Home

násilný Hassy dilema bivo4 band gap přes přízvuk Věda

Aerosolв•'Assisted CVD of Bismuth Vanadate Thin Films and Their  Photoelectrochemical Properties<link href='#cvde2014
Aerosolв•'Assisted CVD of Bismuth Vanadate Thin Films and Their Photoelectrochemical Properties<link href='#cvde2014

Bandgap Tunability in Sb‐Alloyed BiVO4 Quaternary Oxides as Visible Light  Absorbers for Solar Fuel Applications - Loiudice - 2015 - Advanced  Materials - Wiley Online Library
Bandgap Tunability in Sb‐Alloyed BiVO4 Quaternary Oxides as Visible Light Absorbers for Solar Fuel Applications - Loiudice - 2015 - Advanced Materials - Wiley Online Library

Catalysts | Free Full-Text | Network Structured CuWO4/BiVO4/Co-Pi  Nanocomposite for Solar Water Splitting
Catalysts | Free Full-Text | Network Structured CuWO4/BiVO4/Co-Pi Nanocomposite for Solar Water Splitting

Effects of Fluorination and Molybdenum Codoping on Monoclinic BiVO4  Photocatalyst by HSE Calculations | ACS Omega
Effects of Fluorination and Molybdenum Codoping on Monoclinic BiVO4 Photocatalyst by HSE Calculations | ACS Omega

The effects of Sc doping and O vacancy on the electronic states and optical  properties of m-BiVO4
The effects of Sc doping and O vacancy on the electronic states and optical properties of m-BiVO4

Phase transition-induced band edge engineering of BiVO4 to split pure water  under visible light | PNAS
Phase transition-induced band edge engineering of BiVO4 to split pure water under visible light | PNAS

Enhanced visible-light photocatalytic activity of a g-C3N4/BiVO4  nanocomposite: a first-principles study - Physical Chemistry Chemical  Physics (RSC Publishing)
Enhanced visible-light photocatalytic activity of a g-C3N4/BiVO4 nanocomposite: a first-principles study - Physical Chemistry Chemical Physics (RSC Publishing)

Surface modification of m-BiVO4 with wide band-gap semiconductor BiOCl to  largely improve the visible light induced photocatalytic activity -  ScienceDirect
Surface modification of m-BiVO4 with wide band-gap semiconductor BiOCl to largely improve the visible light induced photocatalytic activity - ScienceDirect

Fabrication of core-shell BiVO4@Fe2O3 heterojunctions for realizing  photocatalytic hydrogen evolution via conduction band elevation -  ScienceDirect
Fabrication of core-shell BiVO4@Fe2O3 heterojunctions for realizing photocatalytic hydrogen evolution via conduction band elevation - ScienceDirect

Calculated band structures of: (a) m-BiVO 4 , (b) MoS 2 , (c) WS 2 ,... |  Download Scientific Diagram
Calculated band structures of: (a) m-BiVO 4 , (b) MoS 2 , (c) WS 2 ,... | Download Scientific Diagram

Frontiers | Effects of Zirconium Doping Into a Monoclinic Scheelite BiVO4  Crystal on Its Structural, Photocatalytic, and Photoelectrochemical  Properties
Frontiers | Effects of Zirconium Doping Into a Monoclinic Scheelite BiVO4 Crystal on Its Structural, Photocatalytic, and Photoelectrochemical Properties

Energy band edge alignment of anisotropic BiVO4 to drive  photoelectrochemical hydrogen evolution - ScienceDirect
Energy band edge alignment of anisotropic BiVO4 to drive photoelectrochemical hydrogen evolution - ScienceDirect

Schematic diagrams of the energy band structures of coupling WO 3 /BiVO...  | Download Scientific Diagram
Schematic diagrams of the energy band structures of coupling WO 3 /BiVO... | Download Scientific Diagram

Insights into the electronic bands of WO3/BiVO4/TiO2, revealing high solar  water splitting efficiency - Journal of Materials Chemistry A (RSC  Publishing)
Insights into the electronic bands of WO3/BiVO4/TiO2, revealing high solar water splitting efficiency - Journal of Materials Chemistry A (RSC Publishing)

Figure 6 | Graphene/BiVO4/TiO2 nanocomposite: tuning band gap energies for  superior photocatalytic activity under visible light | SpringerLink
Figure 6 | Graphene/BiVO4/TiO2 nanocomposite: tuning band gap energies for superior photocatalytic activity under visible light | SpringerLink

Energy Band Alignment of BiVO4 from Photoelectron Spectroscopy of  Solid-state Interfaces
Energy Band Alignment of BiVO4 from Photoelectron Spectroscopy of Solid-state Interfaces

Structural stability, band structure and optical properties of different  BiVO4 phases under pressure | SpringerLink
Structural stability, band structure and optical properties of different BiVO4 phases under pressure | SpringerLink

Band structures of BiVO4: a 1 × 1 × 1, b 2 × 1 × 1, c 2 × 2 × 1... |  Download Scientific Diagram
Band structures of BiVO4: a 1 × 1 × 1, b 2 × 1 × 1, c 2 × 2 × 1... | Download Scientific Diagram

Synthesis and Doping Strategies to Improve the Photoelectrochemical Water  Oxidation Activity of BiVO4 Photoanodes
Synthesis and Doping Strategies to Improve the Photoelectrochemical Water Oxidation Activity of BiVO4 Photoanodes

Composite Photocatalysts Containing BiVO4 for Degradation of Cationic Dyes  | Scientific Reports
Composite Photocatalysts Containing BiVO4 for Degradation of Cationic Dyes | Scientific Reports

Electronic and optical competence of TiO2/BiVO4 nanocomposites in the  photocatalytic processes | Scientific Reports
Electronic and optical competence of TiO2/BiVO4 nanocomposites in the photocatalytic processes | Scientific Reports

BISMUTH – BASED OXIDE SEMICONDUCTORS: MILD SYNTHESIS AND PRACTICAL  APPLICATIONS by HARI KRISHNA TIMMAJI Presented to the Facu
BISMUTH – BASED OXIDE SEMICONDUCTORS: MILD SYNTHESIS AND PRACTICAL APPLICATIONS by HARI KRISHNA TIMMAJI Presented to the Facu

A hole inversion layer at the BiVO4/Bi4V2O11 interface produces a high  tunable photovoltage for water splitting | Scientific Reports
A hole inversion layer at the BiVO4/Bi4V2O11 interface produces a high tunable photovoltage for water splitting | Scientific Reports