Refereed Journal Articles

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Refereed Journal Articles (1998-2009)
1.
A general method for determining the role of spectroscopically observed species in reaction
mechanisms: Analysis of coverage transients (ACT)
T. Gott and S. T. Oyama
J. Catal. 2009, 263, 359–371.
2.
Transition metal phosphide hydroprocessing catalysts: A review
S. T. Oyama, T. Gott, H. Zhao, Y.-K. Lee
Catal. Today, 2009, 143, 94-107.
3.
An Operability Level Coefficient (OLC) as a Useful Tool for Correlating the Performance of
Membrane Reactors
S. Ted Oyama, Hankwon Lim
Chem. Eng. Sci. 2009, 151, 351-358.
4.
The boundary between simple and complex descriptions of membrane reactors:
The transition between 1-D and 2-D analysis
S. T. Oyama, P. Hacarlioglu
J. Membr. Sci 2009, 337, 188-199.
5.
Effect of composition and promoters in Au/TS-1 catalysts for direct propylene epoxidation
using H2 and O2
J. Lu, X. Zhang, J. J. Bravo-Suárez, T. Fujitani, S. T. Oyama
Catal. Today, 2009, 147, 186–195.
Marc Ledoux Edition
6.
Scanning Tunnelling Microscopy and Photoemission Electron Microscopy Studies on Single
Crystal Ni2P Surfaces
Shushi Suzuki, Golam Md. Moula, Tsuyoshi Miyamoto, Yuta Nakagawa, Kumiko Kinoshita,
Kiyotaka Asakura, S. Ted Oyama, Shigeki Ohtani
J. Nanosci. Nanotech. 2009, 9, 195-201.
7.
In Situ FTIR and XANES Studies of Thiophene Hydrodesulfurization on Ni2P/MCM-41
S. T. Oyama, T. Gott, K. Asakura, S. Takakusagi, K. Miyazaki, Y. Koike, K. K. Bando
J. Catal., 2009, Accepted
8.
Enhanced reactivity of direct propylene epoxidation with H2 and O2 over Ge-modified
Au/TS-1 catalysts
Tong Liu, Pelin Hacarlioglu, S. Ted Oyama, Meng-Fei Luo , Xiao-Rong Pan, Ji-Qing Lu
J. Catal. 2009, Accepted
9.
Permeation Properties and Hydrothermal Stability of Silica–Titania Membranes Supported on
Porous Alumina Substrates
Yunfeng Gu, S. Ted Oyama
J. Membr. Sci. 2009, Accepted
10. Transient Technique for Identification of True Reaction Intermediates: Hydroperoxide Species
in Propylene Epoxidation on Gold/Titanosilicate Catalysts by X-ray Absorption Fine Structure
Spectroscopy
J. J. Bravo-Suárez, K. K. Bando, J. Lu, M. Haruta, T. Fujitani, S. T. Oyama
J. Phys. Chem., 2008, 112, 1115-1123.
11. Activation Energies for Permeation of Hydrogen and Helium Through Silica Membranes: An Ab
1
Initio Calculation Study
P. Hacarlioglu, D. Lee, J. G. Gibbs, S. T. Oyama
J. Membr. Sci. 2008, 313, 278-283
12. The Active Site of Nickel Phosphide Catalysts for the Hydrodesulfurization of 4,6-DMDBT
S. T. Oyama, Y.-K. Lee
J. Catal. 2008, 258, 393-400.
13. Surface-Initiated Gas-Phase Epoxidation of Propylene with Molecular Oxygen by SilicaSupported Molybdenum Oxide: Effects of Addition of C3H8 or NO and Reactor Design
Z. Song, N. Mimura, S. Tsubota, T. Fujitani, S. T. Oyama
Catal. Lett., 2008, 121, 33-38.
14. Hydrothermally-Stable Silica-Alumina Composite Membranes for Hydrogen Separation
Y. Gu, P. Hacarlioglu, S. T. Oyama
J. Membr. Sci., 2008, 310, 28-37.
15. Design of a high-temperature and high-pressure liquid flow cell for x-ray absorption fine
structure measurements under catalytic reaction conditions
T. Kawai, W. J. Chun, K. Asakura, Y. Koike, M. Nomura, K. K. Bando, S. T. Oyama, and H. Sumiya,
Rev. Sci. Instrum 2008 79, 014101-1 – 014101-6.
