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Band-gap-matched CdSe QD/WS2 nanosheet composite: Size-controlled  photocatalyst for high-efficiency water splitting - ScienceDirect
Band-gap-matched CdSe QD/WS2 nanosheet composite: Size-controlled photocatalyst for high-efficiency water splitting - ScienceDirect

Schematic diagram for the band alignment in bulk materials and... |  Download Scientific Diagram
Schematic diagram for the band alignment in bulk materials and... | Download Scientific Diagram

LDA bulk band structures of wurtzite ZnO, CdS, CdSe, and of rocksalt... |  Download Scientific Diagram
LDA bulk band structures of wurtzite ZnO, CdS, CdSe, and of rocksalt... | Download Scientific Diagram

Figure 1 from Type-II CdSe/CdTe/ZnTe (core-shell-shell) quantum dots with  cascade band edges: the separation of electron (at CdSe) and hole (at ZnTe)  by the CdTe layer. | Semantic Scholar
Figure 1 from Type-II CdSe/CdTe/ZnTe (core-shell-shell) quantum dots with cascade band edges: the separation of electron (at CdSe) and hole (at ZnTe) by the CdTe layer. | Semantic Scholar

Synthesis, Structural and Optical Investigation of CdSe semiconductor  Quantum Dots
Synthesis, Structural and Optical Investigation of CdSe semiconductor Quantum Dots

CdSe Quantum Dot Band Gap (Cadmium Selenide/Zinc Sulphide-PEG-NH2 Quantum  Dots)
CdSe Quantum Dot Band Gap (Cadmium Selenide/Zinc Sulphide-PEG-NH2 Quantum Dots)

Exciton-driven change of phonon modes causes strong temperature dependent  bandgap shift in nanoclusters | Nature Communications
Exciton-driven change of phonon modes causes strong temperature dependent bandgap shift in nanoclusters | Nature Communications

Using the band gap of bulk CdSe (Ex) from the lecture | Chegg.com
Using the band gap of bulk CdSe (Ex) from the lecture | Chegg.com

Optical properties and applications of two‐dimensional CdSe nanoplatelets -  Yu - 2020 - InfoMat - Wiley Online Library
Optical properties and applications of two‐dimensional CdSe nanoplatelets - Yu - 2020 - InfoMat - Wiley Online Library

Quantum dots: Harnessing the nanoscopic rainbow | Chem 13 News Magazine |  University of Waterloo
Quantum dots: Harnessing the nanoscopic rainbow | Chem 13 News Magazine | University of Waterloo

a) Band gap of the CdSe 1−x Te x crown as a function of x between 0... |  Download Scientific Diagram
a) Band gap of the CdSe 1−x Te x crown as a function of x between 0... | Download Scientific Diagram

Photoconductivity of composites based on CdSe quantum dots and low-band-gap  polymers - ScienceDirect
Photoconductivity of composites based on CdSe quantum dots and low-band-gap polymers - ScienceDirect

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

Cadmium Selenide - an overview | ScienceDirect Topics
Cadmium Selenide - an overview | ScienceDirect Topics

Solved Nanoparticles of the semiconductor CdSe emit light | Chegg.com
Solved Nanoparticles of the semiconductor CdSe emit light | Chegg.com

Two-dimensional cadmium selenide electronic and optical properties: first  principles studies
Two-dimensional cadmium selenide electronic and optical properties: first principles studies

Figure 5 | The CdS/CdSe/ZnS Photoanode Cosensitized Solar Cells Basedon Pt,  CuS, Cu2S, and PbS Counter Electrodes
Figure 5 | The CdS/CdSe/ZnS Photoanode Cosensitized Solar Cells Basedon Pt, CuS, Cu2S, and PbS Counter Electrodes

presents the band-edge positions and bandgaps of bulk CdSe, CdTe and... |  Download Scientific Diagram
presents the band-edge positions and bandgaps of bulk CdSe, CdTe and... | Download Scientific Diagram

Band structure of cubic and wurtzite CdSe | Download Scientific Diagram
Band structure of cubic and wurtzite CdSe | Download Scientific Diagram

Interfacial strain and shell thickness effect on core squeeze/stretch in  core/shell quantum dots | SN Applied Sciences
Interfacial strain and shell thickness effect on core squeeze/stretch in core/shell quantum dots | SN Applied Sciences

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

Band-Edge Exciton Fine Structure of Small, Nearly Spherical Colloidal CdSe/ZnS  Quantum Dots | ACS Nano
Band-Edge Exciton Fine Structure of Small, Nearly Spherical Colloidal CdSe/ZnS Quantum Dots | ACS Nano

First-principles calculation of band offsets, optical bowings, and defects  in CdS, CdSe, CdTe, and their alloys
First-principles calculation of band offsets, optical bowings, and defects in CdS, CdSe, CdTe, and their alloys

Core–shell semiconductor nanocrystal - Wikipedia
Core–shell semiconductor nanocrystal - Wikipedia

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

Aqueous Synthesis of Glutathione-Capped CdTe/CdS/ZnS and CdTe/CdSe/ZnS  Core/Shell/Shell Nanocrystal Heterostructures | Langmuir
Aqueous Synthesis of Glutathione-Capped CdTe/CdS/ZnS and CdTe/CdSe/ZnS Core/Shell/Shell Nanocrystal Heterostructures | Langmuir

Materials | Free Full-Text | Tuning the Optical Band Gap of Semiconductor  Nanocomposites—A Case Study with ZnS/Carbon
Materials | Free Full-Text | Tuning the Optical Band Gap of Semiconductor Nanocomposites—A Case Study with ZnS/Carbon

a) Relative energy levels of TiO2, CdS, CdSe, and ZnS in bulk phase,... |  Download Scientific Diagram
a) Relative energy levels of TiO2, CdS, CdSe, and ZnS in bulk phase,... | Download Scientific Diagram

Uniaxial strain-modulated electronic structures of Cd<i>X</i> (<i>X</i> =  S, Se, Te) from first-principles calculations: A comparison between bulk  and nanowires
Uniaxial strain-modulated electronic structures of Cd<i>X</i> (<i>X</i> = S, Se, Te) from first-principles calculations: A comparison between bulk and nanowires