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TITLE: Nanoporous anodic alumina layers obtained from novel deep eutectic solvent formulations
AUTHORS: Fernandes, P. M. V.; Brincoveanu, O.; Pantazi, A.; Petica, A.; Pereira, C. M. ; Fernando Silva, A.; Enachescu, M.; Anicai, L.;
PUBLISHED: 2023, SOURCE: TRANSACTIONS OF THE INSTITUTE OF METAL FINISHING, VOLUME: 101, ISSUE: 1
INDEXED IN: Scopus WOS CrossRef: 2 Unpaywall
2
TITLE: Chitins from Seafood Waste as Sustainable Porous Carbon Precursors for the Development of Eco-Friendly Supercapacitors  Full Text
AUTHORS: Brandao, Ana T. S. C.; Costa, Renata ; State, Sabrina; Potorac, Pavel; Dias, Catarina; Vazquez, Jose A.; Valcarcel, Jesus; Silva, A. Fernando ; Enachescu, Marius; Pereira, Carlos M. ;
PUBLISHED: 2023, SOURCE: MATERIALS, VOLUME: 16, ISSUE: 6
INDEXED IN: Scopus WOS CrossRef: 1
4
TITLE: Renewable Carbon Materials as Electrodes for High-Performance Supercapacitors: From Marine Biowaste to High Specific Surface Area Porous Biocarbons
AUTHORS: Brandao, Ana T. S. C.; State, Sabrina; Costa, Renata ; Potorac, Pavel; Vazquez, Jose A.; Valcarcel, Jesus; Silva, A. Fernando ; Anicai, Liana; Enachescu, Marius; Pereira, Carlos M. ;
PUBLISHED: 2023, SOURCE: ACS OMEGA, VOLUME: 8, ISSUE: 21
INDEXED IN: WOS Unpaywall
5
TITLE: Porous Carbon Materials Based on Blue Shark Waste for Application in High-Performance Energy Storage Devices
AUTHORS: Brandao, Ana T. S. C.; State, Sabrina; Costa, Renata ; Enache, Laura Bianca; Potorac, Pavel; Vazquez, Jose A.; Valcarcel, Jesus; Silva, A. Fernando ; Enachescu, Marius; Pereira, Carlos M. M. ;
PUBLISHED: 2023, SOURCE: APPLIED SCIENCES-BASEL, VOLUME: 13, ISSUE: 15
INDEXED IN: Scopus WOS
6
TITLE: Porous Carbon Materials Based on Blue Shark Waste for Application in High-Performance Energy Storage Devices  Full Text
AUTHORS: Ana T. S. C. Brandão; Sabrina State; Renata Costa ; Laura-Bianca Enache; Pavel Potorac; José A. Vázquez; Jesus Valcarcel; A. Fernando Silva ; Marius Enachescu; Carlos M. Pereira ;
PUBLISHED: 2023, SOURCE: Applied Sciences, VOLUME: 13, ISSUE: 15
INDEXED IN: CrossRef Unpaywall
9
TITLE: Joining Caffeic Acid and Hydrothermal Treatment to Produce Environmentally Benign Highly Reduced Graphene Oxide
AUTHORS: Barra, A; Lazar, O; Pantazi, A; Hortiguela, MJ; Otero Irurueta, G; Enachescu, M; Ruiz Hitzky, E; Nunes, C; Ferreira, P;
PUBLISHED: 2021, SOURCE: NANOMATERIALS, VOLUME: 11, ISSUE: 3
INDEXED IN: Scopus WOS
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