16. Oxidation of Propane to Propylene Oxide on Gold Catalysts
J. J. Bravo-Suárez, K. K. Bando, J. Lu, T. Fujitani, S. T. Oyama
J. Catal. 2008, 255, 114-126.
17. Mechanistic Study of Propane Selective Oxidation with H2 and O2 on Au/TS-1
J. J. Bravo-Suárez, K. K. Bando, T. Fujitani, S. T. Oyama
J. Catal. 2008, 257, 32-42.
18. Propane Reacts with O2 and H2 on TS-1 Supported Gold to Form Oxygenates
J. J. Bravo-Suárez, K. K. Bando, T. Fujitani, S. T. Oyama
Chem. Commun. 2008, 28, 3272-3274.
19. Epoxidation of Propylene with H2 and O2 in the Explosive Regime in a Packed-Bed Catalytic
Membrane Reactor
S. T.Oyama, X. Zhang, J. Lu, Y. Gu, T. Fujitani
J. Catal. 2008, Priority Communication, 257, 1-4.
20. A scanning tunneling microscopy observation of (root 3 x root 3) R30 degrees reconstructed
Ni2P(0001)
K. Kinoshita, G. H. Simon, T. Konig, M. Heyde, H. J. Freund, Y. Nakagawa, S. T. Oyama, S.
Ohtani, K. Asakura
Jap. J. Appl. Phys. 2008, 47, 6088-6091.
21. High Molecular Permeance in a Pore-Less Ceramic Membrane
Y. Gu, S. T. Oyama
Adv. Mater. 2007, 19, 1636-1640.
22. Kinetic Study of Propylene Epoxidation With H2 and O2 over a Gold/Mesoporous Titanosilicate
Catalyst
J. J. Bravo-Suárez, J. Lu, C. G. Dallos, T. Fujitani, S. T. Oyama
J. Phys. Chem. 2007, 111, 17427-17436
23. Ultra-Thin, Hydrogen-Selective Silica Membranes Deposited on Alumina Graded Structures
2
Prepared from Size-Controlled Boehmite Sols
Y. Gu, S. T. Oyama
J. Membr. Sci. 2007, 306, 216-227
24. Kinetics of Propylene Epoxidation Using H2 and O2 over a Gold/Mesoporous Titanosilicate
Catalyst
J. Lu, X. Zhang, J. J. Bravo-Suárez, S. Tsubota, J. Gaudet, S. T. Oyama
Catal. Today 2007, 123, 189-197.
25. Active Phase of a Nickel Phosphide (Ni2P) Catalyst Supported on KUSY Zeolite for the
Hydrodesulfurization of 4,6-DMDBT
Yong-Kul Lee, Y. Shu, S. Ted Oyama
Appl. Catal. 2007, 322, 191-204.
26. Preparation of Silica-Supported Nickel Molybdenum Phosphides by Temperature-Programmed
Reduction Technique
S.-Y. Lee, Y.-K. Lee, S. T. Oyama, S.-H. Lee, H.-C. Woo
Solid State Phenom. 2007, 124-126, 1765-1768.
27. Direct Propylene Epoxidation over Barium Promoted Au/Ti-TUD Catalysts with H2 and O2:
Effect of Au Particle Size
J. Lu, X. Zhang, J. J. Bravo-Suárez, K. K. Bando, T. Fujitani, S. T. Oyama
J. Catal. 2007, 250, 350-359
28. Gas-phase Epoxidation Of Propylene Through Radicals Generated By Silica-Supported
Molybdenum Oxide
Z. Song, N. Mimura, J-J. Bravo-Suárez, T. Akita, S. Tsubota, S. T. Oyama
Appl. Catal. A 2007, 316, 142-151.
29. M.G. Moula, S. Suzuki, W.J. Chun, S.T. Oyama, K. Asakura, S. Otani, Surface Structures of Ni 2P
(0001) - Scanning Tunneling Microscopy (STM) and Low-energy Electron Diffraction (LEED)
Characterizations”, Surf. Interface Anal. 2006, 38, 1611-1614.
