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Update Data    julien.bachmann@fau.de    
Last update: 21/06/2023
 
Name:
Julien Surname:  Bachmann
Institution: Friedrich-Alexander-Universität Erlangen-Nürnberg
Type of Institution: University
ORCID number: https://orcid.org/0000-0001-6480-6212
Google Scholar: https://scholar.google.com/citations?user=kKRgTZMAAAAJ&hl=en
Publons: G-4381-2011
Research Gate: https://www.researchgate.net/profile/Julien-Bachma
Country: Germany
WEB address: https://www.chemistry.nat.fau.eu/ctfm-chair/
Working groups of interest
-WG1 - Advances in Porous Materials and Technologies
-WG3 - Energy
Keywords
- Energy
- Macropores
- Mesopores
- Nanopores
- Oxides
- Porous Semiconductors
- Smart Functional Surfaces
Research field (Free keywords) Atomic layer deposition, solar cells, photoelectrochemistry, electrocatalysis, atomic-layer processing
Scientific expertise Atomic layer deposition, electrochemistry, anodic porous materials, electrochemistry, photoelectrochemistry
Capabilities Anodization, ALD, solution ALD, atomic-layer additive manufacturing, electrochemistry methods, sputter-coating, thermal evaporation, spin-coating, electrospinning, ovens, autoclave, Langmuir trough, FE-SEM, EDX, XRD, GI-XRD, XRR, spectroscopic ellipsometry, imaging ellipsometry, battery testing, PV testing, Hall measurements, in-line mass spectrometry, 3D printing
Relevant publications
(3 max.)
P. Büttner, F. Scheler, D. Döhler, M. K. S. Barr, M. Bosch, M. Rey, T. Yokosawa, S. Hinz, J. Maultzsch, E. Spiecker, N. Vogel, I. Mínguez-Bacho, J. Bachmann* Nano Energy 2022, 103, 107820 “Continuous, crystalline Sb2S3 ultrathin light absorber coatings in solar cells based on photonic concentric p-i-n heterojunctions”
V. M. Koch, M. K. S. Barr, P. Büttner, I. Mínguez-Bacho, D. Döhler, B. Winzer, E. Reinhardt, D. Segets, J. Bachmann J. Mater. Chem. A 2019, 7, 25112-25119 “A solution-based ALD route towards perovskite via lead sulfide films”
S. Haschke, D. Pankin, Y. Petrov, S. Bochmann, A. Manshina, J. Bachmann ChemSusChem 2017, 18, 3644-3651 “Design rules for oxygen evolution catalysis at porous iron oxide electrode surfaces: Thousand-fold current density increase”
Projects
(2 max.)
ERC grant "A preparative approach to geometric effects in innovative solar cell types based on a nanocylindrical structure"
ERC grant "ALAMS -- Atomic-layer additive manufacturing for solar cells"
 
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