10.1063/1.4927725 J. Hartmann, X. Wang, H. Schumann, et al. Growth mechanisms of GaN microrods for 3D core–shell LEDs: The influence of silane flow Phys. Status Solidi A 212 , 2830-2836 (2015) DOI: 10 […] (2014) DOI: 10.1002/adma.201403073 L. Caccamo, J. Hartmann, C. Fabrega, et al. Band Engineered Epitaxial 3D GaN-InGaN Core−Shell Rod Arrays as an Advanced Photoanode for Visible-Light-Driven Water Splitting […] V. Kempter, J. Helmbold, K. Gömann, and G. Borchardt Surface Structure of Heated Donor Doped SrTiO3(100) Single Crystals Studied with Spectroscopic Electron Microscopy J. Electroceramics 8 (2002) 228
Reduction of CO2 in Ionic Liquid Electrolytes ACS Catal. 14 , 1773−1784 (2024) DOI: 10.1021/acscatal.3c04592 B. Borkenhangen, A. Paszuk, F. N. Knoop, et al. Structure and Origin of Antiphase Domains and […] 10.1063/1.4927725 J. Hartmann, X. Wang, H. Schumann, et al. Growth mechanisms of GaN microrods for 3D core–shell LEDs: The influence of silane flow Phys. Status Solidi A 212 , 2830-2836 (2015) DOI: 10 […] (2014) DOI: 10.1002/adma.201403073 L. Caccamo, J. Hartmann, C. Fabrega, et al. Band Engineered Epitaxial 3D GaN-InGaN Core−Shell Rod Arrays as an Advanced Photoanode for Visible-Light-Driven Water Splitting
Tunneleffekt. Eine dünne Metallspitze und eine elektrisch leitfähige Probe werden einander bis auf ca. 3 bis 10 Å angenähert, so dass die Wellenfunktionen der Spitze mit denen der Probe überlappen können.
Reduction of CO2 in Ionic Liquid Electrolytes ACS Catal. 14 , 1773−1784 (2024) DOI: 10.1021/acscatal.3c04592 K. Stallberg, A. Namgalies, and U. Höfer Ultrafast Exciton Dynamics and Charge Transfer at PTCDA/Metal
evening events. The language of the summer school is English. Contents and Schedule In three lectures (3 h each) you will learn fundamentals of topical experimental methods to study structural properties and
evening events. The language of the summer school is English. Contents and Schedule In three lectures (3 h each) you will learn fundamentals of topical experimental methods to study structural properties and
ng (FKZ: S 626) Förderzeitraum: 08/2003 - 082005 Mechanismus der Bildung von Zweitphasen auf SrTiO 3 -Oberflächen: Einfluß von Dotierung, Sauerstoffpartialdruck und Oberflächenpräparation Prof. Dr. W.