30. Studies of the Methane Steam Reforming Reaction at High Pressure in a Ceramic Membrane
Reactor
P. Hacarlioglu, Y. Gu, S. T. Oyama
J. Nat. Gas Chem. 2006, 15, 73-81.
31. Production of Propene Oxide from only Propene and Oxygen by a Surface-Initiated
Homogeneous Radical Chain Reaction using Ti-oxide Radical Generator
N. Mimura*, S. Tsubota, K. Murata, K. K. Bando, M. Haruta, S. T. Oyama
Catal. Lett. 2006, 110, 47-52.
32. Oxidative Dehydrogenation of Ethane over Cr/ZSM-5 Catalysts Using CO2 as an Oxidant
N. Mimura, M. Okamoto, H. Yamashita, S. T. Oyama, K. Murata
J. Phys. Chem. B 2006, 110, 21764-21770.
33. EXAFS Measurements of a Working Catalyst in the Liquid Phase: An In Situ Study of a Ni 2P
Hydrodesulfurization Catalyst
T. Kawai, K. K. Bando, Y.-K. Lee, S. T. Oyama, W. J. Chun, K. Asakura
J. Catal. 2006, 241, 20-24, Priority Communication.
34. Bifunctional Nature of a SiO2-Supported Ni2P Catalyst for Hydrotreating: EXAFS and FTIR
Studies Y.-K. Lee and S. T. Oyama
J. Catal. 2006, 239, 376-389.
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35. Production of Propene Oxide by a Homogeneous Chain Reaction Initiated by Surface Radical
Generation
N. Mimura, Z. Song, S. Tsubota, H. Yamashita, S. T. Oyama,
e-J. Surf. Sci. Nanotechnol. 2006, 4, 74-77.
36. Direct Propylene Epoxidation over Modified Ag/CaCO3 catalysts
J. Lu, J. J. Bravo-Suárez, M. Haruta, S. T. Oyama,
Appl. Catal. 2006, 302, 283-295.
37. The First Atomic-Scale Observation of a Ni2P(0001) Single Crystal Surface
Md. Golan Moula, S. Suzuki, W.-J. Chun, S. Otani, S. T. Oyama, K. Asakura
Chem. Lett. 2006, 35, 90-91.
38. In Situ XAFS Analysis of Pd-Pt Catalysts During Hydrotreatment of Model Oil
K. K. Bando, T. Kawai, K. Asakura, T. Matsui, L. L. Bihan, H. Yasuda, Y. Yoshimura, S. T. Oyama
Catal. Today 2006, 111, 199-204.
39. Structure and Oxidation State of Silica-Supported Manganese Oxide Catalysts and Reactivity
for Acetone Oxidation Using Ozone
C. Reed, Y.-K. Lee, S. T. Oyama
J. Phys. Chem. B 2006, 110, 4207-4216.
40. Acetone Oxidation Using Ozone on Manganese Oxide Catalysts
Y. Xi, C. Reed, Y.-K. Lee, S. T. Oyama
J. Phys. Chem. B 2005, 109, 17587-17596.
41. Distinguishing between Reaction Intermediates and Spectators: A Kinetic Study of Acetone
Oxidation Using Ozone on a Silica-Supported Manganese Oxide Catalyst
C. Reed, Y. Xi, S. T. Oyama
J. Catal. 2005, 235, 378-392.
42. Structure-Sensitivity of Hydrodesulfurization of 4,6-Dimethyldibenzothiophene over SilicaSupported Nickel Phosphide Catalysts
Yuying Shu, Yong-Kul Lee, and S. Ted Oyama
J. Catal. 2005, 236, 112-121.
43. Mechanism of Hydrodenitrogenation in Phosphides and Sulfides
S. T. Oyama, Y.-K. Lee
J. Phys. Chem. B 2005 109, 2109-2119.
44. Hydrodesulfurization of 4,6-Dimethyldibenzothiophene over NiMo, CoMo Sulfide and Ni
Phosphide Catalysts: A Kinetic Study on Individual Reaction Pathways
J. H. Kim, X. Ma, C. Song, Y.-K. Lee, S. T. Oyama
Energy & Fuels 2005, 19, 353-364.
