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Synthesis of cadmium sulfide‐reduced graphene oxide nanocomposites by  pulsed laser ablation in liquid for the enhanced photocatalytic reactions  in the visible light - Moqbel - 2018 - International Journal of Energy  Research -
Synthesis of cadmium sulfide‐reduced graphene oxide nanocomposites by pulsed laser ablation in liquid for the enhanced photocatalytic reactions in the visible light - Moqbel - 2018 - International Journal of Energy Research -

Photochem | Free Full-Text | Mechanistic Insights into Graphene Oxide  Driven Photocatalysis as Co-Catalyst and Sole Catalyst in Degradation of  Organic Dye Pollutants
Photochem | Free Full-Text | Mechanistic Insights into Graphene Oxide Driven Photocatalysis as Co-Catalyst and Sole Catalyst in Degradation of Organic Dye Pollutants

Photoluminescence and band gap modulation in graphene oxide: Applied  Physics Letters: Vol 94, No 11
Photoluminescence and band gap modulation in graphene oxide: Applied Physics Letters: Vol 94, No 11

Origin of Charge Trapping in TiO2/Reduced Graphene Oxide Photocatalytic  Composites: Insights from Theory | ACS Applied Materials & Interfaces
Origin of Charge Trapping in TiO2/Reduced Graphene Oxide Photocatalytic Composites: Insights from Theory | ACS Applied Materials & Interfaces

Graphene Oxide Photoluminescence | Application Note
Graphene Oxide Photoluminescence | Application Note

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)

New Nanostructured Composites Could Clean Environment
New Nanostructured Composites Could Clean Environment

Comparison of band gap of composite films: (a) titania – graphene oxide...  | Download Scientific Diagram
Comparison of band gap of composite films: (a) titania – graphene oxide... | Download Scientific Diagram

Tuning the Band Gap Energy of Reduced Graphene Oxide Using Biopolymer  Chitosan for High Power and Frequency Device Applications | Semantic Scholar
Tuning the Band Gap Energy of Reduced Graphene Oxide Using Biopolymer Chitosan for High Power and Frequency Device Applications | Semantic Scholar

Band gap engineering of graphene oxide for ultrasensitive NO2 gas sensing -  ScienceDirect
Band gap engineering of graphene oxide for ultrasensitive NO2 gas sensing - ScienceDirect

Tuning Optical Properties of Graphene Oxide under Compressive Strain Using  Wet Ball Milling Method
Tuning Optical Properties of Graphene Oxide under Compressive Strain Using Wet Ball Milling Method

Nanomaterials | Free Full-Text | Work Function Engineering of Graphene
Nanomaterials | Free Full-Text | Work Function Engineering of Graphene

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

Graphene oxide derivatives as hole- and electron-extraction layers for  high-performance polymer solar cells - Energy & Environmental Science (RSC  Publishing) DOI:10.1039/C3EE42963F
Graphene oxide derivatives as hole- and electron-extraction layers for high-performance polymer solar cells - Energy & Environmental Science (RSC Publishing) DOI:10.1039/C3EE42963F

Role of oxygen functionality on the band structure evolution and  conductance of reduced graphene oxide - ScienceDirect
Role of oxygen functionality on the band structure evolution and conductance of reduced graphene oxide - ScienceDirect

Tuning the Band Gap Energy of Reduced Graphene Oxide Using Biopolymer  Chitosan for High Power and Frequency Device Applications | Semantic Scholar
Tuning the Band Gap Energy of Reduced Graphene Oxide Using Biopolymer Chitosan for High Power and Frequency Device Applications | Semantic Scholar

sp2/sp3 bonding ratio dependence of the band-gap in graphene oxide | The  European Physical Journal B (EPJ B)
sp2/sp3 bonding ratio dependence of the band-gap in graphene oxide | The European Physical Journal B (EPJ B)

Graphene Derivatives: Controlled Properties, Nanocomposites, and Energy  Harvesting Applications | IntechOpen
Graphene Derivatives: Controlled Properties, Nanocomposites, and Energy Harvesting Applications | IntechOpen

Functionalized reduced graphene oxide with tunable band gap and good  solubility in organic solvents - ScienceDirect
Functionalized reduced graphene oxide with tunable band gap and good solubility in organic solvents - ScienceDirect

Bandgap Measurement of Reduced Graphene Oxide Monolayers through Scanning  Tunnelling Spectroscopy
Bandgap Measurement of Reduced Graphene Oxide Monolayers through Scanning Tunnelling Spectroscopy

The comparative analyses of reduced graphene oxide (RGO) prepared via  green, mild and chemical approaches | SpringerLink
The comparative analyses of reduced graphene oxide (RGO) prepared via green, mild and chemical approaches | SpringerLink

Reduced graphene oxide (rGO) based wideband optical sensor and the role of  Temperature, Defect States and Quantum Efficiency | Scientific Reports
Reduced graphene oxide (rGO) based wideband optical sensor and the role of Temperature, Defect States and Quantum Efficiency | Scientific Reports

Graphene Oxide Photoluminescence | Application Note
Graphene Oxide Photoluminescence | Application Note

Highly stable two-dimensional graphene oxide: Electronic properties of its  periodic structure and optical properties of its nanostructures<xref  rid="cpb_27_2_027301_fn1" ref-type="fn">*</xref> <fn  id="cpb_27_2_027301_fn1"> <label>*</label> <p>Project ...
Highly stable two-dimensional graphene oxide: Electronic properties of its periodic structure and optical properties of its nanostructures<xref rid="cpb_27_2_027301_fn1" ref-type="fn">*</xref> <fn id="cpb_27_2_027301_fn1"> <label>*</label> <p>Project ...

Figure 3 from Controlled, Stepwise Reduction and Band Gap Manipulation of Graphene  Oxide. | Semantic Scholar
Figure 3 from Controlled, Stepwise Reduction and Band Gap Manipulation of Graphene Oxide. | Semantic Scholar