A TIME-RESOLVED INFRARED STUDY OF THE GAS-PHASE REACTIONS OF 1,3-PENTADIENE AND 1,4-PENTADIENE WITH FE(CO)3 AND FE(CO)4

被引:11
作者
GRAVELLE, SJ [1 ]
VANDEBURGT, LJ [1 ]
WEITZ, E [1 ]
机构
[1] NORTHWESTERN UNIV, DEPT CHEM, EVANSTON, IL 60208 USA
关键词
D O I
10.1021/j100122a017
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Time-resolved infrared (TRIR) spectroscopy has been used to study the addition of trans-1,3-pentadiene (1,3-PD) and 1,4-pentadiene (1,4-PD) to Fe(CO)3 in the gas phase. The addition of either diene to Fe(CO)3 initially involves the formation of an excited-state triplet species, [(PD)Fe(CO)3]dagger. This excited-state intermediate can then either relax to form the ground-state singlet product, (eta4-PD)Fe(CO)3, dissociate to regenerate the Fe(CO)3 and PD reactants, or rearrange to form the unsaturated intermediate, (eta2-PD)Fe(CO)3. The rate constant for addition of either diene to Fe(CO)3 in the high-pressure limit is (1.7 +/- 0.2) X 10(14) CM3/(Mol s), which approaches the gas-kinetic cross section for this process. The only significant difference between the reactive behavior of 1,3-PD and 1,4-PD with Fe(CO)3 is that addition of 1,4-PD leads to the formation of a small amount of an isomer of (eta2-1,4-PD)Fe(CO)3. This species is generated from triplet [(PD)Fe(CO)3]t with an activation energy and preexponential factor estimated to be 12 kcal/mol and 4.5 X 10(11) s-1, respectively. It is most likely that this isomer is (eta2:CH-1,4-PD)Fe(CO)3, Which contains an agostic M-H-C bond. The rates for addition of pentadiene to Fe(CO)4 have also been measured and are (7.0 +/- 0.4) X 10(11) and (3.5 +/- 0. 1) X 10(11) CM3/(Mol s) for 1,3-PD and 1,4-PD, respectively. The reaction mechanism for Fe(CO)3 + PD is compared to that for the Cr(CO)4 + PD system, which has been the subject of a prior study. Conclusions for the two systems are (1) neither the Cr(CO)4 + PD nor the Fe(CO)3 + PD mechanism is dominated by effects due to pentadiene conjugation, (2) the Cr(CO)4 mechanism is more influenced by geometric differences between 1,3-PD and 1,4-PD than is Fe(CO)3, and (3) the Cr(CO)4 mechanism occurs on one singlet potential surface whereas the Fe(CO)3 mechanism involves both triplet and singlet potential energy surfaces.
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页码:5272 / 5283
页数:12
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共 39 条
[31]   PENTACARBONYLIRON(0) PHOTOCATALYZED HYDROGENATION AND ISOMERIZATION OF OLEFINS [J].
SCHROEDER, MA ;
WRIGHTON, MS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1976, 98 (02) :551-558
[32]   WAVELENGTH DEPENDENCE OF EXCIMER LASER PHOTOLYSIS OF CR(CO)6 IN THE GAS-PHASE - A STUDY OF THE INFRARED-SPECTROSCOPY AND REACTIONS OF THE CR(CO)5, CR(CO)4, CR(CO)3, CR(CO)2 FRAGMENTS [J].
SEDER, TA ;
CHURCH, SP ;
WEITZ, E .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1986, 108 (16) :4721-4728
[33]   THE WAVELENGTH DEPENDENCE OF EXCIMER LASER PHOTOLYSIS OF FE(CO)5 IN THE GAS-PHASE - TRANSIENT INFRARED-SPECTROSCOPY AND KINETICS OF THE FE(CO)4, FE(CO)3, FE(CO)2 PHOTOFRAGMENTS [J].
SEDER, TA ;
OUDERKIRK, AJ ;
WEITZ, E .
JOURNAL OF CHEMICAL PHYSICS, 1986, 85 (04) :1977-1986
[34]   OLEFIN REARRANGEMENT RESULTING FROM THE GAS-PHASE KRF LASER PHOTOLYSIS OF CR(CO)6 [J].
TUMAS, W ;
GITLIN, B ;
ROSAN, AM ;
YARDLEY, JT .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1982, 104 (01) :55-59
[35]   GAS-PHASE ORGANOMETALLIC KINETICS .2. DISSOCIATIVE SUBSTITUTION KINETICS OF FE(CO)2(C2H4)3 BY TRANSIENT IR ABSORPTION SPECTROMETRY [J].
WEILLER, BH ;
GRANT, ER .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1987, 109 (04) :1051-1055
[36]   GAS-PHASE ORGANOMETALLIC KINETICS - SUBSTITUTION OF CO FOR C2H4 IN FE(CO)3(C2H4)2 [J].
WEILLER, BH ;
MILLER, ME ;
GRANT, ER .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1987, 109 (02) :352-356
[37]   THERMAL-REACTIONS OF RU(CO)3(C2H4)2 WITH ACYCLIC, NONCONJUGATED DIENES AND PHOTOCHEMISTRY OF RU(CO)4(ETA-2-DIENE) COMPLEXES [J].
WUU, YM ;
ZOU, CF ;
WRIGHTON, MS .
INORGANIC CHEMISTRY, 1988, 27 (17) :3039-3044
[38]   PHOTOCHEMICAL FORMATION OF MONONUCLEAR BIS(ETHYLENE) AND TRIS(ETHYLENE) COMPLEXES FROM IRRADIATION OF IRON PENTACARBONYL OR TRIRUTHENIUM DODECARBONYL - SPECIES INVOLVED IN CATALYTIC ALKENE ISOMERIZATION [J].
WUU, YM ;
BENTSEN, JG ;
BRINKLEY, CG ;
WRIGHTON, MS .
INORGANIC CHEMISTRY, 1987, 26 (04) :530-540
[39]   DYNAMICS OF INTERMEDIATES IN THE ALPHA-ELIMINATION AND BETA-ELIMINATION PROCESSES IN CPW(CO)2ME AND CPW(CO)2ET [J].
YANG, GK ;
PETERS, KS ;
VAIDA, V .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1986, 108 (10) :2511-2513