Publications
Alginate-Lysozyme Nanofibers Hydrogels with Improved Rheological Behavior, Printability and Biological Properties for 3D Bioprinting Applications
Teixeira, MC; Lameirinhas, NS; Carvalho, JPF; Valente, BFA; Luis, J; Pires, L; Oliveira, H; Oliveira, M; Silvestre, AJD; Vilela, C; Freire, CSR
2022, NANOMATERIALS, 12, 13.
>
Improving the Processability and Performance of Micronized Fiber-Reinforced Green Composites through the Use of Biobased Additives
Valente, BFA; Silvestre, AJD; Neto, CP; Vilela, C; Freire, CSR
2022, POLYMERS, 14, 17.
>
Effect of the Micronization of Pulp Fibers on the Properties of Green Composites
Valente, BFA; Silvestre, AJD; Neto, CP; Vilela, C; Freire, CSR
2021, MOLECULES, 26, 18.
ISBN:
1420-3049
>
Exploiting poly(e-caprolactone) and cellulose nanofibrils modified with latex nanoparticles for the development of biodegradable nanocomposites
Vilela, C; Engstrom, J; Valente, BFA; Jawerth, M; Carlmark, A; Freire, CSR
2019, POLYMER COMPOSITES, 40, 4, 1342-1353.
ISBN:
1548-0569
>
Novel multilayered nanostructured drug delivery systems obtained by layer-by-layer assembly of cellulose nanocrystals
Maia. M, Vilela. C, Pinto. R, Valente. B, Carvalho. T, Freire. C
2018.
>
Cellulose nanofibrils modified with latex nanoparticles as reinforcement for biodegradable poly(ε-caprolactone)-based composites
C. Vilela, J. Engström, B.F.A. Valente, M. Jawerth, A. Carlmark, C.S.R. Freire
.
>