Electronic Band Structures of Molybdenum and Tungsten Dichalcogenides by the GW Approach | The Journal of Physical Chemistry C
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Wide band gap and conducting tungsten carbide (WC) thin films prepared by hot wire chemical vapor deposition (HW-CVD) method - ScienceDirect
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Probing the electronic properties of bulk and monolayer crystals of tungsten dichalcogenides using magneto-spectroscopy
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Structural, Optical, Band Edge and Enhanced Photoelectrochemical Water Splitting Properties of Tin-Doped WO3
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Band-Gap Landscape Engineering in Large-Scale 2D Semiconductor van der Waals Heterostructures | ACS Nano
Understanding the advantage of hexagonal WO3 as an efficient photoanode for solar water splitting: a first-principles perspectiv
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Modulation of the band gap of tungsten oxide thin films through mixing with cadmium telluride towards photovoltaic applications - ScienceDirect
Band-gap expansion of tungsten oxide quantum dots synthesized in sub-nano porous silica - Chemical Communications (RSC Publishing)
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Band-gap expansion of tungsten oxide quantum dots synthesized in sub-nano porous silica. | Semantic Scholar
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Band structure of a fcc crystal of tungsten carbide beads immersed in... | Download Scientific Diagram
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Tuning the optical bandgap of TiO2-TiN composite films as photocatalyst in the visible light: AIP Advances: Vol 3, No 6
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Modulation of the band gap of tungsten oxide thin films through mixing with cadmium telluride towards photovoltaic applications - ScienceDirect
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Modulation of the band gap of tungsten oxide thin films through mixing with cadmium telluride towards photovoltaic applications - ScienceDirect
Monoclinic Tungsten Oxide with {100} Facet Orientation and Tuned Electronic Band Structure for Enhanced Photocatalytic Oxidations | ACS Applied Materials & Interfaces
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Modulation of the band gap of tungsten oxide thin films through mixing with cadmium telluride towards photovoltaic applications - ScienceDirect
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