Stretchable GaAs Photovoltaics with Designs That Enable High Areal Coverage
Strategies are presented for achieving, simultaneously, both large areal coverage and high stretchability by using elastomeric substrates with surface relief in geometries that confine strains at the locations of the interconnections, and away from the devices. The studies involve a combination of t...
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Veröffentlicht in: | Advanced materials (Weinheim) 2011-02, Vol.23 (8), p.986-991 |
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container_title | Advanced materials (Weinheim) |
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creator | Lee, Jongho Wu, Jian Shi, Mingxing Yoon, Jongseung Park, Sang-Il Li, Ming Liu, Zhuangjian Huang, Yonggang Rogers, John A. |
description | Strategies are presented for achieving, simultaneously, both large areal coverage and high stretchability by using elastomeric substrates with surface relief in geometries that confine strains at the locations of the interconnections, and away from the devices. The studies involve a combination of theory and experiment to reveal the essential mechanics, and include demonstrations of the ideas in stretchable solar modules that use ultrathin, single junction GaAs solar cells. |
doi_str_mv | 10.1002/adma.201003961 |
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subjects | Arsenicals - chemistry Electric Power Supplies Finite Element Analysis Gallium - chemistry Gallium arsenide Gallium arsenides Photovoltaic cells photovoltaics Solar cells Solar Energy stretchable electronics |
title | Stretchable GaAs Photovoltaics with Designs That Enable High Areal Coverage |
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