Towards high efficiency nanowire solar cells G Otnes, MT Borgström Nano Today 12, 31-45, 2017 | 228 | 2017 |
Building-Integrated Photovoltaic (BIPV) products and systems: A review of energy-related behavior N Martín-Chivelet, K Kapsis, HR Wilson, V Delisle, R Yang, L Olivieri, ... Energy and Buildings 262, 111998, 2022 | 165 | 2022 |
Understanding InP nanowire array solar cell performance by nanoprobe-enabled single nanowire measurements G Otnes, E Barrigón, C Sundvall, KE Svensson, M Heurlin, G Siefer, ... Nano letters 18 (5), 3038-3046, 2018 | 101 | 2018 |
Strategies to obtain pattern fidelity in nanowire growth from large-area surfaces patterned using nanoimprint lithography G Otnes, M Heurlin, M Graczyk, J Wallentin, D Jacobsson, A Berg, ... Nano Research 9, 2852-2861, 2016 | 76 | 2016 |
Comparing Hall effect and field effect measurements on the same single nanowire O Hultin, G Otnes, MT Borgstrom, M Bjork, L Samuelson, K Storm Nano letters 16 (1), 205-211, 2016 | 54 | 2016 |
Radiation tolerant nanowire array solar cells P Espinet-Gonzalez, E Barrigón, G Otnes, G Vescovi, C Mann, RM France, ... ACS nano 13 (11), 12860-12869, 2019 | 48 | 2019 |
Absorption and transmission of light in III–V nanowire arrays for tandem solar cell applications N Anttu, V Dagytė, X Zeng, G Otnes, M Borgström Nanotechnology 28 (20), 205203, 2017 | 45 | 2017 |
InxGa1–xP Nanowire Growth Dynamics Strongly Affected by Doping Using Diethylzinc G Otnes, M Heurlin, X Zeng, MT Borgstrom Nano letters 17 (2), 702-707, 2017 | 39 | 2017 |
InP/GaInP nanowire tunnel diodes X Zeng, G Otnes, M Heurlin, RT Mourão, MT Borgström Nano Research 11, 2523-2531, 2018 | 37 | 2018 |
Nanowire solar cells: a new radiation hard PV technology for space applications P Espinet-Gonzalez, E Barrigón, Y Chen, G Otnes, G Vescovi, C Mann, ... IEEE Journal of Photovoltaics 10 (2), 502-507, 2020 | 29 | 2020 |
Nanobeam X-ray fluorescence dopant mapping reveals dynamics of in situ Zn-doping in nanowires A Troian, G Otnes, X Zeng, L Chayanun, V Dagyte, S Hammarberg, ... Nano Letters 18 (10), 6461-6468, 2018 | 24 | 2018 |
Doping evaluation of InP nanowires for tandem junction solar cells F Lindelöw, M Heurlin, G Otnes, V Dagytė, D Lindgren, O Hultin, K Storm, ... Nanotechnology 27 (6), 065706, 2016 | 23 | 2016 |
The performance and amphibious operation potential of a new floating photovoltaic technology T Kjeldstad, VS Nysted, M Kumar, S Oliveira-Pinto, G Otnes, D Lindholm, ... Solar Energy 239, 242-251, 2022 | 22 | 2022 |
Operando surface characterization of InP nanowire p–n junctions SR McKibbin, J Colvin, A Troian, JV Knutsson, JL Webb, G Otnes, ... Nano letters 20 (2), 887-895, 2019 | 20 | 2019 |
Combining nanofocused x-rays with electrical measurements at the NanoMAX beamline L Chayanun, S Hammarberg, H Dierks, G Otnes, A Björling, MT Borgström, ... Crystals 9 (8), 432, 2019 | 18 | 2019 |
Nanoscale mapping of carrier collection in single nanowire solar cells using X-ray beam induced current L Chayanun, G Otnes, A Troian, S Hammarberg, D Salomon, ... Journal of synchrotron radiation 26 (1), 102-108, 2019 | 16 | 2019 |
Unravelling processing issues of nanowire-based solar cell arrays by use of electron beam induced current measurements E Barrigon, Y Zhang, L Hrachowina, G Otnes, MT Borgström Nano Energy 71, 104575, 2020 | 14 | 2020 |
Culturing and patch clamping of Jurkat T cells and neurons on Al 2 O 3 coated nanowire arrays of altered morphology J Harberts, R Zierold, C Fendler, A Koitmäe, P Bayat, I Fernandez-Cuesta, ... RSC advances 9 (20), 11194-11201, 2019 | 13 | 2019 |
Time-resolved photoluminescence characterization of GaAs nanowire arrays on native substrate V Dagytė, E Barrigón, W Zhang, X Zeng, M Heurlin, G Otnes, N Anttu, ... Nanotechnology 28 (50), 505706, 2017 | 12 | 2017 |
Simplifying nanowire Hall effect characterization by using a three-probe device design O Hultin, G Otnes, L Samuelson, K Storm Nano Letters 17 (2), 1121-1126, 2017 | 12 | 2017 |