This internship project focuses on the experimental characterization and quantification of the electricalpolarizability of biomolecules such as DNA and proteins. The student willperform dielectrophoresis (DEP) capture experiments using microelectrode array devices and quantify biomoleculartrapping behavior using fluorescence microscopy. Experimental results will becompared to continuum-based electrokinetic models to extract effectivepolarizability parameters and assess the validity and limitations of existingtheoretical descriptions at the molecular scale. The work will involvefluorescence imaging, data analysis, and numerical modeling, providing hands-onexperience at the interface of biophysics, microfluidics, and electrokinetics.This project aims to improve the understanding of biomolecular polarizationmechanisms and contribute to the development of label-based and label-free DEPmanipulation techniques.
Type of internship: Master internship
Duration: 6 months
Required educational background: Nanoscience & Nanotechnology, Physics, Bioscience Engineering
University promotor: Liesbet Lagae (KU Leuven)
Supervising scientist(s): For further information or for application, please contact Wout Mens (< email slettet af sikkerhedsmæssige årsager >)
The reference code for this position is 2026-INT-104. Mention this reference code in your application.
Only for self-supporting students.
Applications should include the following information:
Incomplete applications will not be considered.
Type of internship: Master internship
Duration: 6 months
Required educational background: Nanoscience & Nanotechnology, Physics, Bioscience Engineering
University promotor: Liesbet Lagae (KU Leuven)
Supervising scientist(s): For further information or for application, please contact Wout Mens (< email slettet af sikkerhedsmæssige årsager >)
The reference code for this position is 2026-INT-104. Mention this reference code in your application.
Only for self-supporting students.
Applications should include the following information:
- resume
- motivation
- current study
Incomplete applications will not be considered.



