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Vermilion | Causes of Color
Vermilion | Causes of Color

Frontiers | Bandgap Engineering of Indium Phosphide-Based Core/Shell  Heterostructures Through Shell Composition and Thickness
Frontiers | Bandgap Engineering of Indium Phosphide-Based Core/Shell Heterostructures Through Shell Composition and Thickness

UV–vis absorption spectra and band gap estimation of ZnO and ZnO/CdS  nanostructures.
UV–vis absorption spectra and band gap estimation of ZnO and ZnO/CdS nanostructures.

Doping iodine in CdS for pure hexagonal phase, narrower band gap, and  enhanced photocatalytic activity | Journal of Materials Research |  Cambridge Core
Doping iodine in CdS for pure hexagonal phase, narrower band gap, and enhanced photocatalytic activity | Journal of Materials Research | Cambridge Core

Scalable Low-Band-Gap Sb2Se3 Thin-Film Photocathodes for Efficient  Visible–Near-Infrared Solar Hydrogen Evolution | ACS Nano
Scalable Low-Band-Gap Sb2Se3 Thin-Film Photocathodes for Efficient Visible–Near-Infrared Solar Hydrogen Evolution | ACS Nano

Tailoring band structure of ternary CdSxSe1−x quantum dots for highly  efficient sensitized solar cells - ScienceDirect
Tailoring band structure of ternary CdSxSe1−x quantum dots for highly efficient sensitized solar cells - ScienceDirect

Band Gap Energies and Photocatalytic Properties of CdS and Ag/CdS  Nanoparticles for Azo Dye Degradation - Fard - 2016 - Chemical Engineering  & Technology - Wiley Online Library
Band Gap Energies and Photocatalytic Properties of CdS and Ag/CdS Nanoparticles for Azo Dye Degradation - Fard - 2016 - Chemical Engineering & Technology - Wiley Online Library

Band offsets engineering at  Cd<sub><em>x</em></sub>Zn<sub>1−<em>x</em></sub>S/Cu<sub>2</sub>ZnSnS<sub>4</sub>  heterointerface
Band offsets engineering at Cd<sub><em>x</em></sub>Zn<sub>1−<em>x</em></sub>S/Cu<sub>2</sub>ZnSnS<sub>4</sub> heterointerface

Table 1 from Band-gap engineering of CdS, CdSe and ZnSe first-principles  calculations | Semantic Scholar
Table 1 from Band-gap engineering of CdS, CdSe and ZnSe first-principles calculations | Semantic Scholar

The band gap positions for CdS and other SCs relative to the redox... |  Download Scientific Diagram
The band gap positions for CdS and other SCs relative to the redox... | Download Scientific Diagram

The CdS/CdSe/ZnS Photoanode Cosensitized Solar Cells Basedon Pt, CuS, Cu2S,  and PbS Counter Electrodes
The CdS/CdSe/ZnS Photoanode Cosensitized Solar Cells Basedon Pt, CuS, Cu2S, and PbS Counter Electrodes

Optical band gap of CdS thin films grown at different substrate... |  Download Scientific Diagram
Optical band gap of CdS thin films grown at different substrate... | Download Scientific Diagram

Molecular Limit of a Bulk Semiconductor: Size Dependence of the “Band Gap”  in CdSe Cluster Molecules | Journal of the American Chemical Society
Molecular Limit of a Bulk Semiconductor: Size Dependence of the “Band Gap” in CdSe Cluster Molecules | Journal of the American Chemical Society

Optical band gap energy of (a) BNF-Y-CdS and (b) BNF-4CdS-5-CdS 1−x Se... |  Download Scientific Diagram
Optical band gap energy of (a) BNF-Y-CdS and (b) BNF-4CdS-5-CdS 1−x Se... | Download Scientific Diagram

Energy band alignment at the heterointerface between CdS and Ag-alloyed  CZTS | Scientific Reports
Energy band alignment at the heterointerface between CdS and Ag-alloyed CZTS | Scientific Reports

Mechanistic insight into the photocatalytic hydrogenation of 4-nitroaniline  over band-gap-tunable CdS photocatalysts - Physical Chemistry Chemical  Physics (RSC Publishing)
Mechanistic insight into the photocatalytic hydrogenation of 4-nitroaniline over band-gap-tunable CdS photocatalysts - Physical Chemistry Chemical Physics (RSC Publishing)

Figure 3 | Cu-doped CdS thin films by chemical bath deposition and ion  exchange | SpringerLink
Figure 3 | Cu-doped CdS thin films by chemical bath deposition and ion exchange | SpringerLink

Interface Etching Leads to the Inversion of the Conduction Band Offset  between the CdS/Sb2Se3 Heterojunction and High-Efficient Sb2Se3 Solar Cells  | ACS Applied Energy Materials
Interface Etching Leads to the Inversion of the Conduction Band Offset between the CdS/Sb2Se3 Heterojunction and High-Efficient Sb2Se3 Solar Cells | ACS Applied Energy Materials

Bandgap engineering of NiWO4/CdS solid Z-scheme system via an ion-exchange  reaction - ScienceDirect
Bandgap engineering of NiWO4/CdS solid Z-scheme system via an ion-exchange reaction - ScienceDirect

Enhancing CdTe Solar Cell Performance by Reducing the “Ideal” Bandgap of  CdTe through CdTe1-xSex Alloying Jingxiu Yang 1,2 a
Enhancing CdTe Solar Cell Performance by Reducing the “Ideal” Bandgap of CdTe through CdTe1-xSex Alloying Jingxiu Yang 1,2 a

First-principles study of the band gap tuning and doping control in  CdSe<sub><em>x</em></sub>Te<sub>1−<em>x</em></sub> alloy for high  efficiency solar cell
First-principles study of the band gap tuning and doping control in CdSe<sub><em>x</em></sub>Te<sub>1−<em>x</em></sub> alloy for high efficiency solar cell

File:Type I figure.jpg - Wikipedia
File:Type I figure.jpg - Wikipedia

CdS nanoparticles/CeO2 nanorods composite with high-efficiency  visible-light-driven photocatalytic activity - ScienceDirect
CdS nanoparticles/CeO2 nanorods composite with high-efficiency visible-light-driven photocatalytic activity - ScienceDirect

Band positions and photoelectrochemical properties of Cu2ZnSnS4 thin films
Band positions and photoelectrochemical properties of Cu2ZnSnS4 thin films

Band energy levels and compositions of CdS-based solid solution and their  relation with photocatalytic activities - Catalysis Science & Technology  (RSC Publishing)
Band energy levels and compositions of CdS-based solid solution and their relation with photocatalytic activities - Catalysis Science & Technology (RSC Publishing)

Optical, Thermal and Structural Properties of CdS Quantum Dots Synthesized  by A Simple Chemical Route
Optical, Thermal and Structural Properties of CdS Quantum Dots Synthesized by A Simple Chemical Route