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Effects of phosphorus-doping on energy band-gap, structural, surface, and photocatalytic characteristics of emulsion-based sol-gel derived TiO2 nano-powder - ScienceDirect
An energy band engineering design to enlarge the band gap of KTiOPO4 (KTP)-type sulfates via aliovalent substitution - Journal of Materials Chemistry C (RSC Publishing)
Wurtzite CoO: a direct band gap oxide suitable for a photovoltaic absorber - Chemical Communications (RSC Publishing)
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Band gap engineering design for construction of energy-levels well-matched semiconductor heterojunction with enhanced visible-light-driven photocatalytic activity - RSC Advances (RSC Publishing)
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Band gap engineering of MnO2 through in situ Al-doping for applicable pseudocapacitors - RSC Advances (RSC Publishing)
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Energy band structure and density of states for KCl, RbCl and LiCl at... | Download Scientific Diagram
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Direct tuning of the band gap via electronically-active organic cations and large piezoelectric response in one-dimensional hybrid halides from first-principles - Journal of Materials Chemistry C (RSC Publishing)
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Formation of an intermediate band in the energy gap of TiO2 by Cu–N-codoping: First principles study and experimental evidence - ScienceDirect
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Energy band diagram of Ag NPs and Ga 2 O 3 NWs pn P + -Si. (a) at the... | Download Scientific Diagram
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