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Electronic structures and optical properties of monoclinic ZrO2 studied by  first-principles local density approximation + U app
Electronic structures and optical properties of monoclinic ZrO2 studied by first-principles local density approximation + U app

PDF] SYNTHESIS AND CHARACTERIZATION OF LOW BANDGAP NANOCRYSTALLINE t- ZIRCONIA | Semantic Scholar
PDF] SYNTHESIS AND CHARACTERIZATION OF LOW BANDGAP NANOCRYSTALLINE t- ZIRCONIA | Semantic Scholar

Tailoring structural and optical properties of ZrO2 with nickel doping |  SpringerLink
Tailoring structural and optical properties of ZrO2 with nickel doping | SpringerLink

mp-2858: ZrO2 (Monoclinic, P2_1/c, 14)
mp-2858: ZrO2 (Monoclinic, P2_1/c, 14)

Tuning the bandgap of m-ZrO2 by incorporation of copper nanoparticles into  visible region for the treatment of organic pollutants - ScienceDirect
Tuning the bandgap of m-ZrO2 by incorporation of copper nanoparticles into visible region for the treatment of organic pollutants - ScienceDirect

Synthesis, characterization and electrochemical properties of iron-zirconia  solid solution nanoparticles prepared using a sol–
Synthesis, characterization and electrochemical properties of iron-zirconia solid solution nanoparticles prepared using a sol–

Electronic structures and optical properties of monoclinic ZrO2 studied by  first-principles local density approximation + U app
Electronic structures and optical properties of monoclinic ZrO2 studied by first-principles local density approximation + U app

Electronic properties of the Zr–ZrO2–SiO2–Si„100… gate stack structure
Electronic properties of the Zr–ZrO2–SiO2–Si„100… gate stack structure

The direct allowed optical energy band gap of ZrO 2 , ZrO 2 :Co... |  Download Scientific Diagram
The direct allowed optical energy band gap of ZrO 2 , ZrO 2 :Co... | Download Scientific Diagram

ZrO2
ZrO2

Investigation of the Energy Band at the Molybdenum Disulfide and ZrO2  Heterojunctions | Discover Nano | Full Text
Investigation of the Energy Band at the Molybdenum Disulfide and ZrO2 Heterojunctions | Discover Nano | Full Text

Monoclinic Zirconium Oxide Nanostructures Having Tunable Band Gap  Synthesized under Extremely Non-Equilibrium Plasma Conditions
Monoclinic Zirconium Oxide Nanostructures Having Tunable Band Gap Synthesized under Extremely Non-Equilibrium Plasma Conditions

Magnetic properties of nitrogen-doped ZrO2: Theoretical evidence of absence  of room temperature ferromagnetism | Scientific Reports
Magnetic properties of nitrogen-doped ZrO2: Theoretical evidence of absence of room temperature ferromagnetism | Scientific Reports

Rare earth oxides in zirconium dioxide: How to turn a wide band gap metal  oxide into a visible light active photocatalyst - ScienceDirect
Rare earth oxides in zirconium dioxide: How to turn a wide band gap metal oxide into a visible light active photocatalyst - ScienceDirect

Band Structure Engineering and Optical Properties of Pristine and Doped  Monoclinic Zirconia (m-ZrO2): Density Functional Theory Theoretical  Prospective | ACS Omega
Band Structure Engineering and Optical Properties of Pristine and Doped Monoclinic Zirconia (m-ZrO2): Density Functional Theory Theoretical Prospective | ACS Omega

Synthesis of ZrO2:Fe nanostructures with visible-light driven H2 evolution  activity
Synthesis of ZrO2:Fe nanostructures with visible-light driven H2 evolution activity

BALD Engineering - Born in Finland, Born to ALD: Study on band-gaps of a  variety of classic ALD high-k´s via REELS
BALD Engineering - Born in Finland, Born to ALD: Study on band-gaps of a variety of classic ALD high-k´s via REELS

Structure and electrical levels of point defects in monoclinic zirconia
Structure and electrical levels of point defects in monoclinic zirconia

Zero-field energy-band alignments of ZrO 2 /SiO 2 /Si stacks for ( a )... |  Download Scientific Diagram
Zero-field energy-band alignments of ZrO 2 /SiO 2 /Si stacks for ( a )... | Download Scientific Diagram

Band offsets in ZrO2/InGaZnO4 heterojunction: Applied Physics Letters: Vol  101, No 9
Band offsets in ZrO2/InGaZnO4 heterojunction: Applied Physics Letters: Vol 101, No 9

Interband Transitions in SolGel-Derived ZrO<sub>2</sub> Films under  Different Calcination Conditions
Interband Transitions in SolGel-Derived ZrO<sub>2</sub> Films under Different Calcination Conditions

Band diagram and carrier conduction mechanisms in ZrO/sub 2/ MIS structures
Band diagram and carrier conduction mechanisms in ZrO/sub 2/ MIS structures

Direct energy band gap of zirconia nanoparticles synthesized via arc... |  Download Scientific Diagram
Direct energy band gap of zirconia nanoparticles synthesized via arc... | Download Scientific Diagram

Figure 10 | Physical and electrical characterization of yttrium-stabilized  zirconia (YSZ) thin films deposited by sputtering and atomic-layer  deposition | SpringerLink
Figure 10 | Physical and electrical characterization of yttrium-stabilized zirconia (YSZ) thin films deposited by sputtering and atomic-layer deposition | SpringerLink

Dominating role of crystal structure over defect chemistry in black and  white zirconia on visible light photocatalytic activity | Scientific Reports
Dominating role of crystal structure over defect chemistry in black and white zirconia on visible light photocatalytic activity | Scientific Reports

Structural, electronic, and optical properties of ZrO2 from ab initio  calculations: Journal of Applied Physics: Vol 100, No 10
Structural, electronic, and optical properties of ZrO2 from ab initio calculations: Journal of Applied Physics: Vol 100, No 10

Tuning the bandgap of m-ZrO2 by incorporation of copper nanoparticles into  visible region for the treatment of organic pollutants - ScienceDirect
Tuning the bandgap of m-ZrO2 by incorporation of copper nanoparticles into visible region for the treatment of organic pollutants - ScienceDirect

ZrO2/g-C3N4 with enhanced photocatalytic degradation of methylene blue  under visible light irradiation | Journal of Materials Research | Cambridge  Core
ZrO2/g-C3N4 with enhanced photocatalytic degradation of methylene blue under visible light irradiation | Journal of Materials Research | Cambridge Core