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One of the substrate layouts for our organic solar cells
Credit: AFMD Group

Moritz Riede

Professor of Soft Functional Nanomaterials

Research theme

  • Photovoltaics and nanoscience

Sub department

  • Condensed Matter Physics

Research groups

  • Advanced Functional Materials and Devices (AFMD) Group
moritz.riede@physics.ox.ac.uk
  • About
  • Research
  • Teaching
  • Publications

Plenary session 1: Engineering leadership & cognitive computing

Melecon 2010 - 2010 15th IEEE Mediterranean Electrotechnical Conference Institute of Electrical and Electronics Engineers (IEEE) (2016) 13-23

Authors:

Nicos M Timotheou, Matthias Reumann, Jovica V Milanovic, L Gene Kornegay, Ralph Stubner, Julio Hernandez-Castro, Pedro A Amado Assuncao, Julius Georgiou, Moritz Riede

Reply to 'Tandem organic solar cells revisited'

NATURE PHOTONICS 10:6 (2016) 355-355

Authors:

R Timmreck, T Meyer, J Gilot, H Seifert, T Mueller, A Furlan, MM Wienk, D Wynands, J Hohl-Ebinger, W Warta, RAJ Janssen, M Riede, K Leo

Influence of Meso and Nanoscale Structure on the Properties of Highly Efficient Small Molecule Solar Cells

Advanced Energy Materials Wiley 6:4 (2016)

Authors:

Tobias Moench, Pascal Friederich, Felix Holzmueller, Bogdan Rutkowski, Johannes Benduhn, Timo Strunk, Christian Koerner, Koen Vandewal, Aleksandra Czyrska鈥怓ilemonowicz, Wolfgang Wenzel, Karl Leo

Structured organic鈥搃norganic perovskite toward a distributed feedback laser

Advanced Materials Wiley 28:5 (2015) 923-929

Authors:

Michael Saliba, Simon Wood, Jay Patel, Pabitra Nayak, Jian Huang, Jack Alexander-Webber, Bernard Wenger, Samuel Stranks, Maximilian H枚rantner, Jacob Wang, Robin Nicholas, Laura Herz, Michael Johnston, Stephen Morris, Henry Snaith, Moritz Riede

Abstract:

A general strategy for the in-plane structuring of organic-inorganic perovskite films is presented. The method is used to fabricate an industrially relevant distributed feedback (DFB) cavity, which is a critical step towards all-electrially pumped injection laser diodes. This approach opens the prospects of perovskite materials for much improved optical control in LEDs, solar cells and also toward applications as optical devices.

Characterization of tandem organic solar cells comprising subcells of identical absorber material

Progress in Photovoltaics Research and Applications 23:10 (2015) 1353-1356

Authors:

R Timmreck, K Leo, M Riede

Abstract:

Recently organic tandem solar cells with record efficiency had been shown comprising identical absorber materials in both subcells. Such structures pose new challenges for characterization. The standard test methods for measuring spectral response of tandem solar cells can not be applied. The standard procedures demand for different bias illumination during measuring spectral response allowing to select the subcell being current limiting. With subcells comprising identical absorber materials, thus having identical absorption spectra, such a selection is not trivial. In this paper, we show that with the help of detailed optical simulations of such tandem organic solar cells, their characterization is possible, and we apply the proposed method to a sample structure.

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