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
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
The dissociation kinetics of NO on Rh (111) as studied by temperature programmed static secondary ion mass spectrometry and desorption
HJ Borg, JFCJM Reijerse, RA Van Santen, JW Niemantsverdriet
The Journal of chemical physics 101 (11), 10052-10063, 1994
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