Silicon heterojunction solar cell with interdigitated back contacts for a photoconversion efficiency over 26%
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- Type
- article
- Published
- 2017-03-20
- Cited by
- 2,392
- References
- 44
- OpenAlex
- https://openalex.org/W2603789271
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:114171665
Keywords
Materials science, Silicon, Photovoltaics, Energy conversion efficiency, Optoelectronics
References
- High Efficiency Copper Electroplated Heterojunction Solar Cells
- The Passivated Emitter and Rear Cell (PERC): From conception to mass production
- Approaching the 29% limit efficiency of silicon solar cells
- Back-Contacted Silicon Heterojunction Solar Cells: Optical-Loss Analysis and Mitigation
- High Efficiency Copper Electroplated Heterojunction Solar Cells and Modules – The Path towards 25% Cell Efficiency
- HITTM cells—high-efficiency crystalline Si cells with novel structure
- High Efficiency Silver-Free Heterojunction Silicon Solar Cell
- Analysis of a-Si:H/TCO contact resistance for the Si heterojunction back-contact solar cell
- The interdigitated back contact solar cell: A silicon solar cell for use in concentrated sunlight
- Measuring and interpreting the lifetime of silicon wafers
- Efficient interdigitated back‐contacted silicon heterojunction solar cells
- Limiting efficiency of crystalline silicon solar cells due to Coulomb‐enhanced Auger recombination
- Improved quantitative description of Auger recombination in crystalline silicon
- Status and prospects of Al2O3-based surface passivation schemes for silicon solar cells
- Development of Heterojunction Back Contact Si Solar Cells
- Influence of the emitter coverage on interdigitated back contact (IBC) silicon heterojunction (SHJ) solar cells
- Reassessment of the Limiting Efficiency for Crystalline Silicon Solar Cells
- Design, fabrication and characterisation of a 24.4% efficient interdigitated back contact solar cell
- Analyzing Back Contacts of Silicon Solar Cells by Suns-Voc-Measurement at High Illumination Densities
- Solar cell efficiency tables (version 39)
Cited by
- Engineering graphene and TMDs based van der Waals heterostructures for photovoltaic and photoelectrochemical solar energy conversion.
- Laser induced defects in silicon solar cells and laser annealing
- V2Ox-based hole-selective contacts for c-Si interdigitated back-contacted solar cells
- Borosiloxane boron diffusion for p-emitter formation on n-type silicon wafers
- Simple processing of back-contacted silicon heterojunction solar cells using selective-area crystalline growth
- Reliability and Degradation of Solar PV Modules—Case Study of 19-Year-Old Polycrystalline Modules in Ghana
- Insights into the role of the interface defects density and the bandgap of the back surface field for efficient p-type silicon heterojunction solar cells
- n-Type Si solar cells with passivating electron contact: Identifying sources for efficiency limitations by wafer thickness and resistivity variation
- Industrially feasible, dopant‐free, carrier‐selective contacts for high‐efficiency silicon solar cells
- Improvement of the recombination and infrared light losses by rear surface chemical polishing in silicon heterojunction solar cells
- Potentials of mixed-phase doped layers in p-type Si heterojunction solar cells with ZnO:Al
- Investigation of MoOx/n‐Si strong inversion layer interfaces via dopant‐free heterocontact
- Analysis of the recombination mechanisms of a silicon solar cell with low bandgap-voltage offset
- Improvement of the SRH bulk lifetime upon formation of n-type POLO junctions for 25% efficient Si solar cells
- Recent Development of Organic–Inorganic Perovskite‐Based Tandem Solar Cells
- Engineering efficient energy and electron transfer in the all-solid-state biophotovoltaic and solar-to-fuel nanodevices containing photosystem I and cytochrome c553 from a red extremophilic microalga Cyanidioschyzon merolae
- Dielectric surface passivation for silicon solar cells: A review
- Perovskite Nanopillar Array Based Tandem Solar Cell
- Exceeding conversion efficiency of 26% by heterojunction interdigitated back contact solar cell with thin film Si technology
- High-efficiency III–V//Si tandem solar cells enabled by the Pd nanoparticle array-mediated “smart stack” approach
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