Synthesis reactivity and electrochemical properties of substituted cyclopentadienyl cobalt (III) complexes

Chinese Journal of Chemistry - Tập 18 Số 5 - Trang 733-739 - 2000
Xiu‐Feng Hou1, Zhen Pan1, Youfeng Xu1, Ruifang Cai1, Zhen Huang1
1Department of Chemistry, Fudan University, Shanghai 200433, China

Tóm tắt

AbstractCyclopentadienyl cobalt complexes (η5‐C5H4R) CoLI2 [L = CO,R=‐COOCH2CH=CH2 (3); L=PPh3, R=‐COOCH2‐CH=CH2 (6); L=P(p‐C6H4O3)3, R = ‐COOC(CH3) = CH2 (7), ‐COOCH2C6H5 (8), ‐COOCH2CH = CH2 (9)] were prepared and characterized by elemental analyses, 1H NMR, ER and UV‐vis spectra. The reaction of complexes (η5‐C5H4R)CoLI2 [L= CO, R= ‐COOC(CH3) = CH2 (1), ‐COOCH2C6H5(2); L=PPh3, R=‐COOC (CH3) = CH2 (4), ‐COOCH2C6H5 (5)] with Na‐Hg resulted in the formation of their corresponding substituted cobaltocene (η5‐C5H4R)2 Co[R=‐COOC(CH3) = CH2 (10), ‐COOCH2C6H5 (11)]. The electrochemical properties of these complexes 1–11 were studied by cyclic voltammetry. It was found that as the ligand (L) of the cobalt (III) complexes changing from CO to PPh3 and P(p‐tolyl)3, their oxidation potentials increased gradually. The cyclic voltammetry of α,α′‐substituted cobaltocene showed reversible oxidation of one electron process.

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Tài liệu tham khảo

10.1016/0022-1902(55)80053-X

Wei X.;Hu Y.;Li T.;Hu H. J. Chan. Soc. Perkin Trans 2487(1993).

10.1021/jo00006a038

10.1246/bcsj.67.879

10.1021/ja00202a040

10.1021/om00047a012

10.1021/om00004a033

10.1016/S0065-3055(08)60282-8

Klang J. A., 1988, Organomentallics, 7, 153

10.1021/ic50219a002

Slawin A. M. Z.;Williams D. J.;Ramsden J. A.;White C. J. Chem. Soc. Dalton Trans. 2491(1988).

10.1021/ja00333a033

10.1021/ic50028a018

10.1016/S0022-328X(00)89986-6

10.1002/cber.19891220908

10.1021/om00097a014

10.1002/anie.198502481

10.1016/0022-328X(85)87147-3

10.1080/00945719809351693

10.1351/pac198456040461

10.1021/ic50035a020

10.1021/ic50167a034

10.1021/ic50035a020

10.1002/cber.19901230809

10.1021/ja00417a052

10.1016/S0022-328X(00)84785-3

Pang Z.;Hou X.;Huartg Z.;G R.;Ruan R. Synth. React. Inorg. Met.‐Org. Chem. in press.

10.1021/om00050a051

10.1002/anie.198006401

10.1021/ja00371a017