Dongyoung Kim
Dongyoung Kim
Trainee Patent Attorney, Reddie & Grose Patent and Trade Mark Attorneys
Dirección de correo verificada de ucl.ac.uk - Página principal
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High Detectivity and Transparent Few‐Layer MoS2/Glassy‐Graphene Heterostructure Photodetectors
H Xu, X Han, X Dai, W Liu, J Wu, J Zhu, D Kim, G Zou, KA Sablon, ...
Advanced Materials 30 (13), 1706561, 2018
452018
Defect-Free Self-Catalyzed GaAs/GaAsP Nanowire Quantum Dots Grown on Silicon Substrate
J Wu, A Ramsay, AM Sanchez, Y Zhang, D Kim, FSF Brossard, X Hu, ...
362015
Influence of Droplet Size on Growth of Self−Catalyzed Ternary GaAsP Nanowires
Y Zhang, AM Sanchez, Y Sun, J Wu, M Aagesen, S Huo, D Kim, P Jurczak, ...
Nano Letters, 2015
272015
Doping of Self-Catalyzed Nanowires under the Influence of Droplets
Y Zhang, Z Sun, AM Sanchez, M Ramsteiner, M Aagesen, J Wu, D Kim, ...
Nano letters 18 (1), 81-87, 2017
152017
Light-trapping enhanced thin-film III-V quantum dot solar cells fabricated by epitaxial lift-off
F Cappelluti, D Kim, M van Eerden, AP Cédola, T Aho, G Bissels, ...
Solar Energy Materials and Solar Cells 181, 83-92, 2018
142018
Growth of Pure Zinc-Blende GaAs (P) Core–Shell Nanowires with Highly Regular Morphology
Y Zhang, HA Fonseka, M Aagesen, JA Gott, AM Sanchez, J Wu, D Kim, ...
Nano letters 17 (8), 4946-4950, 2017
142017
InAs/InGaP quantum dot solar cells with an AlGaAs interlayer
P Lam, J Wu, M Tang, D Kim, S Hatch, I Ramiro, VG Dorogan, ...
Solar Energy Materials and Solar Cells 144, 96-101, 2016
132016
Effect of Rapid Thermal Annealing on InAs/GaAs Quantum Dot Solar Cells
PM Lam, J Wu, S Hatch, D Kim, M Tang, H Liu, J Wilson, R Allison
IET Optoelectronics 9 (2), 65 – 68, 2014
132014
Si-Doped InAs/GaAs Quantum-Dot Solar Cell With AlAs Cap Layers
D Kim, M Tang, J Wu, S Hatch, Y Maidaniuk, V Dorogan, YI Mazur, ...
IEEE Journal of Photovoltaics 6 (4), 906 - 911, 2016
112016
Type-II InAs/GaAsSb quantum dot solar cells with GaAs interlayer
D Kim, S Hatch, J Wu, KA Sablon, P Lam, P Jurczak, M Tang, WP Gillin, ...
IEEE Journal of Photovoltaics 8 (3), 2018
102018
Novel concepts for high-efficiency lightweight space solar cells
F Cappelluti, G Ghione, M Gioannini, G Bauhuis, P Mulder, J Schermer, ...
European Space Agency-ESA 16, 1-8, 2016
72016
Growth and Fabrication of High‐Quality Single Nanowire Devices with Radial p‐i‐n Junctions
Y Zhang, AM Sanchez, M Aagesen, S Huo, HA Fonseka, JA Gott, D Kim, ...
Small 15 (3), 1803684, 2019
62019
TiO2 nanofiber photoelectrochemical cells loaded with sub-12 nm AuNPs: Size dependent performance evaluation
TJ Macdonald, F Ambroz, M Batmunkh, Y Li, D Kim, C Contini, R Poduval, ...
Materials Today Energy 9, 254-263, 2018
62018
Physics-Based Modeling and Experimental Study of Si-Doped InAs/GaAs Quantum Dot Solar Cells
AP Cédola, D Kim, A Tibaldi, M Tang, A Khalili, J Wu, H Liu, F Cappelluti
International Journal of Photoenergy 2018, 2018
62018
Optimisation of 1.3-μm InAs/GaAs Quantum-Dot Lasers Monolithically Grown on Si Substrates
M Tang, S Chen, J Wu, Q Jiang, D Kim, A Seeds, H Liu
Journal of Physics: Conference Series 619 (1), 012011, 2015
32015
O-band InAs/GaAs quantum dot laser monolithically integrated on exact (0 0 1) Si substrate
K Li, Z Liu, M Tang, M Liao, D Kim, H Deng, AM Sanchez, R Beanland, ...
Journal of Crystal Growth 511, 56-60, 2019
22019
Enabling high-efficiency inas/gaas quantum dot solar cells by epitaxial lift-off and light management
F Cappelluti, AP Cédola, A Khalili, F Elsehrawy, G Bauhuis, P Mulder, ...
2017 IEEE 44th Photovoltaic Specialist Conference (PVSC), 1189-1192, 2017
12017
Growth of high-quality self-catalyzed core-shell GaAsP nanowires on Si substrates
Y Zhang, M Aagesen, AM Sanchez, J Wu, R Beanland, T Ward, D Kim, ...
SPIE OPTO, 97580E-97580E-8, 2016
12016
Investigation into the current loss in InAs/GaAs quantum dot solar cells with Si-doped quantum dots
S Chan, D Kim, M Tang, X Li, H Liu
Journal of Physics D: Applied Physics 52 (50), 505108, 2019
2019
InAs/GaAs quantum dot solar cells with quantum dots in the base region
S Chan, D Kim, AM Sanchez, Y Zhang, M Tang, J Wu, H Liu
IET Optoelectronics 13 (5), 215-217, 2019
2019
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