REACTION OF H-2 WITH IRHCL2P2 (P = P(I)PR(3) OR P(T)BU2PH) - STEREOELECTRONIC CONTROL OF THE STABILITY OF MOLECULAR H-2 TRANSITION-METAL COMPLEXES

被引:125
作者
ALBINATI, A
BAKHMUTOV, VI
CAULTON, KG
CLOT, E
ECKERT, J
EISENSTEIN, O
GUSEV, DG
GRUSHIN, VV
HAUGER, BE
KLOOSTER, WT
KOETZLE, TF
MCMULLAN, RK
OLOUGHLIN, TJ
PELISSIER, M
RICCI, JS
SIGALAS, MP
VYMENITS, AB
机构
[1] INDIANA UNIV,DEPT CHEM,BLOOMINGTON,IN 47405
[2] RUSSIAN ACAD SCI,INST ORGANOELEMENT CPDS,NMR LAB,MOSCOW,RUSSIA
[3] BROOKHAVEN NATL LAB,DEPT CHEM,UPTON,NY 11973
[4] UNIV PARIS 11,CHIM THEOR LAB,F-91405 ORSAY,FRANCE
[5] UNIV OTTAWA,DEPT CHEM,OTTAWA K1N 6N5,ONTARIO,CANADA
[6] LOS ALAMOS NATL LAB,LOS ALAMOS,NM 87544
[7] UNIV POITIERS,CATALYSE CHIM ORGAN LAB,F-86022 POITIERS,FRANCE
[8] ARISTOTELIAN UNIV SALONIKA,APPL QUANTUM CHEM LAB,SALONIKA,GREECE
关键词
D O I
10.1021/ja00069a032
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
IrHCl2P2 (P = PiPr3) reacts rapidly with H-2 at 25-degrees-C to set up an equilibrium where H-2 binds trans to the original hydride ligand (trans-2). A second slower reaction forms IrH(H2)Cl2P2 (cis-2), where the cis disposition of the chlorides, and also H cis to H-2, was established by neutron diffraction. This molecule (unlike trans-2), shows rapid site exchange between coordinated H and H-2. cis-2 can be induced to lose HCl to form Ir(H)2ClP2 (3). The structure of Ir(H)2Cl(PtBu2Ph)2, an analog of 3, was shown by neutron diffraction to have a planar H2IrCl in a Y shape, with Cl at the base of the Y and a H-Ir-H angle of only 73-degrees. ECP ab initio calculations of IrH2Cl(PH3)2 show that the Y shape with a H-Ir-H angle close to the experimental value has the minimum energy. They also show that the trans-2 isomer of IrH(H2)Cl2(PH3)2 is less stable than the cis-2 isomer by 10.3 kcal/mol. The Ir-H-2 interaction is stronger in cis-2. The rotational barrier has been calculated in the two isomers as 2.3 (trans) and 6.5 (cis) kcal/mol. In agreement with the experimental structure, the H-H bond is found to eclipse preferentially the Ir-H bond in cis-2. The calculations also show that the Ir-H-2 bond dissociation energy is greater in cis-2. It thus appears that the binding ability of a metal fragment not only depends on its ligands but is also linked in a subtle way to its stereochemistry. The J(HD) value for coordinated H-2 in cis-2 is 12 +/- 3 Hz. The implication of this small value and of a T1min(200 MHz) of 38 ms is an H/H distance of 1.07-1.35 angstrom, which compares to the neutron diffraction distance of 1.11(3) angstrom. The Ir-H distances of cis-2 are unprecedented in that the hydride-Ir distance (1.584(13) angstrom) is not shorter than the distances to the H-2 hydrogens (1.537(19) and 1.550(17) angstrom). One of the H-2 hydrogens interacts with chloride of an adjacent molecule to give an infinite hydrogen-bonded polymer. An inelastic neutron scattering spectroscopic study on solid IrHCl2(H2)(PiPr3)2 sets a lower limit on the rotational barrier of the Ir(H2) unit of 2.0 kcal/mol. Ab initio calculations on IrHCl2(H2)(PH3)2 yield a H-H distance in these two isomers of 0.81 and 1.4 angstrom, respectively, showing that the moiety IrHCl2(PH3)2 with chlorides mutually cis is a much stronger reducing agent than that with chlorides trans (and thus H trans to H-2). Crystallographic data: For cis-2 (at 15K), a = 13.008(4) angstrom, b = 11.296 (4) angstrom, c = 16.095(4) angstrom in space group Pna2(1) (Z = 4). For Ir(H)2Cl(PtBu2Ph)2 (at 15K), a = 8.236(2) angstrom, b = 17.024(6) angstrom, c = 20.528(10) angstrom, beta = 96.27(4)degrees in space group P2(1)/c (Z = 4).
