LabIvo
Grupo de pesquisa em fotocatálise e ciência dos materiais na Universidade Federal de São Carlos
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Edital Graduação PRH-ANP/UFSCar - Google Drive
Edital Graduação PRH-ANP/UFSCar - Google Drive
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Single-Atom Catalysis | ACS In Focus
Single-Atom Catalysis | ACS In Focus
Light-Driven Olefin Epoxidation via Poly(Triazine Imide): A Route Towards Sustainable Epoxide Production
Light-Driven Olefin Epoxidation via Poly(Triazine Imide): A Route Towards Sustainable Epoxide Production
Photocatalytic CO‐Free Hydroformylation: Unlocking New Horizons for a Classic Reaction - Cunha - 2026 - ChemCatChem - Wiley Online Library
Photocatalytic CO‐Free Hydroformylation: Unlocking New Horizons for a Classic Reaction - Cunha - 2026 - ChemCatChem - Wiley Online Library
Hydroformylation, the conversion of alkenes into aldehydes, is a cornerstone industrial process, as aldehydes serve as versatile intermediates for numerous chemical transformations. Conventionally, t...
Proton source selective semi-hydrogenation of alkynes: a water-powered selective photocatalyst based on nickel single-atoms on poly(heptazine imide) - Journal of Materials Chemistry A (RSC Publishing)
Proton source selective semi-hydrogenation of alkynes: a water-powered selective photocatalyst based on nickel single-atoms on poly(heptazine imide) - Journal of Materials Chemistry A (RSC Publishing)
Despite recent advances in photocatalytic hydrogenation reactions using water as a hydrogen source, many existing systems still suffer from limited efficiency, reliance on noble metals, or require complex synthetic procedures. Developing robust, earth-abundant, and synthetically accessible photocatalysts rem
Are these the happiest PhD students in the world?
Are these the happiest PhD students in the world?
Visible light-driven selective C-C cleavage of glycerol into formic acid using Ni-poly(heptazine) imide.
Visible light-driven selective C-C cleavage of glycerol into formic acid using Ni-poly(heptazine) imide.
Enhancing the Photocatalytic Performance of Carbon Nitrides Through Controlled Local Structure Modification
Enhancing the Photocatalytic Performance of Carbon Nitrides Through Controlled Local Structure Modification
Cu single-atoms supported on molten salt-derived N-doped nanocarbons: A highly efficient catalyst for 4-nitrophenol reduction
Cu single-atoms supported on molten salt-derived N-doped nanocarbons: A highly efficient catalyst for 4-nitrophenol reduction
Ionic Metal Poly(heptazine Imides) and Single‐Atoms Interplay: Engineered Stability and Performance for Photocatalysis, Photoelectrocatalysis and Organic Synthesis
Ionic Metal Poly(heptazine Imides) and Single‐Atoms Interplay: Engineered Stability and Performance for Photocatalysis, Photoelectrocatalysis and Organic Synthesis
Poly(heptazine) imides (PHIs), a crystalline carbon nitride subclass, intercalate metals to deliver high stability, tunable electronics, and efficient charge separation. These features enable solar-d...
Chlorine-Mediated Methane Activation: An Efficient Photocatalytic Pathway to Valuable Chemicals
Chlorine-Mediated Methane Activation: An Efficient Photocatalytic Pathway to Valuable Chemicals
Methane (CH4), a major component of natural gas, is both a valuable energy source and a potent greenhouse gas. Due to the remote locations of many CH4 reserves and the challenges of transportation, converting methane into liquid compounds under mild, sustainable conditions is highly desirable. Photocatalysis
Investigating the Metal–TiO2 Influence for Highly Selective Photocatalytic Oxidation of Methane to Methanol
Investigating the Metal–TiO2 Influence for Highly Selective Photocatalytic Oxidation of Methane to Methanol
Selective Photocatalytic Benzene Oxidation Using Iron‐Carbon Nitride Fragments Functionalized with Cyamelurate‐Like Groups
Selective Photocatalytic Benzene Oxidation Using Iron‐Carbon Nitride Fragments Functionalized with Cyamelurate‐Like Groups
Ni Single-Atoms Supported on N-Doped Carbon Prepared by Cation Exchange: Ultrafast Catalyst For The Reduction of Nitroarene Compounds Under Ambient Conditions
Ni Single-Atoms Supported on N-Doped Carbon Prepared by Cation Exchange: Ultrafast Catalyst For The Reduction of Nitroarene Compounds Under Ambient Conditions
Carbon nitride based materials: more than just a support for single-atom catalysis
Carbon nitride based materials: more than just a support for single-atom catalysis
Recently, the missing link between homogeneous and heterogeneous catalysis has been found and it was named single-atom catalysis (SAC). However, the SAC field still faces important challenges, one of which is controlling the bonding/coordination between the single atoms and the support in order to compensate
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