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Experimental determination of band offsets of NiO-based thin film heterojunctions: Journal of Applied Physics: Vol 116, No 16
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Nickel Oxide–Based Heterostructures with Large Band Offsets - Karsthof - 2020 - physica status solidi (b) - Wiley Online Library
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Tuning of structural, optical band gap, and electrical properties of room-temperature-grown epitaxial thin films through the Fe2O3:NiO ratio | Scientific Reports
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Significant Reduction in NiO Band Gap Upon Formation of LixNi1−xO alloys: Applications To Solar Energy Conversion - Alidoust - 2014 - ChemSusChem - Wiley Online Library
Fabrication and Interfacial Electronic Structure of Wide Bandgap NiO and Ga2O3 p–n Heterojunction | ACS Applied Electronic Materials
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The optical band gap energy of (a) bare NiO (inset: UV-vis absorption... | Download Scientific Diagram
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Electronics | Free Full-Text | Transparent All-Oxide Hybrid NiO:N/TiO2 Heterostructure for Optoelectronic Applications
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Nanomaterials | Free Full-Text | Heterostructured NiO/ZnO Nanorod Arrays with Significantly Enhanced H2S Sensing Performance
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Figure 4 | Investigation of the properties of nanostructured nickel oxide NiO thin films irradiated at different γ-doses | SpringerLink
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Absorbance Curve (Band gap) of NiO (a) as prepared (b) 350 °C and (c)... | Download Scientific Diagram
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Tuning of structural, optical band gap, and electrical properties of room-temperature-grown epitaxial thin films through the Fe2O3:NiO ratio | Scientific Reports
italic toggle='yes'>p</italic>-Type semiconducting nickel oxide as an efficiency-enhancing anode interfacia
italic toggle='yes'>p</italic>-Type semiconducting nickel oxide as an efficiency-enhancing anode interfacia
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Tailored Electronic Band Gap and Valance Band Edge of Nickel Oxide via p-Type Incorporation | The Journal of Physical Chemistry C
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Structural, electronic structure, and band alignment properties at epitaxial NiO/Al2O3 heterojunction evaluated from synchrotron based X-ray techniques: Journal of Applied Physics: Vol 119, No 16
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Synthesis, characterization and optical band gap of NiO nanoparticles derived from anthranilic acid precursors via a thermal decomposition route - ScienceDirect
A computational study on the variation of Bandgap due to native defects in non-stoichiometric NiO and Pd, Pt doping in stoichiom
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Synthesis and characterization of NiO nanoparticles by chemical as well as green routes and their comparisons with respect to cytotoxic effect and toxicity studies in microbial and MCF-7 cancer cell models
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Optical band gap energy of NiO films in a colored state and bleached... | Download Scientific Diagram
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