1 |
Characterization of products from Fe(CO)(5) seeded CO diffusion flame Kim K, Kim HK Energy, 148, 802, 2018 |
2 |
Preparation of Fe/Al Composites with Enhanced Thermal Properties by Chemical Liquid Deposition Methods Du R, Hu ML, Xie CS, Zeng DW Propellants Explosives Pyrotechnics, 37(5), 597, 2012 |
3 |
Numerical study of the inhibition of premixed and diffusion flames by iron pentacarbonyl Rumminger MD, Reinelt D, Babushok V, Linteris GT Combustion and Flame, 116(1-2), 207, 1999 |
4 |
Fe(N-2)(n) (n=1-5): Structure, bonding, and vibrations from density functional theory Duarte HA, Salahub DR, Haslett T, Moskovits M Inorganic Chemistry, 38(17), 3895, 1999 |
5 |
Kinetic study of carbonylation of alpha-bromo-p-xylene with iron pentacarbonyl by phase-transfer catalysis Wu HS, Tan WH Journal of Catalysis, 178(2), 604, 1998 |
6 |
Nonstatistical bond breaking in the multiphoton ionization/dissociation of [Fe(CO)(5)](m)Ar-n clusters Bililign S, Feigerle CS, Miller JC, Velegrakis M Journal of Chemical Physics, 108(15), 6312, 1998 |
7 |
Solid-state nuclear magnetic resonance spectroscopic and quantum chemical investigation of C-13 and O-17 chemical shift tensors, O-17 nuclear quadrupole coupling tensors, and bonding in transition-metal carbonyl complexes and clusters Salzmann R, Kaupp M, McMahon MT, Oldfield E Journal of the American Chemical Society, 120(19), 4771, 1998 |
8 |
Millimeter-Wave Spectroscopy of the Iron Carbonyl Radical (FeCo) Tanaka K, Shirasaka M, Tanaka T Journal of Chemical Physics, 106(17), 6820, 1997 |
9 |
Oxygen-Transfer from Organoelement Oxides to Carbon-Monoxide Catalyzed by Transition-Metal Carbonyls Kelly AM, Rosini GP, Goldman AS Journal of the American Chemical Society, 119(26), 6115, 1997 |
10 |
Phase-Transfer Catalysis of the Reaction of Alpha-Bromo-P-Xylene with Iron Carbonyls Wu HS, Tan WH Journal of Chemical Technology and Biotechnology, 67(4), 381, 1996 |