Ute Cappel
Universitetslektor vid Institutionen för fysik och astronomi; Röntgenfysik
- Mobiltelefon:
- 070-335 91 55
- E-post:
- ute.cappel@physics.uu.se
- Besöksadress:
- Ångströmlaboratoriet, Lägerhyddsvägen 1
- Postadress:
- Box 516
751 20 UPPSALA
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Kort presentation
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I'm a fellow of the Wallenberg Initiative Materials Science for Sustainability (WISE) at the research program "Condensed Matter Physics of Energy Materials" in the Division of X-ray Photon Science.
Opportunities
I currently have a PhD position in time-resolved X-ray based spectroscopy available in my group. Read more and apply here!
See more information about my research group below.
Biografi
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Short CV
Master in Science (MSci) in Chemical Physics, University of Bristol, United Kingdom, 2007
PhD in Chemistry with a Specialisation in Physical Chemistry, Uppsala University, Sweden, 2011, Characterisation of Organic Dyes for Solid State Dye-Sensitized Solar Cells
Docent in Chemistry with specialization in Inorganic Materials Chemistry, KTH, Sweden, 2018
Intra-European Marie Curie fellow, Department of Chemistry, Imperial College, United Kingdom, 2012-2014
Postdoctoral Researcher at the Division of Molecular and Condensed Matter Physics, Department of Physics and Astronomy, Uppsala University, Sweden, 2014-2017
Assistant Professor at the Division of Applied Physical Chemistry, Department of Chemistry, KTH - Royal Institute of Technology, Sweden, 2017-2020
Associate Professor at the Division of Applied Physical Chemistry, Department of Chemistry, KTH - Royal Institute of Technology, Sweden, from 2020-2023
Current Position: Associate Professor and WISE (Wallenberg Initiative Materials Science for Sustainability) fellow at the Division of X-ray Photon Science, Department of Physics and Astronomy, Uppsala University, Sweden, from 2023
Publications: A complete and updated list of my publications can be found on Google Scholar.
Forskning
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Research Interests
My research focus is the characterisation of materials for and processes in solar cells. My particular interest is to develop and use time-resolved photoelectron spectroscopy to measure the electronic structure during the light-to-electricity conversion process.
Opportunities
I currently have a PhD position in time-resolved X-ray based spectroscopy available in my group. Read more and apply here!
Group Members
Karen Radetzky (PhD student)
Birgit Kammlander (PhD student)
Fredrik Johansson (postdoc)
Alberto García-Fernández (postdoc at KTH)
Former PhD students
Sebastian Svanström (PhD thesis)
Tamara Sloboda (PhD thesis)
Publikationer
Senaste publikationer
- Composition dependence of X-ray stability and degradation mechanisms at lead halide perovskite single crystal surfaces (2024)
- Tailoring Ultra-fast Charge Transfer in MoS2 (2020)
- Electronic Structure Characterization of Cross-Linked Sulfur Polymers (2018)
- Low Dose Photoelectron Spectroscopy at BESSY II (2018)
- Femtosecond and Attosecond Electron-Transfer Dynamics in PCPDTBT (2018)
Alla publikationer
Artiklar
- Composition dependence of X-ray stability and degradation mechanisms at lead halide perovskite single crystal surfaces (2024)
- Tailoring Ultra-fast Charge Transfer in MoS2 (2020)
- Electronic Structure Characterization of Cross-Linked Sulfur Polymers (2018)
- Low Dose Photoelectron Spectroscopy at BESSY II (2018)
- Femtosecond and Attosecond Electron-Transfer Dynamics in PCPDTBT (2018)
- The synergistic effect of dimethyl sulfoxide vapor treatment and C-60 electron transporting layer towards enhancing current collection in mixed-ion inverted perovskite solar cells (2018)
- First layer water phases on anatase TiO2(101) (2018)
- Defect-Induced Water Bilayer Growth on Anatase TiO2(101) (2018)
- Preparation of mixed-ion and inorganic perovskite films using water and isopropanol as solvents for solar cell applications (2018)
- Inorganic CsPbI3 Perovskite Coating on PbS Quantum Dot for Highly Efficient and Stable Infrared Light Converting Solar Cells (2018)
- Partially Reversible Photoinduced Chemical Changes in a Mixed-Ion Perovskite Material for Solar Cells (2017)
- Chemical and Physical Reduction of High Valence Ni States in Mesoporous NiO Film for Solar Cell Application. (2017)
- Characterization techniques for dye-sensitized solar cells (2017)
- Valence Level Character in a Mixed Perovskite Material and Determination of the Valence Band Maximum from Photoelectron Spectroscopy (2017)
- Chemical Distribution of Multiple Cation (Rb+, Cs+, MA+, and FA+) Perovskite Materials by Photoelectron Spectroscopy (2017)
- Evidence for photo-induced charge separation between dye molecules adsorbed to aluminium oxide surfaces (2016)
- Electronic structure dynamics in a low bandgap polymer studied by time-resolved photoelectron spectroscopy (2016)
- HELIOS-A laboratory based on high-order harmonic generation of extreme ultraviolet photons for time-resolved spectroscopy (2015)
- Energy level alignment in TiO2/metal sulfide/polymer interfaces for solar cell applications (2014)
- Low-Temperature Solution Processing of Mesoporous Metal-Sulfide Semiconductors as Light-Harvesting Photoanodes (2013)
- Comparing spiro-OMeTAD and P3HT hole conductors in efficient solid state dye-sensitized solar cells (2012)
- Characterization of the Interface Properties and Processes in Solid State Dye-Sensitized Solar Cells Employing a Perylene Sensitizer (2011)
- Energy Alignment and Surface Dipoles of Rylene Dyes adsorbed to TiO2 nanoparticles (2011)
- The influence of local electric fields on photoinduced absorption in dye-sensitized solar cells. (2010)
- Characterization of surface passivation by poly(methylsiloxane) for dye-sensitized solar cells employing the ferrocene redox couple. (2010)
- Dye regeneration by spiro-MeOTAD in solid state dye-sensitized solar cells studied by photoinduced absorption spectroscopy and spectroelectrochemistry. (2009)
- A broadly absorbing perylene dye for solid-state dye-sensitized solar cells. (2009)