Invention Grant
US08173891B2 Monolithic, multi-bandgap, tandem, ultra-thin, strain-counterbalanced, photovoltaic energy converters with optimal subcell bandgaps
有权
具有最佳子电池带隙的单片,多带隙,串联,超薄,应变 - 平衡光伏能量转换器
- Patent Title: Monolithic, multi-bandgap, tandem, ultra-thin, strain-counterbalanced, photovoltaic energy converters with optimal subcell bandgaps
- Patent Title (中): 具有最佳子电池带隙的单片,多带隙,串联,超薄,应变 - 平衡光伏能量转换器
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Application No.: US12121463Application Date: 2008-05-15
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Publication No.: US08173891B2Publication Date: 2012-05-08
- Inventor: Mark W. Wanlass , Angelo Mascarenhas
- Applicant: Mark W. Wanlass , Angelo Mascarenhas
- Applicant Address: US CO Golden
- Assignee: Alliance for Sustainable Energy, LLC
- Current Assignee: Alliance for Sustainable Energy, LLC
- Current Assignee Address: US CO Golden
- Agent Paul J. White; W. LaNelle Owens; John C. Stolpa
- Main IPC: H01L31/00
- IPC: H01L31/00 ; H01L31/042 ; H01L21/302

Abstract:
Modeling a monolithic, multi-bandgap, tandem, solar photovoltaic converter or thermophotovoltaic converter by constraining the bandgap value for the bottom subcell to no less than a particular value produces an optimum combination of subcell bandgaps that provide theoretical energy conversion efficiencies nearly as good as unconstrained maximum theoretical conversion efficiency models, but which are more conducive to actual fabrication to achieve such conversion efficiencies than unconstrained model optimum bandgap combinations. Achieving such constrained or unconstrained optimum bandgap combinations includes growth of a graded layer transition from larger lattice constant on the parent substrate to a smaller lattice constant to accommodate higher bandgap upper subcells and at least one graded layer that transitions back to a larger lattice constant to accommodate lower bandgap lower subcells and to counter-strain the epistructure to mitigate epistructure bowing.
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