In‐situ‐NMR‐Untersuchungen photokatalysierter Hydrierungen mit Parawasserstoff in Gegenwart von Carbonylmetallverbindungen der 6. Gruppe
暂无分享,去创建一个
[1] J. Bargon,et al. Nuclear singlet/triplet mixing during hydrogenations with parahydrogen: an in situ NMR method to investigate catalytic reaction mechanisms and their kinetics. 2. Homogeneous hydrogenation of 1,4-dihydro-1,4-epoxynaphthalene using different rhodium catalysts , 1993 .
[2] S. Duckett,et al. Observation of H2 oxidative addition to chlorocarbonylbis(triphenylphosphine)rhodium(I) using parahydrogen induced polarization , 1993 .
[3] J. Bargon,et al. Nuclear magnetic resonance studies of homogeneous catalysis using parahydrogen: Analysis of nuclear singlet–triplet mixing as a diagnostic tool to characterize intermediates , 1993 .
[4] J. Bargon,et al. High-pressure NMR probes for the in situ investigation of gas/liquid reactions , 1992 .
[5] J. Bargon,et al. Ortho- and Parahydrogen Induced Nuclear Spin Polarization* , 1992 .
[6] E. Kochanski,et al. Photoprocesses in transition metal complexes, biosystems, and other molecules : experiment and theory , 1992 .
[7] K. Schaffner,et al. mer-[Cr(CO)3(η4-norbornadiene)(η2-ethene)]: A Key Compound in Understanding the Mechanism of the Photocatalytic Diene Hydrogenation with Chromium Carbonyl Complexes †‡ , 1991 .
[8] K. Schaffner,et al. mer-[Cr-(CO)3(η4-norbornadien)(η2-ethen)] : eine Schlüsselverbindung zum mechanistischen Verständnis der photokatalytischen Dien-Hydrierung mit Carbonylchrom-Komplexen , 1991 .
[9] R. Eisenberg. Parahydrogen-induced polarization: a new spin on reactions with molecular hydrogen , 1991 .
[10] Charles L. Brooks,et al. A theoretical approach to drug design. 1. Relative solvation thermodynamics for the antibacterial compound trimethoprim and ethyl derivatives substituted at the 3', 4', and 5' positions , 1990 .
[11] S. A. Jackson,et al. Infrared spectroscopic studies on the photocatalytic hydrogenation of norbornadiene by Group 6 metal carbonyls. 1. The role of H2 and the characterization of nonclassical dihydrogen complexes, (.eta.4-norbornadiene)M(CO)3(.eta.2-H2) , 1990 .
[12] S. A. Jackson,et al. Infrared spectroscopic studies on the photocatalytic hydrogenation of norbornadiene by Group 6 metal carbonyls. 2. The role of the diene and the characterization of (.eta.4-norbornadiene)(.eta.2-norbornadiene)M(CO)3 complexes , 1990 .
[13] J. Bargon,et al. NMR Study of Nuclear Spin Polarization during Chemical Reactions with Ortho Hydrogen , 1990 .
[14] J. Bargon,et al. Kernspinpolarisation während chemischer Reaktionen mit Orthowasserstoff, NMR-spektroskopisch untersucht , 1990 .
[15] J. Bargon,et al. NMR-detection of intermediates during homogeneous hydrogenation of dienes using parahydrogen , 1990 .
[16] R. Eisenberg,et al. Para-hydrogen-induced polarization in rhodium complex-catalyzed hydrogenation reactions , 1989 .
[17] Richard Eisenberg,et al. Para hydrogen induced polarization in hydrogenation reactions , 1987 .
[18] Daniel P. Weitekamp,et al. Parahydrogen and synthesis allow dramatically enhanced nuclear alignment , 1987 .
[19] Bowers,et al. Transformation of symmetrization order to nuclear-spin magnetization by chemical reaction and nuclear magnetic resonance. , 1986, Physical review letters.
[20] R. J. Abraham,et al. Substituent chemical shifts in NMR. 1—Proton resonance spectra and geometries of norbornene, norbornane and adamantane , 1985 .
[21] D. Steinmetz,et al. Photocatalysis at elevated pressure: The chromium hexacarbonyl-catalyzed hydrogenation of norbornadiene , 1979 .
[22] D. Darensbourg,et al. Photochemical Substitution Reactions of Group 6B Metal Tetracarbonyl Norbornadiene Complexes with 13CO, Kinetics of subsequent Thermal Rearrangements in the Stereospecifically Labeled Species, and Relationship of These Results to the Photo‐induced Hydrogenation Process , 1977 .