toggle visibility
Search within Results:
Display Options:
Number of records found: 1297

Select All    Deselect All
 | 
Citations
 | 
   print
Inorganic mass spectrometry”. Adams F, Gijbels R, Van Grieken R Wiley, Chichester, page 404 p. (1988).
toggle visibility
Van Laer K (2017) Numerical and experimental study of a packed bed plasma reactor for environmental applications. Antwerpen
toggle visibility
Snoeckx R (2017) Plasma technology : a novel solution for CO2 conversion? Antwerpen
toggle visibility
Huygh S (2017) Towards a fundamental understanding of plasma : TiO2 catalyst interaction for greenhouse gas conversion. Universiteit Antwerpen, Antwerpen
toggle visibility
Structures and spectroscopic properties of sulfur-nitrogen-pnictogen chains : R2P-N=S=N-PR2 and R2P-N=S=N-AsR2”. Bal KM, Cautereels J, Blockhuys F, Journal of molecular structure 1132, 102 (2017). http://doi.org/10.1016/J.MOLSTRUC.2016.08.008
toggle visibility
Dabaghmanesh S (2017) Atomistic modeling of the structural and electronic properties of Cr-based oxides and their potential application as TCO materials. Antwerpen
toggle visibility
Berthelot A (2018) Modeling of microwave plasmas for carbon dioxide conversion. University of Antwerp, Antwerp
toggle visibility
Sun S (2018) Study of carbon dioxide dissociation mechanisms in a gliding arc discharge. Beihang University, School of Astronautics, Beijing
toggle visibility
The plasma treatment unit : an attempt to standardize cold plasma treatment for defined biological effects”. Fridman A, Lin A, Miller V, Bekeschus S, Wende K, Weltmann K-D, Plasma medicine 8, 195 (2018). http://doi.org/10.1615/PLASMAMED.2018026881
toggle visibility
Bal K (2018) New ways to bridge the gap between microscopic simulations and macroscopic chemistry. Antwerpen
toggle visibility
Verlackt C (2018) The behavior of plasma-generated reactive species in plasma medicine. Antwerpen
toggle visibility
Ghorbanfekr Kalashami H (2019) Graphene-based membranes and nanoconfined water : molecular dynamics simulation study. 243 p
toggle visibility
Razzokov J (2019) Molecular level simulations for plasma medicine applications. 173 p
toggle visibility
Michielsen I (2019) Plasma catalysis : study of packing materials on CO2 reforming in a DBD reactor. 215 p
toggle visibility
Ramakers M (2019) Using a gliding arc plasmatron for CO2 conversion : the future in industry? 235 p
toggle visibility
Trenchev G (2019) Computational modelling of atmospheric DC discharges for CO2 conversion. 206 p
toggle visibility
Van der Paal J (2019) Generation, transport and molecular interactions of reactive species in plasma medicine. 237 p
toggle visibility
Vets C (2020) Growth properties of carbon nanomaterials : towards tuning for electronic applications. 130 p
toggle visibility
Chuon S (2019) Simulation numérique multi-échelles du procédé de dépôt par pulvérisation cathodique magnétron. 137 p
toggle visibility
Electroactivity of superoxide anion in aqueous phosphate buffers analyzed with platinized microelectrodes”. Lefrancois P, Girard-Sahun F, Badets V, Clement F, Arbault S, Electroanalysis (2020). http://doi.org/10.1002/ELAN.202060456
toggle visibility
Vermeiren V (2020) Chemical kinetics modeling of non-equilibrium and thermal effects in vibrationally active CO2 plasmas. 207 p
toggle visibility
Nematollahi P (2020) Density functional theory calculations for understanding gas conversion reactions on single metal atom embedded carbon-based nanocatalysts. 173 p
toggle visibility
Zhang H (2020) Optical diagnostics of spatiotemporal evolution characteristics of nanosecond laser-induced plasma in gases. 117 p
toggle visibility
Heijkers S (2020) Plasma chemistry modelling for CO2 and CH4 conversion in various plasma types. 316 p
toggle visibility
Jafarzadeh A (2020) First-principle studies of plasma-catalyst interactions for greenhouse gas conversion. 163 p
toggle visibility
Identifying alternative ferroelectric materials beyond Hf(Zr)O-₂”. Guo J, Clima S, Pourtois G, Van Houdt J, Applied Physics Letters 117, 262903 (2020). http://doi.org/10.1063/5.0028611
toggle visibility
Investigation of active species in low-pressure capacitively coupled N-2/Ar plasmas”. Liang Y-S, Xue C, Zhang Y-R, Wang Y-N, Physics Of Plasmas 28, 013510 (2021). http://doi.org/10.1063/5.0031120
toggle visibility
Ranjbar S (2020) Mathematical model of plasma therapy on bacterial growth. 95 p
toggle visibility
Modeling the CO2 dissociation in pulsed atmospheric-pressure discharge”. Kolev S, Paunska T, Trenchev G, Bogaerts A, Technologies , 012007 (2020). http://doi.org/10.1088/1742-6596/1492/1/012007
toggle visibility
Modeling the physicochemical properties of natural deep eutectic solvents : a review”. Kovács A, Billen P, Cornet I, Wijnants M, Neyts EC, Chemsuschem 13, 3789 (2020). http://doi.org/10.1002/CSSC.202000286
toggle visibility
Select All    Deselect All
 | 
Citations
 | 
   print

Save Citations:
Export Records: