STRUCTURE AND ELECTROCHEMISTRY OF FERROCENYLOLIGOSILANES - ALPHA,OMEGA-BIS(FERROCENYL)OLIGOSILANES AND ALPHA,OMEGA-(1,1'-FERROCENEDIYL)OLIGOSILANES

被引:105
作者
DEMENTEV, VV
CERVANTESLEE, F
PARKANYI, L
SHARMA, H
PANNELL, KH
NGUYEN, MT
DIAZ, A
机构
[1] UNIV TEXAS,DEPT CHEM,EL PASO,TX 79968
[2] IBM CORP,ALMADEN RES CTR K41803,SAN JOSE,CA 95120
[3] HUNGARIAN ACAD SCI,CENT RES INST CHEM,H-1525 BUDAPEST,HUNGARY
关键词
D O I
10.1021/om00029a067
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The structures and electrochemical properties of 1,2-bis(ferrocenyl)-1,1,2,2-tetramethyldisilane (Fc-(SiMe2)nFc, n = 2, Ib) and (1,1'-ferrocenediyl)tetramethyldisilane ((C5H4)2(SiMe2)nFe, n = 2, IIb), a ferrocenophane, are reported together with the electrochemical behavior of their analogs (n = 1 (a), 3 (c)). Complex Ib exhibited a Si-Si bond length of 2.340(2) angstrom and two distinctive reversible redox processes (E(ox) = 0.56 and 0.67 V, E(red) = 0.50 and 0.61 V). Complex IIb exhibited an elongated Si-Si bond length of 2.351(1) angstrom and an elongated C(cyciopentadienyl)-Si bond length compared to Ib (1.881(3) versus 1.862(4) angstrom). These bond length elongations result in minimal cyclopentadienyl dihedral angle strain, 4.3-degrees, in IIb. Electrochemically IIb exhibited a single oxidation process (E(ox) = 0.67 V, E(red) = 0.59 V). The ferrocenophane redox behavior disappeared after a few cycles because of decomposition. Themonosilyl-bridged ferrocenophane IIa underwent decomposition upon electrochemical oxidation, while (1,1'-ferrocenediyl)heptamethyltrisilane (IIc) exhibited a completely reversible oxidation process. This trend reflects the capacity of the three bridges, Si, Si2 and Si3, to incorporate the increase in Fe-cyclopentadienyl ring distance upon oxidation. Electrochemical investigation of the alpha,omega-bis-(ferrocenyl) complexes Ia-c, and complexes with n = 0 (biferrocene) and n = 6 (If), showed that the two redox systems are most separated when the two Fe atoms are adjacent (n = 0) and progressively become closer as the inter-ferrocene distance increases, until at n = 6 only a single process is observed. Complexes IIb,c did not undergo simple linear polymerization at temperatures below 350-degrees-C, and above this temperature cross-linking polymerization occurred to produce insoluble materials. Both Ib and IIb undergo Si-Si bond cleavage upon photolysis in MeOH to produce the methoxysilane derivatives, and in the case of IIb the major product (>95%) was (1,1'-ferrocenediyl)tetramethyldisiloxane.
引用
收藏
页码:1983 / 1987
页数:5
相关论文
共 25 条
[1]   CRYSTAL-STRUCTURE AND MOLECULAR-GEOMETRY OF [(ETA-5-C5H5)2FE]2AS4CL10O2, THE FERROCENIUM SALT OF A COMPLEX OXYCHLOROARSENATE(III) COUNTERION [J].
CHURCHILL, MR ;
LANDERS, AG ;
RHEINGOLD, AL .
INORGANIC CHEMISTRY, 1981, 20 (03) :849-853
[2]  
DEMENTEV VV, 1992, 25 ORG S LOS ANG
[3]  
DEMENTEV VV, UNPUB
[4]   ELECTROCHEMISTRY OF POLYSILANES WITH BOUND FERROCENE [J].
DIAZ, A ;
SEYMOUR, M ;
PANNELL, KH ;
ROZELL, JM .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1990, 137 (02) :503-506
[5]   DERIVATIZATION OF SURFACES VIA REACTION OF STRAINED SILICON-CARBON BONDS - CHARACTERIZATION BY PHOTOACOUSTIC-SPECTROSCOPY [J].
FISCHER, AB ;
KINNEY, JB ;
STALEY, RH ;
WRIGHTON, MS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1979, 101 (22) :6501-6506
[6]   RING-OPENING POLYMERIZATION OF STRAINED, RING-TILTED FERROCENOPHANES - A ROUTE TO HIGH-MOLECULAR-WEIGHT POLY(FERROCENYLSILANES) [J].
FOUCHER, DA ;
TANG, BZ ;
MANNERS, I .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (15) :6246-6248
[7]   BRIDGED FERROCENES .8. POLAROGRAPHIC HALF-WAVE POTENTIALS OF FERROCENOPHANES AND RELATED COMPOUNDS [J].
GORTON, JE ;
LENTZNER, HL ;
WATTS, WE .
TETRAHEDRON, 1971, 27 (18) :4353-&
[8]  
KIMELFELAPOD YM, 1973, J MOL STRUCT, V19, P239
[9]  
KUMADA M, 1965, TETRAHEDRON LETT, P83
[10]   PREPARATION OF ORGANOSILYL-SUBSTITUTED AND ORGANOGERMYL-SUBSTITUTED FERROCENES [J].
KUMADA, M ;
MIMURA, K ;
KONDO, T ;
KONDO, M ;
YAMAMOTO, K ;
IKEDA, S ;
ISHIKAWA, M .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1972, 43 (02) :293-&