Amorphous silicon solar cells with stable protocrystalline silicon and unstable microcrystalline silicon at the onset of a microcrystalline regime as i-layers
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Condensed Matter Physics,Ceramics and Composites,Electronic, Optical and Magnetic Materials
Reference28 articles.
1. Reversible conductivity changes in discharge‐produced amorphous Si
2. Evolutionary phase diagrams for plasma-enhanced chemical vapor deposition of silicon thin films from hydrogen-diluted silane
3. Optimization of hydrogenated amorphous silicon p–i–n solar cells with two-step i layers guided by real-time spectroscopic ellipsometry
4. Performance and stability of Si:H p–i–n solar cells with i layers prepared at the thickness-dependent amorphous-to-microcrystalline phase boundary
5. Contributions of D0 and non-D0 Gap States to the Kinetics of Light Induced Degradation of Amorphous Silicon under 1 sun Illumination
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1. Yttrium Fluoride-Based Electron-Selective Contacts for Crystalline Silicon Solar Cells;ACS Applied Energy Materials;2021-03-10
2. Impact of hydrogen dilution on optical properties of intrinsic hydrogenated amorphous silicon films prepared by high density plasma chemical vapor deposition for solar cell applications;Journal of Modern Optics;2013-01
3. Degradation of organic photovoltaic devices: a review;Nanomaterials and Energy;2013-01
4. Improvement of Photodegradation of Silicon Thin-film Solar Cells by pc-Si:H/a-Si:H Multilayers;Energy Procedia;2012
5. Modeling of annealing kinetics for hydrogenated-amorphous-silicon-based solar cells using two-component metastable defects;Applied Physics Letters;2006-06-12
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