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My research interests are nanochemistry and supramolecular chemistry on surfaces. Self-assembly on surfaces is a central theme of my research, with a focus on the relation between structure and function. Recent research activities cover a broad range of topics such as two-dimensional crystal engineering (e.g. formation of nanoporous surfaces, chirality at interfaces), templating, dynamics and reactivity. These studies aim at bringing insight in the fundamental aspects of molecule-substrate interactions and molecular organisation on surfaces, as well as the formation and use of these nanostructured functional surfaces (e.g. 2D materials). The liquid-solid interface is a preferred environment to induce self-assembly. Also biomolecular systems (DNA, proteins, their complexes, etc.) are investigated, with a focus on those that are involved in disease related processes. Scanning probe microscopy and spectroscopy techniques are particularly useful to probe the structural, dynamic, and electronic properties of these surface-confined molecular systems.
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Elsevier eBookspp.332-350, (2024)
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CHEMISTRY-A EUROPEAN JOURNALno. 2 (2024)
Chemical Scienceno. 16 (2024): 6076-6087
NANOSCALEno. 7 (2024): 3749-3754
Pauline Julika Kolbeck,Marjolein de Jager, Margherita Gallano,Tine Brouns, Ben Bekaert,Wout Frederickx,Sebastian Ferdinand Konrad,Siska Van Belle,Frauke Christ,Steven De Feyter,Zeger Debyser,Laura Christine Filion,
biorxiv(2024)
ADVANCED MATERIALSno. 5 (2024): e2305984-e2305984
CCS CHEMISTRYno. 4 (2024): 1024-1033
Nicolas Arisnabarreta, Yansong Hao,Enquan Jin, Aude Salame, Klaus Muellen,Marc Robert, Roberto Lazzaroni,Sandra Van Aert, Kunal S. Mali,Steven De Feyter
ADVANCED ENERGY MATERIALS (2024)
Adrian Urban,Steven De Feyter
CHEMPLUSCHEMpp.e202300708-e202300708, (2024)
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