引用
收藏
页码:7300 / 7312
页数:13
相关论文
共 80 条
[1]  
ABRAGAM A, 1971, PRINCIPLES NUCL MAGN, pCH8
[2]   HYDRIDE COMPLEXES OF 6-CO-ORDINATE PLATINUM [J].
ANDERSON, DW ;
EBSWORTH, EA ;
RANKIN, DWH .
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS, 1973, (08) :854-858
[3]   PROTONATION OF FEP(CH2CH2CH2PME2)3H-2 WITH ALCOHOLS TO FORM FEP(CH2CH2CH2PME2)3H(ETA-2-H-2)+ [J].
BAMPOS, N ;
FIELD, LD .
INORGANIC CHEMISTRY, 1990, 29 (04) :587-588
[4]   NMR PROPERTIES OF THE COMPLEXES TRANS-[M(ETA-2-H2)(H)(PET2CH2CH2PET2)2]+, M = FE, RU, OS - INTRAMOLECULAR EXCHANGE OF ATOMS BETWEEN ETA-2-DIHYDROGEN AND HYDRIDE LIGANDS [J].
BAUTISTA, M ;
EARL, KA ;
MORRIS, RH ;
SELLA, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1987, 109 (12) :3780-3782
[5]   ESTIMATION OF THE H-H DISTANCES OF ETA-2-DIHYDROGEN LIGANDS IN THE COMPLEXES TRANS-[M(ETA-2-H-2)(H)(PR2CH2CH2PR2)2]+ [M = FE, RU, R = PH - M = OS, R = ET] BY SOLUTION NMR METHODS [J].
BAUTISTA, MT ;
EARL, KA ;
MALTBY, PA ;
MORRIS, RH ;
SCHWEITZER, CT ;
SELLA, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (21) :7031-7036
[6]   NMR-STUDIES OF THE COMPLEXES TRANS-[M(ETA-2-H2)(H)(PH2PCH2CH2PET2)2]X (M=FE,X=BPH4 - M=OS,X=BF4) - EVIDENCE FOR UNEXPECTED SHORTENING OF THE H-H BOND [J].
BAUTISTA, MT ;
EARL, KA ;
MORRIS, RH .
INORGANIC CHEMISTRY, 1988, 27 (07) :1124-1126
[7]   EXTINCTION WITHIN LIMIT OF VALIDITY OF DARWIN TRANSFER EQUATIONS .1. GENERAL FORMALISMS FOR PRIMARY AND SECONDARY EXTINCTION AND THEIR APPLICATION TO SPHERICAL CRYSTALS [J].
BECKER, PJ ;
COPPENS, P .
ACTA CRYSTALLOGRAPHICA SECTION A, 1974, A 30 (MAR) :129-147
[8]   PHOTOCHEMICAL REACTIVITY OF 2[IR(III)HCL2(PPRI3)2].H-2 - FORMATION OF MONOHYDRIDO ISOMERS OF IR(III) AND EVIDENCE OF PHOTOINDUCED OXIDATIVE ADDITION OF H-2 TO IR(III) [J].
BERGAMINI, P ;
SOSTERO, S ;
TRAVERSO, O ;
MURA, P ;
SEGRE, A .
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS, 1989, (12) :2367-2370
[9]   LOW-TEMPERATURE NEUTRON-DIFFRACTION STUDY OF BIS(TRI-PARA-TOLYLPHOSPHINE)HEPTAHYDRIDORHENIUM(VII), [REH7(P(C6H4CH3-4)3)2] - A POLYHYDRIDE COMPLEX WITH A SHORT H=H CONTACT THAT MODELS AN INTERMEDIATE STAGE IN THE OXIDATIVE ADDITION OF DIHYDROGEN AT TRANSITION-METAL CENTERS [J].
BRAMMER, L ;
HOWARD, JAK ;
JOHNSON, O ;
KOETZLE, TF ;
SPENCER, JL ;
STRINGER, AM .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1991, (04) :241-243
[10]  
Brauer G., 1963, HDB PREPARATIVE INOR, V1