45. A New Type of Nonsulfide Hydrotreating Catalyst: Nickel Phosphide on Carbon,
Y. Shu, Y.-K. Lee, S. T. Oyama
Chem. Commun. 2005, 1143-1145.
46. Synthesis, characterization, and hydrotreating activity of carbon-supported transition metal
phosphides
Yuying Shu, S. Ted Oyama
Carbon 2005, 43, 1517-1532.
47. In Situ UV-vis Studies of the Effect of Particle Size on the Epoxidation of Ethylene and
4
Propylene on Supported Silver Catalysts with Molecular Oxygen
J. Lu, J.-J. Bravo-Suárez, A. Takahashi, M. Haruta, S. T. Oyama
J. Catal. 2005, 232, 85-95.
48. In Situ X-Ray Absorption Fine Structure Studies on the Structure of Ni2P Supported on SiO2
T. Kawai, S. Sato, W. J. Chun, K. Asakura, K. K. Bando, T. Matsui, Y. Yoshimura, T. Kubota, Y.
Okamoto, Y. K. Lee, S. T. Oyama, Physica Scripta, 2004, T115, 822-824.
49. Microtextural properties of layered double hydroxides: a theoretical and structural model
J.J. Bravo-Suarez, E.A. Paez-Mozo, S. T. Oyama
Microp. Mesop. Mater. 2004, 67, 1-17.
50. Direct Oxidation of Propylene to Propylene Oxide
S. T. Oyama, K. Murata, M. Haruta
Shokubai, 2004, 46, 13-18.
51. Direct Observation of Surface Intermediates Formed by Selective Oxidation of Alcohols on
Silica-Supported Molybdenum Oxide
M. Seman, J. N. Kondo, K. Domen, C. Reed , S. T. Oyama
J. Phys. Chem. 2004, 108(10), 3231-3239.
52. The Intercalation of Decamolybodicobaltate(III) anion in Layered Double Hydroxides
J. J. Bravo, E. A. Páez Mozo, S. T. Oyama
Chem. Mater. 2004, 16, 1214-1225.
53. Mixture Models for the Estimation of Thermodynamic Properties of Layered Double
Hydroxides
J. J. Bravo, E. A. Páez Mozo, S. T. Oyama
Quim. Nov. 2004, 27, 574.
54. Synthesis of Layered Double Hydroxides: A Thermodynamic Study and Data Review
J. J. Bravo, E. A. Páez Mozo, S. T. Oyama
Quim. Nov. 2004, 27, 601.
55. Active Phase of Ni2P/SiO2 in Hydroprocessing Reactions
S. T. Oyama, X. Wang, Y.-K. Lee, W.-J. Chun
J. Catal. 2004, 221, 263-273.
56. Effect of Pressure in Membrane Reactors: Tradeoff in Permeability and Equilibrium
Conversion in the Catalytic Reforming of CH4 with CO2 at High Pressure
D. Lee, P. Hacarlioglu, S. T. Oyama
Topics Catal. 2004, 29, 45-57.
57. Synthesis, Characterization and Gas Permeation Properties of a Hydrogen Permeable Silica
Membrane Supported on Porous Alumina
D. Lee, L. Zhang, S. T. Oyama, S. Niu, R. F. Saraf
J. Membr. Sci. 2004, 231, 117.
58. Novel Transition Metal Phosphide Hydrotreating Catalysts for Production of Ultra-Clean
Transportation Fuels
S. T. Oyama, Y.-K. Lee, K. Asakura, T. Kawai, W.-J. Chun, Y. Yoshimura, K. K. Bando, J. H. Kim, C.
Song
Shokubai 2004, 46, 188-190.
59. High Permeability in a Nonporous System: Theory of Hydrogen Permeability in Dense Silica
5
Membranes
S. T. Oyama , D. Lee, P. Hacarlioglu, R. F. Saraf,
J. Membr. Sci., 2004, 244, 45-53.
60. Dissociation of Acetaldehyde on β-Mo2C to Yield Ethyledene and Oxo Surface Groups: A
Possible Pathway for Active Site Formation in Heterogeneous Olefin Methathesis
M. Siaj, C. Reed, S. T. Oyama, S. L. Scott, P. H. McBreen
J. Am. Chem. Soc. 2004, 126, 9514-15.
61. Photoemission and LEED Characterization of Ni2P(001)
D. Kanama, S. T. Oyama, S. Otani, D. F. Cox
Surf. Sci. 2004, 552, 8-16.
