Search Results - "Mood, Thomas C"
-
1
InP-Based Tunnel Junctions for Microconcentrator Photovoltaics
Published in IEEE journal of photovoltaics (01-11-2023)“…To further improve the performance of mechanically stacked microconcentrator photovoltaic devices, we have studied high-transparency tunnel junctions for…”
Get full text
Journal Article -
2
Towards Transfer Printing GaSb Membranes Using Selective Etchants
Published in 2023 IEEE 50th Photovoltaic Specialists Conference (PVSC) (11-06-2023)“…To support micro-transfer printing of antimonide photovoltaics, we characterized the effectiveness of two selective etchants. Using 2 μm GaSb membranes as a…”
Get full text
Conference Proceeding -
3
InP-Based Tunnel Junctions for Micro-Concentrator Photovoltaics
Published in 2023 IEEE 50th Photovoltaic Specialists Conference (PVSC) (11-06-2023)“…To further improve the performance of mechanically stacked micro-concentrator photovoltaic devices, we have studied tunnel junctions for inclusion in triple…”
Get full text
Conference Proceeding -
4
A micro-concentrator photovoltaic module incorporating a bifacial silicon solar cell for direct and diffuse light capture
Published in 2019 IEEE 46th Photovoltaic Specialists Conference (PVSC) (01-06-2019)“…In this paper, we report findings from a micro CPV module, employing 170 μm GaAs-based 2J CPV cells, assembled on glass substrates using micro-transfer…”
Get full text
Conference Proceeding -
5
Micro-Transfer Printer-Assembled Five Junction CPV Microcell Development
Published in 2019 IEEE 46th Photovoltaic Specialists Conference (PVSC) (01-06-2019)“…We have developed multijunction solar cells on both GaAs and InP platforms to split the solar spectrum efficiently among subcells that maintain lattice-match…”
Get full text
Conference Proceeding -
6
Designing Radiation Tolerant Micro-Concentrator Photovoltaics with Low Perimeter Dark Current
Published in Conference record of the IEEE Photovoltaic Specialists Conference (09-06-2024)“…Micro-concentrator photovoltaics aim to provide a boosted power efficiency and to enable higher III-V manufactoring capability for space power systems while…”
Get full text
Conference Proceeding