Hans Niemantsverdriet
Hans Niemantsverdriet
Professor Emeritus Physical Chemistry of Surfaces
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Cited by
Cited by
Concepts of modern catalysis and kinetics
I Chorkendorff, JW Niemantsverdriet
John Wiley & Sons, 2017
Spectroscopy in catalysis: an introduction
JW Niemantsverdriet
John Wiley & Sons, 2007
Electrocatalysts for the generation of hydrogen, oxygen and synthesis gas
FM Sapountzi, JM Gracia, HOA Fredriksson, JWH Niemantsverdriet
Progress in Energy and Combustion Science 58, 1-35, 2017
Thermal desorption analysis: Comparative test of ten commonly applied procedures
AM De Jong, JW Niemantsverdriet
Surface Science 233 (3), 355-365, 1990
Surface science approach to modeling supported catalysts
PLJ GUNTER, JW Niemantsverdriet, FH RIBEIRO, GA Somorjai
Catalysis Reviews 39 (1-2), 77-168, 1997
Basic Reaction Steps in the Sulfidation of Crystalline MoO3 to MoS2, As Studied by X-ray Photoelectron and Infrared Emission Spectroscopy
T Weber, JC Muijsers, J Van Wolput, CPJ Verhagen, JW Niemantsverdriet
The Journal of Physical Chemistry 100 (33), 14144-14150, 1996
Behavior of metallic iron catalysts during Fischer-Tropsch synthesis studied with Mossbauer spectroscopy, X-ray diffraction, carbon content determination, and reaction kinetic …
JW Niemantsverdriet, AM Van der Kraan, WL Van Dijk, HS Van der Baan
The Journal of Physical Chemistry 84 (25), 3363-3370, 2002
Structure of amorphous MoS3
T Weber, JC Muijsers, JW Niemantsverdriet
The Journal of Physical Chemistry 99 (22), 9194-9200, 1995
Fundamental understanding of deactivation and regeneration of cobalt Fischer–Tropsch synthesis catalysts
AM Saib, DJ Moodley, IM Ciobīcă, MM Hauman, BH Sigwebela, ...
Catalysis Today 154 (3-4), 271-282, 2010
Carbon deposition as a deactivation mechanism of cobalt-based Fischer–Tropsch synthesis catalysts under realistic conditions
DJ Moodley, J Van de Loosdrecht, AM Saib, MJ Overett, AK Datye, ...
Applied Catalysis A: General 354 (1-2), 102-110, 2009
Sulfidation study of molybdenum oxide using MoO3/SiO2/Si (100) model catalysts and Mo-IV3-sulfur cluster compounds
JC Muijsers, T Weber, RM Vanhardeveld, HW Zandbergen, ...
Journal of Catalysis 157 (2), 698-705, 1995
Cobalt Fischer-Tropsch synthesis: deactivation by oxidation?
J Van de Loosdrecht, B Balzhinimaev, JA Dalmon, JW Niemantsverdriet, ...
Catalysis Today 123 (1-4), 293-302, 2007
Relationship between Iron Carbide Phases (ε-Fe2C, Fe7C3, and χ-Fe5C2) and Catalytic Performances of Fe/SiO2 Fischer–Tropsch Catalysts
Q Chang, C Zhang, C Liu, Y Wei, AV Cheruvathur, AI Dugulan, ...
ACS Catalysis 8 (4), 3304-3316, 2018
Cellulose model surfaces simplified preparation by spin coating and characterization by X-ray photoelectron spectroscopy, infrared spectroscopy, and atomic force microscopy
E Kontturi, PC Thüne, JW Niemantsverdriet
Langmuir 19 (14), 5735-5741, 2003
Fischer-Tropsch synthesis: catalysts and chemistry
J Van de Loosdrecht, FG Botes, IM Ciobica, AC Ferreira, P Gibson, ...
Comprehensive Inorganic Chemistry II: from elements to applications, 525-557, 2013
The conversion of di-σ bonded ethylene to ethylidyne on Pt (111) monitored with sum frequency generation: evidence for an ethylidene (or ethyl) intermediate
P Cremer, C Stanners, JW Niemantsverdriet, YR Shen, G Somorjai
Surface science 328 (1-2), 111-118, 1995
Correlation between hydrodesulfurization activity and order of Ni and Mo sulfidation in planar silica-supported NiMo catalysts: The influence of chelating agents
L Coulier, VHJ De Beer, JAR Van Veen, JW Niemantsverdriet
Journal of Catalysis 197 (1), 26-33, 2001
Time-dependent behavior of iron catalysts in Fischer-Tropsch synthesis
JW Niemantsverdriet, AM Van der Kraan
J. Catal.;(United States) 72 (2), 1981
Structure and catalytic properties of molybdenum oxide catalysts supported on zirconia
KVR Chary, KR Reddy, G Kishan, JW Niemantsverdriet, G Mestl
Journal of Catalysis 226 (2), 283-291, 2004
Characterization of polymer solar cells by TOF-SIMS depth profiling
CWT Bulle-Lieuwma, WJH Van Gennip, JKJ Van Duren, P Jonkheijm, ...
Applied surface science 203, 547-550, 2003
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