62. Control of Reactivity in C-H Bond Breaking Reactions on Oxide Catalysts: Methanol Oxidation
on Supported Molybdenum Oxide
S. T. Oyama, R. Radhakrishnan, M. Seman, J. Nomura, K. Domen, K. Asakura
J. Phys. Chem. B 2003, 107, 1845-1852.
63. Alumina-Supported Molybdenum Phosphide Hydroprocessing Catalysts
P. A. Clark, S. T. Oyama
J. Catal. 2003, 218, 78-87.
64. Novel Catalysts for Advanced Hydroprocessing: Transition Metal Phosphides
S. T. Oyama
J. Catal. 2003, 216, 343-352.
65. In Situ X-Ray Absorption Fine Structure Studies on the Structure of Ni2P Supported on K-USY
T. Kawai, S. Sato, W.-J. Chun, K. Asakura, K. K. Bando, T. Matsui, Y. Yoshimura, T. Kubota, Y.
Okamoto, Y.-K. Lee, S. T. Oyama
Chem. Lett. 2003, 32, 956-957.
66. Reactant-Probe Method for Estimating Active Site Number in Catalysts
R. Radhakrishnan, S. T. Oyama
J. Catal. 2002, 204, 516.
67. Structural Characterization of Tungsten Phosphide (WP) Hydrotreating Catalysts by X-ray
Absorption Spectroscopy and Nuclear Magnetic Resonance Spectroscopy
S. T. Oyama, P. Clark, X. Wang, T. Shido, Y. Iwasawa, S. Hayashi, J. M. Ramallo-López, F.G.
Requejo
J. Phys. Chem. B 2002, 106, 1913-1920.
68. Characterization of Silica Supported Molybdenum and Tungsten Phosphide Hydroprocessing
Catalysts by 31P Nuclear Magnetic Resonance Spectroscopy
P. Clark, X. Wang, and S. T. Oyama
J. Catal. 2002, 207, 256-265
69. Synthesis, Characterization and Hydrotreating Activity of Several Iron Group Transition Metal
Phosphides
X. Wang, P. Clark, S. T. Oyama
J. Catal. 2002, 208, 321-331.
70. Hydrodesulfurization of Petroleum Feedstocks with a New Type of Nonsulfide Hydrotreating
Catalyst
S. T. Oyama, X. Wang, F. Requejo, T. Sato, Y. Yoshimura
J. Catal. 2002, 209, 1-5.
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71. Adsorption and Reaction of Thiophene on -Mo2C (0001)
T. P. St. Clair, S. T. Oyama, D. F. Cox
Surf. Sci. 2002, 511, 294-302.
72. Effect of Phosphorus Content on Nickel Phosphide Catalysts Studied by XAFS and Other
Techniques
X. Wang, Y. Lee, S. T. Oyama, K. Bando, F. G. Requejo
J. Catal. 2002, 210, 207-217.
73. Push-Pull Mechanism of Hydrodenitrogenation over Silica Supported MoP, WP, and MoS2
Hydroprocessing Catalysts
P. Clark, X. Wang, P. Deck, and S. T. Oyama
J. Catal. 2002, 210, 116-126.
74. Gas Permeation Characteristics of a Hydrogen Selective Supported Silica Membrane
D. Lee, S. T. Oyama
J. Membr. Sci. 2002, 210, 291-306.
75. Spillover and Migration of Alkoxy Groups Formed by Adsorption of Alcohols on SilicaSupported Molybdenum Oxide
M. Seman, J. N. Kondo, K. Domen, R. Radhakrishnan, S. T. Oyama
Chem. Lett 2002, 11, 1082-1083.
