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In Situ Regenerative Adduct Assisted p-Type Doping of Organic Semiconductor. [PDF]
Patel BK +8 more
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Optimization of Difluorophenazine-Based Polymers via Substituent Modifications for Solar Energy Applications. [PDF]
Puspitasari +8 more
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Highly Transparent and Bifacial Dye-Sensitized Solar Cells via Slot-Die Coating for Greenhouse-Integrated Agrivoltaics. [PDF]
Nikolakopoulou A +5 more
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Recent Development of Back-Contacted Single-Crystal Perovskite Solar Cells. [PDF]
Cheng X.
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Self-Assembly Molecular Ordering for Strengthened Interface and Efficient Perovskite/Silicon Tandem Solar Cells. [PDF]
Yu X +11 more
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Optimization strategies for crystal orientation in antimony-based chalcogenide thin-film solar cells. [PDF]
Chen X +6 more
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2017
This chapter reviews simulation models for thin-film solar cells, and especially the specific challenges encountered in modeling of thin-film cells based on emerging technologies. Thin-film technology is characterized by several advantages over conventional technology.
Matthias Auf der Maur +2 more
openaire +3 more sources
This chapter reviews simulation models for thin-film solar cells, and especially the specific challenges encountered in modeling of thin-film cells based on emerging technologies. Thin-film technology is characterized by several advantages over conventional technology.
Matthias Auf der Maur +2 more
openaire +3 more sources
Japanese Journal of Applied Physics, 1982
A new selenium thin-film solar cell of superior performance has been developed. The cell incorporates an SnO2/CdSe/Se/Au structure and is fabricated at 250°C or lower by vacuum evaporation only. The maximum efficiency is attained at 60°C, and its value is 4.6% for an AM 1 (Air Mass 1), 100 mW/cm2. This indicates the possibility of using the cell at
Hideo Ito +4 more
openaire +1 more source
A new selenium thin-film solar cell of superior performance has been developed. The cell incorporates an SnO2/CdSe/Se/Au structure and is fabricated at 250°C or lower by vacuum evaporation only. The maximum efficiency is attained at 60°C, and its value is 4.6% for an AM 1 (Air Mass 1), 100 mW/cm2. This indicates the possibility of using the cell at
Hideo Ito +4 more
openaire +1 more source
Microcrystalline Organic Thin‐Film Solar Cells
Advanced Materials, 2013Microcrystalline organic films with tunable thickness are produced directly on an indium-tin-oxide substrate, by crystallizing a thin amorphous rubrene film followed by its use as a template for subsequent homoepitaxial growth. These films, with exciton diffusion lengths exceeding 200 nm, produce solar cells with increasing photocurrents at thicknesses
Verreet, Bregt +3 more
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Solar Energy, 1980
A one-day meeting on thin film solar cells, held on 7 May 1980 at Imperial College and sponsored by the Thin Films and Surfaces Group of The Institute of Physics, attracted 65 delegates, including a number from the continent. The morning session was concerned with CdS-based cells and began with a review of CdS:Cu2S and ZnCdS:Cu2S cells by R Hill ...
openaire +2 more sources
A one-day meeting on thin film solar cells, held on 7 May 1980 at Imperial College and sponsored by the Thin Films and Surfaces Group of The Institute of Physics, attracted 65 delegates, including a number from the continent. The morning session was concerned with CdS-based cells and began with a review of CdS:Cu2S and ZnCdS:Cu2S cells by R Hill ...
openaire +2 more sources

