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Research highlights

Occurrence of gas flow rotational motion inside the ICP torch: a computational and experimental study.
M. Aghaei, L. Flamigni, H. Lindner, D. Günther and A. Bogaerts
J. Anal. At. Spectrom., 29, 249-261 (2014)


Plasma nanoscience: from nano-solids in plasmas to nano-plasmas in solids.
K. Ostrikov, E.C. Neyts and M. Meyyappan
Adv. Phys., 62, 113-224 (2013)
 

Plasma-based dry reforming: a computational study ranging from the nanoseconds to seconds time scale.
R. Snoeckx, R. Aerts, X. Tu and A.1nbsp;Bogaerts
J. Phys. Chem. C, 117, 4957-4970 (2013)
 

Defect healing and enhanced nucleation of carbon nanotubes by low-energy ion bombardment.
E.C. Neyts, K. Ostrikov, Z.J. Han, S. Kumar, A.C.T. van Duin and A. Bogaerts
Phys. Rev. Lett., 110, 065501 (2013)
 

Atomic-scale simulations of reactive oxygen plasma species interacting with bacterial cell walls.
M. Yusupov, E.C. Neyts, U. Khalilov, R. Snoeckx, A.C.T. van Duin and A. Bogaerts
New J. Phys., 14, 093043 (2012) (selected as one of the IOPselect” publications)
 

Self-limiting oxidation in small-diameter Si nanowires.
U. Khalilov, G. Pourtois, A.C.T. van Duin and E.C. Neyts
Chem. Mater., 24, 2141-2147 (2012)
 

Simultaneous etching and deposition processes during the etching of silicon with a Cl2/O2/Ar inductively coupled plasma.
S. Tinck, D. Shamiryan and A. Bogaerts
Plasma Process. Polym., 8, 490-499 (2011)
 

Catalyzed growth of carbon nanotube with definable chirality by hydrid molecular dynamics – force biased Monte Carlo simulations.
E.C. Neyts, Y. Shibuta, A.C.T. van Duin and A. Bogaerts
ACSNano, 4, 6665-6672 (2010)
 

Laser ablation for analytical sampling: what can we learn from modeling?
A. Bogaerts, Z. Chen, R. Gijbels and A. Vertes
Spectrochim. Acta B, 58, 1867-1893 (2003)
(awarded the Elsevier/Spectrochimica Acta Atomic Spectroscopy Award 2003)
 

Gas discharge plasmas and their applications.
A. Bogaerts, E. Neyts, R. Gijbels and J.J.A.M. van der Mullen
Spectrochim. Acta B, 57, 609-658 (2002)  (invited review paper)
 

PLASMANT

 


Research mission

In the research group PLASMANT we develop and apply numerical models for

with the aim to optimize the applications of plasmas and lasers (e.g., in materials and nanotechnology, analytical chemistry, environmental and medical applications).

Furthermore, we also built a plasma reactor for studying greenhouse gas conversion into value-added chemicals.

 


Contact

PLASMANT
Plasma, Laser Ablation and Surface Modelling - ANTwerp
University of Antwerp, Dept. Chemistry
Campus Drie Eiken
Universiteitsplein 1
BE-2610 Antwerp-Wilrijk
Belgium
Fax +32-(0)3-265.23.43
annemie.bogaerts@uantwerpen.be