Home

Nahoru kandidát zbytky doping low band gap 0.05 ev Pošta Tání přemýšlet

Electronic structure of O-doped SiGe calculated by DFT + <em>U</em> method
Electronic structure of O-doped SiGe calculated by DFT + <em>U</em> method

Pathway to oxide photovoltaics via band-structure engineering of SnO: APL  Materials: Vol 4, No 10
Pathway to oxide photovoltaics via band-structure engineering of SnO: APL Materials: Vol 4, No 10

Investigation of energy band at atomic layer deposited AZO/β-Ga2O3 ( 2 ¯ 01  $$ \overline{2}01 $$ ) heterojunctions | Nanoscale Research Letters | Full  Text
Investigation of energy band at atomic layer deposited AZO/β-Ga2O3 ( 2 ¯ 01 $$ \overline{2}01 $$ ) heterojunctions | Nanoscale Research Letters | Full Text

Band gap variation of (a) undoped MgO, (b) 1% Cd-, (c) 2% Cd-, and (d)... |  Download Scientific Diagram
Band gap variation of (a) undoped MgO, (b) 1% Cd-, (c) 2% Cd-, and (d)... | Download Scientific Diagram

Minimizing Polymer Band Gap via Donor‐Acceptor Frameworks:  Poly(dithieno[3,2‐b:2′,3′‐d]pyrrole‐alt‐thieno[3,4‐b]pyrazine)s as  Illustrative Examples of Challenges and Misconceptions - Evenson - 2020 -  Asian Journal of Organic Chemistry - Wiley Online ...
Minimizing Polymer Band Gap via Donor‐Acceptor Frameworks: Poly(dithieno[3,2‐b:2′,3′‐d]pyrrole‐alt‐thieno[3,4‐b]pyrazine)s as Illustrative Examples of Challenges and Misconceptions - Evenson - 2020 - Asian Journal of Organic Chemistry - Wiley Online ...

Pathway to oxide photovoltaics via band-structure engineering of SnO: APL  Materials: Vol 4, No 10
Pathway to oxide photovoltaics via band-structure engineering of SnO: APL Materials: Vol 4, No 10

1D doped semiconductors
1D doped semiconductors

Electronic structure of O-doped SiGe calculated by DFT + <em>U</em> method
Electronic structure of O-doped SiGe calculated by DFT + <em>U</em> method

Journal Material Science | Open Access Publishers
Journal Material Science | Open Access Publishers

Band-gap energies of La-doped SrTiO3 particles hydrothermally treated... |  Download Scientific Diagram
Band-gap energies of La-doped SrTiO3 particles hydrothermally treated... | Download Scientific Diagram

Doping evolution of the Mott–Hubbard landscape in infinite-layer nickelates  | PNAS
Doping evolution of the Mott–Hubbard landscape in infinite-layer nickelates | PNAS

1D doped semiconductors
1D doped semiconductors

Effects of nonmetal elements doping on the electronic structures of InNbO4:  first-principles calculations - IOPscience
Effects of nonmetal elements doping on the electronic structures of InNbO4: first-principles calculations - IOPscience

Ba-induced phase segregation and band gap reduction in mixed-halide  inorganic perovskite solar cells | Nature Communications
Ba-induced phase segregation and band gap reduction in mixed-halide inorganic perovskite solar cells | 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

1D doped semiconductors
1D doped semiconductors

1D doped semiconductors
1D doped semiconductors

Quantum engineering of non-equilibrium efficient p-doping in ultra-wide band -gap nitrides | Light: Science & Applications
Quantum engineering of non-equilibrium efficient p-doping in ultra-wide band -gap nitrides | Light: Science & Applications

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

Evidence of indirect gap in monolayer WSe2 | Nature Communications
Evidence of indirect gap in monolayer WSe2 | Nature Communications

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

Band-gap plots of the pure and Na-doped Cu2Se thin films | Download  Scientific Diagram
Band-gap plots of the pure and Na-doped Cu2Se thin films | Download Scientific Diagram

Acceptor doping, hydration and band-gap engineering of BaZrO3 -  ScienceDirect
Acceptor doping, hydration and band-gap engineering of BaZrO3 - ScienceDirect

The bandgap of zinc oxide = 3.175 eV and the bandgap of Zn 0.95 Co 0.05...  | Download Scientific Diagram
The bandgap of zinc oxide = 3.175 eV and the bandgap of Zn 0.95 Co 0.05... | Download Scientific Diagram