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CMP
Credit: Jack Hobhouse

Bernard Wenger

Long Term Visitor

Sub department

  • Condensed Matter Physics
bernard.wenger@physics.ox.ac.uk
Telephone: 01865 (2) 72401
Robert Hooke Building, room G20
  • About
  • Publications

Lead-free halide double perovskites via heterovalent substitution of noble metals

Journal of Physical Chemistry Letters American Chemical Society 7:7 (2016) 1254-1259

Authors:

Feliciano Giustino, Henry J Snaith, Amir Abbas Haghighirad, George Volonakis, Marina R Filip, Nobuya Sakai, Bernard Wenger

Abstract:

Lead-based halide perovskites are emerging as the most promising class of materials for next-generation optoelectronics; however, despite the enormous success of lead-halide perovskite solar cells, the issues of stability and toxicity are yet to be resolved. Here we report on the computational design and the experimental synthesis of a new family of Pb-free inorganic halide double perovskites based on bismuth or antimony and noble metals. Using first-principles calculations we show that this hitherto unknown family of perovskites exhibits very promising optoelectronic properties, such as tunable band gaps in the visible range and low carrier effective masses. Furthermore, we successfully synthesize the double perovskite Cs2BiAgCl6, perform structural refinement using single-crystal X-ray diffraction, and characterize its optical properties via optical absorption and photoluminescence measurements. This new perovskite belongs to the Fm3虆m space group and consists of BiCl6 and AgCl6 octahedra alternating in a rock-salt face-centered cubic structure. From UV鈥搗is and photoluminescence measurements we obtain an indirect gap of 2.2 eV.

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.

Controlling Mesopore Size and Processability of Transparent Enzyme-Loaded Silica Films for Biosensing Applications

ACS Applied Materials & Interfaces American Chemical Society (ACS) 7:4 (2015) 2960-2971

Authors:

Oswaldo Pe虂rez-Anguiano, Bernard Wenger, Raphae虉l Pugin, Heinrich Hofmann, Emmanuel Scolan

Smart Textiles with Biosensing Capabilities

Advances in Science and Technology Trans Tech Publications 80 (2013) 129-135

Authors:

St茅phanie Pasche, Bastien Schyrr, Bernard Wenger, Emmanuel Scolan, R茅al Ischer, Guy Voirin

Au-labeled antibodies to enhance the sensitivity of a refractometric immunoassay: Detection of cocaine

Biosensors and Bioelectronics Elsevier 34:1 (2012) 94-99

Authors:

Bernard Wenger, Karl Kugelbrey, Hui Gao, Hans Sigrist, Guy Voirin

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