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Effective band gap engineering by the incorporation of Ce, N and S dopant  ions into the SrTiO3 lattice: exploration of photocatalytic activity under  UV/solar light | SpringerLink
Effective band gap engineering by the incorporation of Ce, N and S dopant ions into the SrTiO3 lattice: exploration of photocatalytic activity under UV/solar light | SpringerLink

Band Gap Energy - an overview | ScienceDirect Topics
Band Gap Energy - an overview | ScienceDirect Topics

Extrinsic Semiconductors: Dopants, n-type & p-type Semiconductor, Q&A
Extrinsic Semiconductors: Dopants, n-type & p-type Semiconductor, Q&A

Variations in band gap energy of ZnO nanorods with cobalt doping. |  Download Scientific Diagram
Variations in band gap energy of ZnO nanorods with cobalt doping. | Download Scientific Diagram

Aligning the Band Gap of Graphene Nanoribbons by Monomer Doping - Bronner -  2013 - Angewandte Chemie International Edition - Wiley Online Library
Aligning the Band Gap of Graphene Nanoribbons by Monomer Doping - Bronner - 2013 - Angewandte Chemie International Edition - Wiley Online Library

The Effects of Mn Doping on the Structural and Optical Properties of ZnO
The Effects of Mn Doping on the Structural and Optical Properties of ZnO

Semiconductors: Why is the energy level of acceptor state closer to the  valence band than to conduction band? - Quora
Semiconductors: Why is the energy level of acceptor state closer to the valence band than to conduction band? - Quora

Valence band structure and charge distribution in the layered lanthanide- doped CuCr0.99Ln0.01S2 (Ln = La, Ce) solid solutions | Scientific Reports
Valence band structure and charge distribution in the layered lanthanide- doped CuCr0.99Ln0.01S2 (Ln = La, Ce) solid solutions | Scientific Reports

Wide-Band-Gap p-Type GaCrO3:Ni Semiconductor: A Hole Transport Material |  ACS Applied Energy Materials
Wide-Band-Gap p-Type GaCrO3:Ni Semiconductor: A Hole Transport Material | ACS Applied Energy Materials

Crystal Chemistry, Band-Gap Red Shift, and Electrocatalytic Activity of  Iron-Doped Gallium Oxide Ceramics | ACS Omega
Crystal Chemistry, Band-Gap Red Shift, and Electrocatalytic Activity of Iron-Doped Gallium Oxide Ceramics | ACS Omega

Cr-doped BaSnO3 nanoporous thin films with tunable band gap via a facile  colloidal solution route - ScienceDirect
Cr-doped BaSnO3 nanoporous thin films with tunable band gap via a facile colloidal solution route - ScienceDirect

Doping and devices - Open Solid State Notes
Doping and devices - Open Solid State Notes

Semiconductor–metal transition in Bi2Se3 caused by impurity doping |  Scientific Reports
Semiconductor–metal transition in Bi2Se3 caused by impurity doping | Scientific Reports

10.5: Semiconductors- Band Gaps, Colors, Conductivity and Doping -  Chemistry LibreTexts
10.5: Semiconductors- Band Gaps, Colors, Conductivity and Doping - Chemistry LibreTexts

Variations in band gap energy of ZnO nanorods with cobalt doping. |  Download Scientific Diagram
Variations in band gap energy of ZnO nanorods with cobalt doping. | Download Scientific Diagram

Band Gap Reduction - an overview | ScienceDirect Topics
Band Gap Reduction - an overview | ScienceDirect Topics

Nanomaterials | Free Full-Text | Band Gap Tuning of Films of Undoped ZnO  Nanocrystals by Removal of Surface Groups
Nanomaterials | Free Full-Text | Band Gap Tuning of Films of Undoped ZnO Nanocrystals by Removal of Surface Groups

A Generalized Semiempirical Approach to the Modeling of the Optical Band Gap  of Ternary Al-(Ga, Nb, Ta, W) Oxides Containing Different Alumina  Polymorphs | Inorganic Chemistry
A Generalized Semiempirical Approach to the Modeling of the Optical Band Gap of Ternary Al-(Ga, Nb, Ta, W) Oxides Containing Different Alumina Polymorphs | Inorganic Chemistry

Designing a Lower Band Gap Bulk Ferroelectric Material with a Sizable  Polarization at Room Temperature | ACS Energy Letters
Designing a Lower Band Gap Bulk Ferroelectric Material with a Sizable Polarization at Room Temperature | ACS Energy Letters

Mobility enhancement in heavily doped semiconductors via electron cloaking  | Nature Communications
Mobility enhancement in heavily doped semiconductors via electron cloaking | Nature Communications

Electronic Structures, Bonding Configurations, and Band‐Gap‐Opening  Properties of Graphene Binding with Low‐Concentration Fluorine - Duan -  2015 - ChemistryOpen - Wiley Online Library
Electronic Structures, Bonding Configurations, and Band‐Gap‐Opening Properties of Graphene Binding with Low‐Concentration Fluorine - Duan - 2015 - ChemistryOpen - Wiley Online Library

Crystals | Free Full-Text | Progress in Contact, Doping and Mobility  Engineering of MoS2: An Atomically Thin 2D Semiconductor
Crystals | Free Full-Text | Progress in Contact, Doping and Mobility Engineering of MoS2: An Atomically Thin 2D Semiconductor

Nanohybrids with tunable band gap and low electron effective mass:  Graphenes doped by multiple boron nitrogen domains - ScienceDirect
Nanohybrids with tunable band gap and low electron effective mass: Graphenes doped by multiple boron nitrogen domains - ScienceDirect

Structure and Optical Bandgap Relationship of π-Conjugated Systems | PLOS  ONE
Structure and Optical Bandgap Relationship of π-Conjugated Systems | PLOS ONE

Variation of band gap energy, E g (eV), and refractive index, n, with... |  Download Scientific Diagram
Variation of band gap energy, E g (eV), and refractive index, n, with... | Download Scientific Diagram

Indirect and direct bandgaps of a) the pristine and b) chemically... |  Download Scientific Diagram
Indirect and direct bandgaps of a) the pristine and b) chemically... | Download Scientific Diagram

Semiconductor-Detectors
Semiconductor-Detectors