76. Reactive and Inert Surface Species Observed during Methanol Oxidation over Silica-Supported
Molybdenum Oxide
M. Seman, J. N. Kondo, K. Domen, R. Radhakrishnan, S. T. Oyama
J. Phys. Chem. B 2002, 106, 12965-12977.
77. Synthesis and Activity of a New Catalyst for Hydroprocessing: Tungsten Phosphide
P. Clark, W. Li, S. T. Oyama
J. Catal. 2001, 200, 140-147.
78. Electron Transfer Effects in Ozone Decomposition on Supported Manganese Oxide
R. Radakrishnan, S. T. Oyama, J. G. Chen, K. Asakura
J. Phys. Chem. B 2001, 105, 4245-4253.
79. Ozone Decomposition over Manganese Oxide Supported on ZrO2 and TiO2: A Kinetic Study
Using in situ Laser Raman Spectroscopy
R. Radhakrishnan, S. T. Oyama
J. Catal. 2001, 199, 282-290.
80. XAFS Characterization of Highly Active Alumina-Supported Molybdenum Phosphide Catalysts
(MoP/Al2O3) for Hydrotreating
S. T. Oyama, P. Clark, V. L. S. Teixeira da Silva, E. J. Lede, F. G. Requejo
J. Phys. Chem. B 2001, 105, 4961.
81. Characterization of a Highly Selective Hydrogen Permeable Silica Membrane
S. T. Oyama, D. Lee, S. Sugiyama, K. Fukui, Y. Iwasawa
J. Mater. Sci. 2001, 36, 5213.
82. Structure of MnOx / Al2O3 Catalyst: A Study Using EXAFS, In-situ Laser Raman Spectroscopy and
Ab intio Calculations
R. Radhakrishnan, S. Ted Oyama, Y. Ominami, K. Asakura
J. Phys. Chem. B 2001, 105, 9067
7
83. Variability in the Structure of Supported MoO3 Catalysts: Studies Using Raman and X-ray
Absorption Spectroscopy with Ab Initio Calculations
R. Radhakrishnan, C. Reed, S. T. Oyama, M. Seman, J. Kondo, K. Domen, Y. Ohminami, K.
Asakura
J. Phys. Chem. B 2001, 105, 8519.
84. Ni2P(0001) by XPS
D. Kanama, S. T. Oyama, S. Otani, D. F. Cox
Surf. Sci. Spectra 2001, 8, 220.
85. Characterization and Selective Oxidation Catalysis of Modified Pt Particles on SbOx
T. Inoue, S. T. Oyama, H. Imoto, K. Asakura, Y. Iwasawa
Appl. Catal. A: Gen. 2000, 191, 131-140.
86. Hydrogen Selective Membranes: Application to the Transformation of Greenhouse Gases
A. K. Prabhu, S. T. Oyama
J. Memb. Sci, 2000, 176, 233-248.
87. Modeling of the Methane Reforming Reaction in Hydrogen Selective Membrane Reactors
A. K. Prabhu, A. Liu, L. G. Lovell, S. T. Oyama
J. Memb. Sci, 2000, 177, 83-95.
88. Chemical and Catalytic Properties of Ozone
S. T. Oyama
Catal. Rev.-Sci. Eng. 2000, 42, 279-322.
89. Push-Pull Mechanism of Hydrodenitrogenation over Carbide and Sulfide Catalysts
V. Schwartz, V.L.S.T. da Silva, S. T. Oyama,
J. Molec. Catal. A: Chem. 2000, 163, 251-268.
90. Reaction Network of Pyridine Hydrodenitrogenation over Carbide and Sulfide Catalysts
V. Schwartz, S. T. Oyama,
J. Molec. Catal. A: Chem. 2000, 163, 269-282.
91. Supported Bimetallic Nb-Mo Carbide: Synthesis, Characterization, and Reactivity , V. Schwartz,
S. T. Oyama, J.G. Chen,
J. Phys. Chem. B 2000; 104(37); 8800-8806.
92. CO and O2 Adsorption on -Mo2C(0001)
T. P. St. Clair, S. T. Oyama, D. F. Cox
Surf. Sci. 2000, 468, 62-76.
