Journal of Applied Physics · 2013 · 32 citations · 65 references
Optical MaterialsEngineeringOrganic Solar CellChemistryPhotovoltaicsBand GapSemiconductorsBetter AbsorptionIi-vi SemiconductorOptical PropertiesCompound SemiconductorMaterials ScienceSolar PowerSolar EnergySemiconductor MaterialFe-substituted SemiconductorsFe-substituted Indium ThiospinelsTransition Metal ChalcogenidesApplied PhysicsIndium Thiospinels In2s3Light Absorption
The indium thiospinels In2S3 and MgIn2S4 are promising host for the intermediated band (IB) photovoltaic materials due to their ideal band gap value. Here, the optical properties and electronic structure of Fe-doped In2S3 and MgIn2S4 have been investigated. All the Fe-substituted semiconductors exhibit two additional absorption bands at about 0.7 and 1.25 eV, respectively. The results of first-principles calculations revealed that the Fe substituted at the octahedral In site would introduce a partially filled IB into the band gap. Thanks to the formation of IB, the Fe-substituted semiconductors have the ability to absorb the photons with energies below the band gap. With the wide-spectrum absorption of solar energy, these materials possess potential applications in photovoltaic domain.
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Projector augmented-wave method
Peter E. Blöchl · Physical review. B, Condensed matter · 1994 · 87.4K citations
Detailed Balance Limit of Efficiency of<i>p-n</i>Junction Solar Cells
W. Shockley, H. J. Queisser · Journal of Applied Physics · 1961 · 12.6K citations