Zobrazeno 1 - 10
of 38
pro vyhledávání: '"Oliver S, Hutter"'
Autor:
Stephen Campbell, Laurie J. Phillips, Jonathan D. Major, Oliver S. Hutter, Ryan Voyce, Yongtao Qu, Neil S. Beattie, Guillaume Zoppi, Vincent Barrioz
Publikováno v:
Frontiers in Chemistry, Vol 10 (2022)
Simple compound antimony selenide (Sb2Se3) is a promising emergent light absorber for photovoltaic applications benefiting from its outstanding photoelectric properties. Antimony selenide thin film solar cells however, are limited by low open circuit
Externí odkaz:
https://doaj.org/article/72428bec093748afbbcbdd2fef03b112
Autor:
Wooseok Yang, Jin Hyun Kim, Oliver S. Hutter, Laurie J. Phillips, Jeiwan Tan, Jaemin Park, Hyungsoo Lee, Jonathan D. Major, Jae Sung Lee, Jooho Moon
Publikováno v:
Nature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
While photoelectrochemical water splitting offers an integrated means to convert sunlight to a renewable fuel, cost-effective light-absorbers are rare. Here, authors report Sb2Se3 photocathodes for high-performance photoelectrochemical water splittin
Externí odkaz:
https://doaj.org/article/f47eda7477cb4261a0cd3e6d3fc82141
Publikováno v:
Energy Advances. 2:12-33
The complicated and unconventional defect chemistry of Sb2Se3 largely dictates photovoltaic device performance. This comprehensive review aims to increase understanding of defect engineering, which is essential for further efficiency improvements.
Autor:
Prakriti Kayastha, Devendra Tiwari, Adam Holland, Oliver S. Hutter, Ken Durose, Lucy D. Whalley, Giulia Longo
Publikováno v:
Solar RRL. 7
Autor:
D Alicia, Garcia-Osorio, Thomas P, Shalvey, Liam, Banerji, Khezar, Saeed, Gaia, Neri, Laurie J, Phillips, Oliver S, Hutter, Carla, Casadevall, Daniel, Antón-García, Erwin, Reisner, Jonathan D, Major, Alexander J, Cowan
Publikováno v:
Chemical communications (Cambridge, England).
We report a H
Autor:
Ryan Voyce, Stephen Campbell, Oliver S. Hutter, Guillaume Zoppi, Neil S. Beattie, Elizabeth A. Gibson, Vincent Barrioz
Publikováno v:
2022 IEEE 49th Photovoltaics Specialists Conference (PVSC).
Autor:
Tien-Lin Lee, Pardeep K. Thakur, Matthew J. Smiles, Leanne A. H. Jones, Vinod R. Dhanak, Oliver S. Hutter, Jack E. N. Swallow, Thomas J. Featherstone, Huw Shiel, Tim D. Veal, Laurie J. Phillips, Jonathan D. Major
Publikováno v:
ACS APPLIED ENERGY MATERIALS
Sb2Se3 is a promising material for use in photovoltaics, but the optimum device structure has not yet been identified. This study provides band alignment measurements between Sb2Se3, identical to that used in high-efficiency photovoltaic devices, and
Autor:
Vinod R. Dhanak, Chris Leighton, Tien-Lin Lee, Silvia Mariotti, Pardeep K. Thakur, Christopher N. Savory, Thomas J. Featherstone, Huw Shiel, Oliver S. Hutter, David O. Scanlon, Theodore D. C. Hobson, Mark Farnworth, Jack E. N. Swallow, Ken Durose, Leanne A. H. Jones, Matthew J. Smiles, Leon Bowen, Bhaskar Das, Pabitra K. Nayak, Henry J. Snaith, Tim D. Veal, Guillaume Zoppi, Jonathan D. Major, Laurie J. Phillips
Publikováno v:
Chemistry of materials, 2020, Vol.32(6), pp.2621-2630 [Peer Reviewed Journal]
The carrier-type of the emerging photovoltaic Sb2Se3 was evaluated for both thin films and bulk crystals via a range of complementary techniques. X-ray photoelectron spectroscopy (XPS), hot probe, Hall effect, and surface photovoltage spectroscopy sh
Autor:
Nicole Fleck, Oliver S. Hutter, Ken Durose, Tat Ming Ng, Luke M. Daniels, Theodore D. C. Hobson, Jonathan D. Major
Publikováno v:
Crystal Growth & Design
Solid solutions in the series Cu2ZnSnS4xSe4–4x (CZTSSe) are of interest for PV applications. The purpose of this work was to grow bulk crystalline samples over the entire composition range to allow the Vegard relation (lattice parameter variation w
Autor:
Jeiwan Tan, S. David Tilley, Jonathan D. Major, Hyeok Chan Kwon, Hyungsoo Lee, Laurie J. Phillips, J. Lee, Jaemin Park, Woo Seok Yang, Oliver S. Hutter, Jooho Moon
Publikováno v:
Energy & Environmental Science
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and transport. To achieve a high solar-to-hydrogen (STH) conversion efficiency, elaborate strategies yielding a high photocurrent in a tandem configuration