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Expand band gap and suppress bipolar excitation to optimize thermoelectric  performance of Bi0.35Sb1.65Te3 sintered materials - ScienceDirect
Expand band gap and suppress bipolar excitation to optimize thermoelectric performance of Bi0.35Sb1.65Te3 sintered materials - ScienceDirect

Schematic for bandgap engineering of semiconductors. The band structure...  | Download Scientific Diagram
Schematic for bandgap engineering of semiconductors. The band structure... | Download Scientific Diagram

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

Tuning the band gap of M-doped titanate nanotubes (M = Fe, Co, Ni, and Cu):  an experimental and theoretical study - Nanoscale Advances (RSC Publishing)  DOI:10.1039/D0NA00932F
Tuning the band gap of M-doped titanate nanotubes (M = Fe, Co, Ni, and Cu): an experimental and theoretical study - Nanoscale Advances (RSC Publishing) DOI:10.1039/D0NA00932F

Chapter 12.6: Metals and Semiconductors - Chemistry LibreTexts
Chapter 12.6: Metals and Semiconductors - Chemistry LibreTexts

Low Band Gap Conjugated Semiconducting Polymers - Scharber - 2021 -  Advanced Materials Technologies - Wiley Online Library
Low Band Gap Conjugated Semiconducting Polymers - Scharber - 2021 - Advanced Materials Technologies - Wiley Online Library

Time-resolved luminescence and excitation spectroscopy of co-doped  Gd3Ga3Al2O12 scintillating crystals | Scientific Reports
Time-resolved luminescence and excitation spectroscopy of co-doped Gd3Ga3Al2O12 scintillating crystals | Scientific Reports

Thermally induced band gap increase and high thermoelectric figure of merit  of n-type PbTe - ScienceDirect
Thermally induced band gap increase and high thermoelectric figure of merit of n-type PbTe - ScienceDirect

Catalysts | Free Full-Text | Doping of Graphitic Carbon Nitride with  Non-Metal Elements and Its Applications in Photocatalysis
Catalysts | Free Full-Text | Doping of Graphitic Carbon Nitride with Non-Metal Elements and Its Applications in Photocatalysis

Schematic illustration of band tailing vs band shifting in band... |  Download Scientific Diagram
Schematic illustration of band tailing vs band shifting in band... | Download Scientific Diagram

Catalysts | Free Full-Text | Recent Advances on Small Band Gap  Semiconductor Materials (≤2.1 eV) for Solar Water Splitting
Catalysts | Free Full-Text | Recent Advances on Small Band Gap Semiconductor Materials (≤2.1 eV) for Solar Water Splitting

Frontiers | Different Effects of Mg and Si Doping on the Thermal Transport  of Gallium Nitride
Frontiers | Different Effects of Mg and Si Doping on the Thermal Transport of Gallium Nitride

n-type doping of diamond
n-type doping of diamond

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

Photoinduced Bandgap Renormalization and Exciton Binding Energy Reduction  in WS2 | ACS Nano
Photoinduced Bandgap Renormalization and Exciton Binding Energy Reduction in WS2 | ACS Nano

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

Band degeneracy enhanced thermoelectric performance in layered oxyselenides  by first-principles calculations | npj Computational Materials
Band degeneracy enhanced thermoelectric performance in layered oxyselenides by first-principles calculations | npj Computational Materials

What are the Benefits of Gapless States for Semiconductors?
What are the Benefits of Gapless States for Semiconductors?

Controlling n-Type Molecular Doping via Regiochemistry and Polarity of  Pendant Groups on Low Band Gap Donor–Acceptor Copolymers | Macromolecules
Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers | Macromolecules

P/N Junctions and Band Gaps
P/N Junctions and Band Gaps

Understanding of sub-band gap absorption of femtosecond-laser sulfur  hyperdoped silicon using synchrotron-based techniques | Scientific Reports
Understanding of sub-band gap absorption of femtosecond-laser sulfur hyperdoped silicon using synchrotron-based techniques | Scientific Reports

Temperature dependence of the band-gap energy. The plotted Varshni... |  Download Scientific Diagram
Temperature dependence of the band-gap energy. The plotted Varshni... | Download Scientific Diagram

6.23 Semiconductors
6.23 Semiconductors