon(378 nm) = 4780, epsilon(762 nm) = 2570 M-1 cm-1) were determined using the generation/decay data. As opposed to the Zn(bpy)2(bpy.+)3+ spectrum, only one UV band centered around 340 nm was found in the transient spectrum of free bpy.+ (lifetime 1.2 mus) generated by electron pulse radiolysis of bpy in dichloromethane. The difference in properties is attributed to coordinated bpy.+ being a pi-type radical while the free bpy.+ is probably a sigma type radical. The Zn(bpy)2(bpy.+)3+ ion dimerizes with a rate constant, k2, of 70 M-1 s-1 at -70-degrees-C. The Cd(bpy)2(bpy.+)3+ ion was less stable.
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页码:3521 / 3527
页数:7
相关论文
共 44 条
[31]  
KOENIG E, 1972, SPECTROCHIM ACTA A, V28, P1393
[32]  
MAIER JP, 1972, DISCUSS FARADAY SOC, V54, P149
[33]   THE CRYSTAL STRUCTURE OF 2,2'-BIPYRIDINE [J].
MERRITT, LL ;
SCHROEDER, ED .
ACTA CRYSTALLOGRAPHICA, 1956, 9 (09) :801-804
[35]   THEORY OF STATIONARY ELECTRODE POLAROGRAPHY - SINGLE SCAN + CYCLIC METHODS APPLIED TO REVERSIBLE IRREVERSIBLE + KINETIC SYSTEMS [J].
NICHOLSON, RS ;
SHAIN, I .
ANALYTICAL CHEMISTRY, 1964, 36 (04) :706-&
[36]   POTENTIAL DEPENDENCE OF THE CONDUCTIVITY OF HIGHLY OXIDIZED POLYTHIOPHENES, POLYPYRROLES, AND POLYANILINE - FINITE WINDOWS OF HIGH CONDUCTIVITY [J].
OFER, D ;
CROOKS, RM ;
WRIGHTON, MS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (22) :7869-7879
[37]   RADICAL CATIONS OF SUBSTITUTED PYRIDINES FORMED BY RADIOLYSIS - AN ELECTRON-SPIN RESONANCE STUDY [J].
RAO, DNR ;
EASTLAND, GW ;
SYMONS, MCR .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1984, 80 :2803-2815
[38]   LIGAND-CENTERED REDOX PROCESSES FOR MNL3, FEL3, AND COL3 COMPLEXES (L = ACETYLACETONATE, 8-QUINOLINATE, PICOLINATE, 2,2'-BIPYRIDYL, 1,10-PHENANTHROLINE) AND FOR THEIR TETRAKIS(2,6-DICHLOROPHENYL)PORPHINATO COMPLEXES [M(POR)] [J].
RICHERT, SA ;
TSANG, PKS ;
SAWYER, DT .
INORGANIC CHEMISTRY, 1989, 28 (12) :2471-2475
[39]   POLAROGRAPHIC STUDIES ON BIPYRIDINE COMPLEXES .1. CORRELATION BETWEEN REDUCTION POTENTIALS OF IRON(II), RUTHENIUM(II) AND OSMIUM(II) COMPLEXES AND THOSE OF FREE LIGANDS [J].
SAJI, T ;
AOYAGUI, S .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1975, 58 (02) :401-410
[40]   ESR AND OPTICAL STUDIES ON THE CATION-RADICAL OF PYRIDINE IN A GAMMA-IRRADIATED RIGID MATRIX AT LOW-TEMPERATURES [J].
SHIDA, T ;
KATO, T .
CHEMICAL PHYSICS LETTERS, 1979, 68 (01) :106-110