A FURTHER STUDY OF THE REACTION OF METHYLGERMANE WITH [CO2(CO)8], AND SOME INTERCONVERSIONS OF THE PRODUCTS - CRYSTAL AND MOLECULAR-STRUCTURES OF [CO2(MU-GE(ME)CO(CO)4)(CO)7] AND [CO4(MU-4-GEME)2(MU-GE(ME)CO(CO)4)(CO)10], AND EDGE-BRIDGED SQUARE-BIPYRAMIDAL GE2CO4 SPECIES

被引:10
作者
ANEMA, SG [1 ]
LEE, SK [1 ]
MACKAY, KM [1 ]
NICHOLSON, BK [1 ]
SERVICE, M [1 ]
机构
[1] UNIV WAIKATO,SCH SCI,HAMILTON,NEW ZEALAND
来源
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS | 1991年 / 05期
关键词
D O I
10.1039/dt9910001201
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The compound [CoH(CO)4] has been established as a stoichiometric product in the fast reaction of GeMeH3 with [Co2(CO)8] to form [Co2{mu-Ge(Me)Co(CO)4}(CO)7] 1. A prolonged reaction with an excess of GeMeH3 yields [Co2{mu-Ge(Me)Co(CO)4}2(CO)6] 2, accompanied by a hydride species [Co2(GeMeH)(CO)x](x = 7 or 8) when the excess is large. Heating this latter mixture yields [Co4(mu-4-GeMe)2{mu-Ge(Me)Co(CO)4}(CO)10] 3, shown by X-ray crystallography to contain the Co4(mu-4-GeMe)2 square-bipyramid core, edge-bridged by a mu-Ge(Me)[Co(CO)4] unit. The bridged Co atoms carry two terminal CO groups, and the non-bridged ones, three. The crystal structures of compound 1 [triclinic, space group P1BAR, Z = 2, a = 8.626(6), b = 8.656(5), c = 13.381(9) angstrom, alpha = 88.25(5), beta = 84.72(5), gamma = 66.26(4)-degrees, R = 0.0649 for 1614 reflections with I > 3-sigma-(I)] and 3 [monoclinic, space group C2/m, Z = 4, a = 12.330(6), b = 12.302(3), c = 18.815(9) angstrom, beta = 92.93(3)-degrees, R = 0.0344 for 1136 reflections with I > 3-sigma-(I)] have been determined and are compared with that of 2, and spectroscopic properties are discussed, including heavy-atom vibrations of 1.
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页码:1201 / 1208
页数:8
相关论文
共 30 条
[21]  
GRAHAM BWL, 1973, THESIS U WAIKATO
[22]   PHOTOCHEMISTRY OF SOME BIS(METAL CARBONYL) GERMANES AND (METAL-CARBONYL) CHLOROGERMANES - FORMATION OF GERMANIUM-BRIDGED METAL-METAL BONDS [J].
JOB, RC ;
CURTIS, MD .
INORGANIC CHEMISTRY, 1973, 12 (11) :2514-2519
[23]   REACTIONS OF HOMOBINUCLEAR AND HETEROBINUCLEAR COBALT CARBONYLS WITH METAL-CARBONYL HYDRIDES [J].
KOVACS, I ;
SISAK, A ;
UNGVARY, F ;
MARKO, L .
ORGANOMETALLICS, 1989, 8 (08) :1873-1877
[24]   EXPERIMENTAL CHARGE-DENSITY STUDY OF DICOBALT OCTACARBONYL-STAR AND COMPARISON WITH THEORY [J].
LEUNG, PC ;
COPPENS, P .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1983, 39 (OCT) :535-542
[25]   APPLICATION OF RAMAN-SPECTROSCOPY TO BRIDGED-NONBRIDGED EQUILIBRIA FOR POLYNUCLEAR METAL-CARBONYL DERIVATIVES - METAL-METAL STRETCHING FREQUENCIES OF CO2(CO)8, FE2(CO)82-, CO4(CO)12, AND [(ETA5-C5H5)RU(CO)2]2 [J].
ONAKA, S ;
SHRIVER, DF .
INORGANIC CHEMISTRY, 1976, 15 (04) :915-918
[26]   SITE SELECTIVITY IN CARBONYL REDUCTION OF MIXED FE2CO2 CLUSTERS - FORMYL INTERMEDIATES IN THE FORMATION OF HYDRIDO DERIVATIVES [J].
RICHMOND, MG ;
KOCHI, JK .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1987, 323 (02) :219-232
[27]  
SHELDRICK GM, 1976, SHELX PROGRAM CRYSTA
[28]   KINETICS AND MECHANISM OF THE SILYLATION OF DICOBALT OCTACARBONYL BY TRIETHYLSILANE - EFFECT OF LEWIS-BASES ON THE REACTION [J].
SISAK, A ;
UNGVARY, F ;
MARKO, L .
ORGANOMETALLICS, 1986, 5 (05) :1019-1023
[29]   CRYSTAL STRUCTURE OF DICOBALT OCTACARBONYL [J].
SUMNER, GG ;
KLUG, HP ;
ALEXANDER, LE .
ACTA CRYSTALLOGRAPHICA, 1964, 17 (06) :732-&
[30]  
UNGAVARY F, 1980, J ORGANOMET CHEM, V193, P383