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čistě celkový Kapající amount of oxide relation with band gap tweet klient Libra

Synthesis of graphene oxide with a lower band gap and study of charge  transfer interactions with perylenediimide - New Journal of Chemistry (RSC  Publishing)
Synthesis of graphene oxide with a lower band gap and study of charge transfer interactions with perylenediimide - New Journal of Chemistry (RSC Publishing)

Wannier–Koopmans method calculations for transition metal oxide band gaps |  npj Computational Materials
Wannier–Koopmans method calculations for transition metal oxide band gaps | npj Computational Materials

Band structure engineering and defect control of oxides for energy  applications
Band structure engineering and defect control of oxides for energy applications

Band gap energy of different metal oxides [13]. | Download Table
Band gap energy of different metal oxides [13]. | Download Table

Use of Metal Oxide Nanoparticle Band Gap To Develop a Predictive Paradigm  for Oxidative Stress and Acute Pulmonary Inflammation | ACS Nano
Use of Metal Oxide Nanoparticle Band Gap To Develop a Predictive Paradigm for Oxidative Stress and Acute Pulmonary Inflammation | ACS Nano

Novel high-κ dielectrics for next-generation electronic devices screened by  automated ab initio calculations | NPG Asia Materials
Novel high-κ dielectrics for next-generation electronic devices screened by automated ab initio calculations | NPG Asia Materials

The band gap values of familiar transition metal oxides | Download Table
The band gap values of familiar transition metal oxides | Download Table

Application of metal oxide semiconductors in light-driven organic  transformations - Catalysis Science & Technology (RSC Publishing)  DOI:10.1039/C9CY01170F
Application of metal oxide semiconductors in light-driven organic transformations - Catalysis Science & Technology (RSC Publishing) DOI:10.1039/C9CY01170F

Optimal methodology for explicit solvation prediction of band edges of  transition metal oxide photocatalysts | Communications Chemistry
Optimal methodology for explicit solvation prediction of band edges of transition metal oxide photocatalysts | Communications Chemistry

PDF] Development of a nano-QSPR model to predict band gaps of spherical  metal oxide nanoparticles | Semantic Scholar
PDF] Development of a nano-QSPR model to predict band gaps of spherical metal oxide nanoparticles | Semantic Scholar

Metal oxide semiconducting interfacial layers for photovoltaic and  photocatalytic applications | SpringerLink
Metal oxide semiconducting interfacial layers for photovoltaic and photocatalytic applications | SpringerLink

Table 1 from Trends in the Changes of Properties of Oxides in Relation to  Bond Energies and Interatomic Distances Part II. Transition Metal Oxides |  Semantic Scholar
Table 1 from Trends in the Changes of Properties of Oxides in Relation to Bond Energies and Interatomic Distances Part II. Transition Metal Oxides | Semantic Scholar

Band gap of reduced graphene oxide tuned by controlling functional groups -  Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/C9TC07063J
Band gap of reduced graphene oxide tuned by controlling functional groups - Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/C9TC07063J

Exploring wide bandgap metal oxides for perovskite solar cells: APL  Materials: Vol 7, No 2
Exploring wide bandgap metal oxides for perovskite solar cells: APL Materials: Vol 7, No 2

Table 2 from Band-gap energy as a descriptor of catalytic activity for  propene oxidation over mixed metal oxide catalysts. | Semantic Scholar
Table 2 from Band-gap energy as a descriptor of catalytic activity for propene oxidation over mixed metal oxide catalysts. | Semantic Scholar

Oxide enthalpy of formation and band gap energy as accurate descriptors of  oxygen vacancy formation energetics - Energy & Environmental Science (RSC  Publishing)
Oxide enthalpy of formation and band gap energy as accurate descriptors of oxygen vacancy formation energetics - Energy & Environmental Science (RSC Publishing)

Dielectric constant κ versus band gap for candidate gate oxides (from... |  Download Scientific Diagram
Dielectric constant κ versus band gap for candidate gate oxides (from... | Download Scientific Diagram

Band structure engineering and defect control of oxides for energy  applications
Band structure engineering and defect control of oxides for energy applications

Corrected PM7 band gaps for tertiary transition-metal oxides and their... |  Download Table
Corrected PM7 band gaps for tertiary transition-metal oxides and their... | Download Table

Diagram showing band gap energy of diierent oxide materials and... |  Download Scientific Diagram
Diagram showing band gap energy of diierent oxide materials and... | Download Scientific Diagram

Conversion of an ultra-wide bandgap amorphous oxide insulator to a  semiconductor | NPG Asia Materials
Conversion of an ultra-wide bandgap amorphous oxide insulator to a semiconductor | NPG Asia Materials

Band gap energy and band gap edge positions of different semiconductor... |  Download Scientific Diagram
Band gap energy and band gap edge positions of different semiconductor... | Download Scientific Diagram

Table 1 from Band-gap energy as a descriptor of catalytic activity for  propene oxidation over mixed metal oxide catalysts. | Semantic Scholar
Table 1 from Band-gap energy as a descriptor of catalytic activity for propene oxidation over mixed metal oxide catalysts. | Semantic Scholar

Band-Structure Calculations for the 3d Transition Metal Oxides in GW |  Semantic Scholar
Band-Structure Calculations for the 3d Transition Metal Oxides in GW | Semantic Scholar

Diagram showing band gap energy of different oxide materials and... |  Download Scientific Diagram
Diagram showing band gap energy of different oxide materials and... | Download Scientific Diagram

Growth of Ta2SnO6 Films, a Candidate Wide-Band-Gap p-Type Oxide | The  Journal of Physical Chemistry C
Growth of Ta2SnO6 Films, a Candidate Wide-Band-Gap p-Type Oxide | The Journal of Physical Chemistry C