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My current research focus is on the investigation of advanced functional materials, in particular organic small molecules, for solar cell applications. All devices we make are processed by thermal evaporation of the materials in vacuum and the device architectures generally make use of molecular doping, i.e. the modification of a semiconductor's properties by a controlled addition of "impurities". Vacuum deposition and the concept of molecular doping have been two key enabling concepts for organic light emitting diodes (OLEDs) that can be found in displays of many mobile phones and have started to appear in large TV screens. Although much less used in organic solar cells, these same concepts can be applied to organic solar cells with similar benefits: high control of the composition and thickness of individual thin layers, easy access to multi-layer structures (e.g. for tandem devices) and the control over Fermi level and interfaces using doping. This is an exciting area of research and organic solar cells are one potential candidate for efficient, light-weight and flexible solar energy conversion at competitive cost. If these solar cells work well in the UK, they should work well nearly anywhere...
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论文共 238 篇作者统计合作学者相似作者
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Bernd K. Sturdza,Benjamin M. Gallant,Philippe Holzhey,Elisabeth A. Duijnstee, Marko W. von der Leyen,Harry C. Sansom,Henry J. Snaith,Moritz K. Riede,Robin J. Nicholas
JOURNAL OF MATERIALS CHEMISTRY Ano. 9 (2024): 5406-5413
Arabian Journal of Chemistryno. 11 (2023): 105247-105247
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ACS applied materials & interfacesno. 26 (2023): 31684-31691
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Anna-Lena Hofmann,Karl Leo,Mike Hambsch,Felix Talnack, Max Herzog, Jakob Wolansky,Eva Bittrich,Moritz Riede, Stefan Mannsfeld,Johannes Benduhn, Lucy Winkler
Proceedings of the MATSUS Spring 2024 Conference (2023)
Irfan Habib,Pascal Kaienburg, Dondong Xia, Olivia Gough, Ming Zhu, Joseph Spruce,Weiwei Li,Moritz Riede
APL MATERIALSno. 6 (2023)
arxiv(2023)
arXiv (Cornell University) (2023)
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