Full name Familienname, Vorname
MERTENS, Stijn
 
Main Affiliation Organisations­zuordnung
 

Results 1-20 of 51 (Search time: 0.003 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Hartl, Benedikt ; Sharma, Shubham ; Brügner, Oliver ; Mertens, S.F.L. ; Walter, Michael ; Kahl, Gerhard Reliable computational prediction of supramolecular ordering of complex molecules at a gold interfacePräsentation Presentation2021
2Hartl, Benedikt ; Sharma, Shubham ; Brügner, Oliver ; Mertens, Stijn F. L. ; Walter, Michael ; Kahl, Gerhard Reliable Computational Prediction of the Supramolecular Ordering of Complex Molecules under Electrochemical ConditionsArtikel Article 2020
3Müllner, Matthias ; Riva, Michele ; Kraushofer, Florian ; Schmid, Michael ; Parkinson, Gareth S. ; Mertens, Stijn F. L. ; Diebold, Ulrike Stability and Catalytic Performance of Reconstructed Fe₃O₄(001) and Fe₃O₄(110) Surfaces during Oxygen Evolution ReactionArtikel Article 2019
4Hartl, Benedikt ; Kahl, Gerhard ; Cui, Kang ; De Feyter, Steven ; Walter, Michael ; Mertens, S.F.L. Predictive modeling of molecular self-assembly at an electrochemical solid-liquid interfacePräsentation Presentation2018
5Mertens, S.F.L. Single-Molecule Switching in 2D Materials at Solid-Liquid Interfaces; invited conference presentationPräsentation Presentation2018
6Mertens, S.F.L. From Collective to Single-Molecule Switching in 2D Materials at Solid-Liquid Interfaces; invited seminar talkPräsentation Presentation2018
7Mertens, S.F.L. Quantifying and Modifying Defects in 2D Materials by Metal Underpotential Deposition; contributed talkPräsentation Presentation2018
8Mertens, S.F.L. Single-Molecule Switching in 2D Materials at Solid-Liquid Interfaces; invited conference presentationPräsentation Presentation2018
9Hartl, Benedikt ; Cui, Kang ; De Feyter, Steven ; Walter, Michael ; Mertens, S.F.L. ; Kahl, Gerhard Molecular self-assembly at solid-liquid interfaces under electrochemical controlKonferenzbeitrag Inproceedings2018
10Hartl, Benedikt ; Cui, Kang ; De Feyter, Steven ; Walter, Michael ; Mertens, S.F.L. ; Kahl, Gerhard Molecular Self-Assembly At Solid Liquid Interfaces Under Electrochemical ControlKonferenzbeitrag Inproceedings2018
11Mertens, S.F.L. Adsorption and self-organization of organic molecules under electrochemical controlBuchbeitrag Book Contribution2018
12Cui, Kang ; Dorner, Iris ; Mertens, Stijn F.L. Interfacial supramolecular electrochemistryArtikel Article 2018
13Mertens, S.F.L. Electrochemical investigations of 2-dimensional materials; Fachgebiet: Chemische Physik (Chemical Physics)Präsentation Presentation2017
14Dorner, Iris ; Müllner, Matthias ; Diebold, Ulrike ; Hauer, J. ; Mertens, S.F.L. Ionic Self-Assembly in the Electrochemical Scanning Tunnelling MicroscopePräsentation Presentation2017
15Mertens, S.F.L. Boron nitride nanomesh model system for stiction and adhesion; contributed talkPräsentation Presentation2017
16Mertens, S.F.L. Boron nitride nanomesh: a robust template for monodisperse oxide cluster adsorption; contributed talkPräsentation Presentation2017
17Mertens, S.F.L. Switchable white graphene: electrochemical surface science of the boron nitride nanomesh; invited conference presentationPräsentation Presentation2017
18Mertens, S.F.L. Electrochemical surface science of oxides and boron nitridePräsentation Presentation2017
19Mertens, S.F.L. Electrochemical surface science of TiO2 rutile (110), graphene and boron nitride; invited seminartalkPräsentation Presentation2017
20Mertens, S.F.L. Single-Molecule Switching in 2D Materials at Solid-Liquid Interfaces; invited seminar talkPräsentation Presentation2017

Results 1-2 of 2 (Search time: 0.003 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Muellner Matthias - 2021 - Oxide in waessriger Loesung Stabilitaet und...pdf.jpgMüllner, Matthias Oxide in wässriger Lösung: Stabilität und Aktivität auf atomarer EbeneThesis Hochschulschrift 2021
2Dorner Iris - 2016 - Electrochemical surface investigations of TiO2 rutile 110.pdf.jpgDorner, Iris Electrochemical surface investigations of TiO2 rutile (110)Thesis Hochschulschrift 2016