Supervisões em Curso
Projectos
ABSolEU: closing the loop on ABS plastics recycling (ABSolEU)

Coordenador LocalEuropean Comission
At least 85% of end-of-life ABS plastic, found in durable products ranging from toys to automotive components and daily-use items such as shavers, ends up in landfills or being incinerated. The ABSolEU project aims to develop and matur...ILLIANCE (ILLIANCE (WP4 - OLI Health))

ParticipanteIndustry National
A Agenda ILLIANCE consubstancia-se num ecossistema complexo de projetos integrados que visam endereçar o objetivo de neutralidade carbónica associada ao sector dos edifícios, que representam 40% das emissões globais de CO2. A abordagem adotada assenta no desenvolvimento de tecnologias compleme...Promovendo a sustentabilidade na reciclagem de plásticos: Utilização de eco-solventes para remover aditivos e melhorar adespolimerização enzimática (GreenPATH)
ParticipanteFundação para a Ciência e a Tecnologia
O GreenPATH tem como objetivo desenvolver um processo de pré-tratamento sustentável que combine extração sólido-líquido de alta pressão (HP-SLE) com solventes renováveis de baixo custo, nomeadamente biosolventes e ...Desenho racional de uma esterase termoestável para a produção de bioplásticos de alto valor para aplicações biomédicas (ThermoEst)
Coordenador LocalFundação para a Ciência e a Tecnologia
This project is focused on the design of customized thermostable enzymes to produce highvaluebiopolymers for biomedicalapplications.We are living a new industrial production paradigm era, where biocatalysis is becoming increasingly competitive and replacingtraditional chemical synthesis. Nowadays, ...European network of FURan based chemicals and materials FOR a Sustainable development (FUR4Sustain)

CoordenadorEuropean Comission
Modern society relies on a huge quantity of polymeric materials. However, today, these materials are still almost exclusively based on fossil-resources and evolution to a more sustainable model of development is required. In this perspective, biomass and, in particular carbohydrates from, for example, low value b...Publicações
Asymmetric Monomer, Amorphous Polymer? Structure-Property Relationships in 2,4-FDCA and 2,4-PEF
Nolasco, MM; Araujo, CF; Thiyagarajan, S; Rudic, S; Vaz, PD; Silvestre, AJD; Ribeiro-Claro, PJA; Sousa, AF
2020, MACROMOLECULES, 53, 4, 1380-1387.
ISBN:
1520-5835
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Enzymatic Synthesis of Poly(caprolactone): A QM/MM Study
Pedro R. Figueiredo, Beatriz C. Almeida, Daniel F. A. R. Dourado, Andreia F. Sousa, Armando J. D. Silvestre and Alexandra T. P. Carvalho
2020, ChemCatChem, 12, 19, 4845-4852.
ISBN:
1867-3899
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A Perspective on PEF Synthesis, Properties, and End-Life
Loos, K; Zhang, RY; Pereira, I; Agostinho, B; Hu, H; Maniar, D; Sbirrazzuoli, N; Silvestre, AJD; Guigo, N; Sousa, AF
2020, FRONTIERS IN CHEMISTRY, 8.
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Co-Polymers based on Poly(1,4-butylene 2,5-furandicarboxylate) and Poly(propylene oxide) with Tuneable Thermal Properties: Synthesis and Characterization
Matos, M; Sousa, AF; Mendonca, PV; Silvestre, AJD
2019, MATERIALS, 12, 2.
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Cinnamic acid derivatives as promising building blocks for advanced polymers: synthesis, properties and applications
Fonseca, AC; Lima, MS; Sousa, AF; Silvestre, AJ; Coelho, JFJ; Serra, AC
2019, POLYMER CHEMISTRY, 10, 14, 1696-1723.
ISBN:
1759-9962
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Highly transparent films of new copolyesters derived from terephthalic and 2,4-furandicarboxylic acids
Zaidi, S; Thiyagarajan, S; Bougarech, A; Sebti, F; Abid, S; Majdi, A; Silvestre, AJD; Sousa, AF
2019, POLYMER CHEMISTRY, 10, 39, 5324-5332.
ISBN:
1759-9962
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Replacing Di(2-ethylhexyl) Terephthalate by Di(2-ethylhexyl) 2,5-Furandicarboxylate for PVC Plasticization: Synthesis, Materials Preparation and Characterization
Matos, M; Cordeiro, RA; Faneca, H; Coelho, JFJ; Silvestre, AJD; Sousa, AF
2019, MATERIALS, 12, 14.
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Inside PEF: Chain Conformation and Dynamics in Crystalline and Amorphous Domains
Araujo, CF; Nolasco, MM; Ribeiro-Claro, PJA; Rudic, S; Silvestre, AJD; Vaz, PD; Sousa, AF
2018, MACROMOLECULES, 51, 9, 3515-3526.
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Tailored design of renewable copolymers based on poly(1,4-butylene 2,5-furandicarboxylate) and poly(ethylene glycol) with refined thermal properties
Sousa, AF; Guigo, N; Pozycka, M; Delgado, M; Soares, J; Mendonca, PV; Coelho, JFJ; Sbirrazzuoli, N; Silvestre, AJD
2018, POLYMER CHEMISTRY, 9, 6, 722-731.
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Furanoate-Based Nanocomposites: A Case Study Using Poly(Butylene 2,5-Furanoate) and Poly(Butylene 2,5-Furanoate)-co-(Butylene Diglycolate) and Bacterial Cellulose
Matos, M; Sousa, AF; Silva, NHCS; Freire, CSR; Andrade, M; Mendes, A; Silvestre, AJD
2018, POLYMERS, 10, 8.
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