Publications of Thomas Schmidt
All genres
Journal Article (45)
2019
Journal Article
Schmidt, Thomas, Helder Marchetto, , and Eberhard Umbach: Complex Monolayer Growth Dynamics of a Highly Symmetric Molecule: NTCDA on Ag(111).
Journal Article
Shamil K. Shaikhutdinov, Markus Heyde, Thomas Schmidt and Hans-Joachim Freund: , , Interaction of water with oxide thin film model systems.
2018
Journal Article
Hagen Klemm, Gina Peschel, Ewa Madej, Alexander Fuhrich, , , , , Thomas Schmidt, , and : , , , , Spatially Resolved Insight into the Chemical and Electronic Structure of Solution-Processed Perovskites-Why to (Not) Worry about Pinholes.
Journal Article
Kuhness, David, Hyun Jin Yang, Hagen Klemm, Mauricio Prieto, Gina Peschel, Alexander Fuhrich, Dietrich Menzel, Thomas Schmidt, Xin Yu, Shamil K. Shaikhutdinov, Adrian Lewandowski, Markus Heyde, , , , , and Hans-Joachim Freund: A Two-Dimensional ‘Zigzag’ Silica Polymorph on a Metal Support.
Journal Article
Gina Peschel, Mauricio Prieto, , , Thomas Schmidt and : , , Symmetry-Induced Structuring of Ultrathin FeO and Fe3O4 Films on Pt(111) and Ru(0001).
Journal Article
Prieto, Mauricio, Hagen Klemm, , , Dietrich Menzel, Thomas Schmidt and Hans-Joachim Freund: Water Formation under Silica Thin Films: Real‐Time Observation of a Chemical Reaction in a Physically Confined Space.
Journal Article
Schmidt, Thomas, Helder Marchetto, , , Hans-Joachim Freund and Eberhard Umbach: Influence of Substrate Bonding and Surface Morphology on Dynamic Organic Layer Growth: Perylenetetracarboxylic Dianhydride on Au(111).
2017
Journal Article
Hagen Klemm, Francesca Genuzio, Gina Peschel, Alexander Fuhrich, Thomas Schmidt and : , , Exceptional Dewetting of Organic Semiconductor Films: The Case of Dinaphthothienothiophene (DNTT) at Dielectric Interfaces.
Journal Article
Hagen Klemm, Gina Peschel, , , , Thomas Schmidt, , and : , , In Situ Patterning of Ultrasharp Dopant Profiles in Silicon.
Journal Article
Helder Marchetto, Thomas Schmidt, and : , , , , , , , , Nanoscale patterning, macroscopic reconstruction, and enhanced surface stress by organic adsorption on vicinal surfaces.
Journal Article
Prieto, Mauricio and Thomas Schmidt: LEEM and PEEM as Probing Tools to Address Questions in Catalysis.
Journal Article
Hagen Klemm, , Thomas Schmidt, and : , , Mechanism and Kinetics of Hematite Crystallization in Air: Linking Bulk and Surface Models via Mesoporous Films with Defined Nanostructure.
Journal Article
Helder Marchetto, , , , , , , , , , , , , , , , , , , , , Thomas Schmidt, , , , , and : , The EIGER detector for low-energy electron microscopy and photoemission electron microscopy.
2016
Journal Article
Hagen Klemm, Gina Peschel, Alexander Fuhrich, Mauricio Prieto, Thomas Schmidt, , and : , , , , , , , Thermal migration of alloying agents in aluminium.
Journal Article
Genuzio, Francesca, Alessandro Sala, Thomas Schmidt, Dietrich Menzel and Hans-Joachim Freund: Phase transformations in thin iron oxide films: Spectromicroscopic study of velocity and shape of the reaction fronts.
Journal Article
Klemm, Hagen, Gina Peschel, Ewa Madej, Alexander Fuhrich, Martin Timm, Dietrich Menzel, Thomas Schmidt and Hans-Joachim Freund: Preparation of silica films on Ru(0001): A LEEM/PEEM study.
Journal Article
Lévesque, Pierre L., Helder Marchetto, Thomas Schmidt, , Hans-Joachim Freund and Eberhard Umbach: Correlation Between Substrate Morphology and the Initial Stages of Epitaxial Organic Growth: PTCDA/Ag(111).
2015
Journal Article
Marchetto, Helder, Thomas Schmidt, , , Pierre L. Lévesque, , Hans-Joachim Freund and Eberhard Umbach: Direct observation of epitaxial organic film growth: temperature-dependent growth mechanisms and metastability.
2014
Journal Article
Genuzio, Francesca, Alessandro Sala, Thomas Schmidt, Dietrich Menzel and Hans-Joachim Freund: Interconversion of α-Fe2O3 and Fe3O4 Thin Films: Mechanisms, Morphology, and Evidence for Unexpected Substrate Participation.
2013
Journal Article
Schmidt, Thomas, Alessandro Sala, Helder Marchetto, and Hans-Joachim Freund: First experimental proof for aberration correction in XPEEM: Resolution, transmission enhancement, and limitation by space charge effects.