93. Development of a Hydrogen Selective Ceramic Membrane and its Application for the
Conversion of Greenhouse Gases
A. K. Prabhu and S. T. Oyama
Chem. Lett. 1999, 213
94. Absolute Determination of Reaction Mechanisms by In Situ Measurements of Reaction
Intermediates
W. Li and S. T. Oyama
Topics in Catalysis 1999, 8, 75.
95. Cumene Hydrogenation Turnover Rates on Mo2C: CO and O2 as Probes of the Active Site
T. P. St.Clair, B. Dhandapani, and S. T. Oyama
Catal. Lett. 1999, 58, 169.
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96. Preparation and Hydrodenitrogenation Performance of Rhenium Nitride
P. Clark and S. T. Oyama
Appl. Catal. 1999, 184, L175.
97. Transition Metal Bimetallic Oxycarbides: Synthesis, Characterization, and Activity Studies
S. T. Oyama, C. C. Yu, and S. Ramanathan
J. Catal. 1999, 184, 535.
98. Supported Nickel Catalysts for Carbon Dioxide Reforming of Methane in Plug Flow and
Membrane Reactors
A. K. Prabhu, R. Radhkrishnan, S. T. Oyama
Appl. Catal. 1999, 183, 241.
99. C-Terminated Reconstruction and C-Chain Structure on Mo2C(0001) Surface Studied by Low
Energy Electron Diffraction and Scanning Tunneling Microscopy
R.-L. Lo, K. Fukui, S. Otani, S. T. Oyama, Y. Iwasawa
Jpn J. Appl. Phys. 1999, 38, 3813.
100.Surface Characterization of -Mo2C (0001)
T. P. St. Clair, S. T. Oyama, D. F. Cox, S. Otani, Y. Ishizawa, R.-L. Lo, K. Fukui, Y. Iwasawa
Surf. Sci. 1999, 426, 187.
101.New Catalysts for Hydroprocessing: Bimetallic Oxynitrides MI-MII-O-N (MI, MII = Mo, W, V,
Nb, Cr, Mn, and Co) Part I: Synthesis and Characterization.
C. C. Yu, S. Ramanathan and S. T. Oyama
J. Catal. 1998, 173, 1.
102.New Catalysts for Hydroprocessing: Bimetallic Oxynitrides MI-MII-O-N (MI, MII = Mo, W, V,
Nb, Cr, Mn, and Co) Part II: Reactivity Studies.
C. C. Yu, S. Ramanathan and S. T. Oyama
J. Catal. 1998, 173, 10.
103.Molybdenum Phosphide: A Novel Catalyst for Hydrodenitrogenation
W. Li, B. Dhandapani and S. T. Oyama
Chem. Lett. 1998, 3, 208.
104.Synthesis of a Mo/Nb Mixed Carbide
V. L. S. Teixeira da Silva, M. Schmal, and S. T. Oyama
J. Mat. Res. 1998 13, 1977.
105.Synthesis, Characterization, and Reactivity of Tungsten Oxynitride
T. Lucy, T. StClair, and S. T. Oyama
J. Mater. Res. 1998, 13, 2321.
106.Simultaneous Hydrodesulfurization, Hydrodeoxygenation, and Hydrogenation with
Molybdenum Carbide
B. Dhandapani, T. St.Clair, and S. T. Oyama
Appl. Catal., 1998 168, 219.
107.Synthesis, Characterization and Reactivity Studies of Supported Mo2C with Phosphorus
Additive
B. Dhandapani, S. Ramanathan, C. C. Yu, J. G. Chen, and S. T. Oyama
J. Catal. 1998, 176, 61.
108.Oxygen Diffusivity in MoO3 as Determined by a Temperature Programmed Method
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T. P. St.Clair, J. Restad, S. T. Oyama
J. Mater. Res. 1998, 13, 1430L.
109.Mechanism of Ozone Decomposition on Manganese Oxide: 1. In situ Laser Raman
Spectroscopy and Ab Initio Molecular Orbital Calculations
W. Li, G. V. Gibbs, and S. T. Oyama
J. Am. Chem. Soc. 1998 120, 9041.
110.The Mechanism of Ozone Decomposition on Manganese Oxide: 2. Steady-state and Transient
Kinetic Studies
W. Li and S. T. Oyama
J. Am. Chem. Soc. 1998 120, 9047.
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