Publications

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de Almeida, Pedro Lúcio Maia Marques, João Luís Maia Figueirinhas, Maria Teresa Varanda Cidade, Maria Helena Figueiredo Godinho, and Universidade Nova de Lisboa Estudo e optimização de um novo dispositivo electro-óptico tipo PDLC., 2003. Abstract
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Pereira, André, Rui Micaelo, Luís Quaresma, and Maria Teresa Cidade. "Evaluation of Different Methods for the Estimation of the Bitumen Fatigue Life with DSR Testing." Springer Netherlands, 2016. 1017-1028. Abstract
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Pereira A.,., Micaelo R., Quaresma L., and Cidade M.T. "Evaluation of Different Methods for the Estimation of the Bitumen Fatigue Life with DSR Testing." 8th RILEM International Symposium on Testing and Characterization of Sustainable and Innovative Bituminous Materials. RILEM Bookseries. Dordrecht: Springer, 2016. 1017-1028.
Baltazar, LG, F. M. A. Henriques, D. Rocha, and M. T. Cidade. "Experimental characterization of injection grouts incorporating hydrophobic silica fume." Journal of Materials in Civil Engineering. 29 (2017). AbstractWebsite
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Neves, S., C. R. Leal, M. T. Cidade, Albert Co, Gary L. Leal, Ralph H. Colby, and Jeffrey A. Giacomin. "Experimental results on electrorheology of liquid crystalline polymer solutions." Vol. 1027. AIP, 2008. 1429-1431. Abstract
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Cidade, M. T., S. Filipe, VC Barroso, and Manfred Wilhelm. "Experimental Results on Fourier Transform Rheology of PBLG/m-cresol and HPC/Water Liquid Crystalline Solutions." 495.1 (2008): 247-599. Abstract
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Baltazar, Luis G., Fernando MA Henriques, and Maria Teresa Cidade. "Experimental Study and Modeling of Rheological and Mechanical Properties of NHL Grouts." 27.12 (2015): 04015055. Abstract
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Micaelo, R., A. Pereira, L. Quaresma, and M. T. Cidade. "Fatigue resistance of asphalt binders: assessment of the analysis methods in strain-controlled tests." 98 (2015): 703-712. Abstract
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Almeida, PL, G. Lavareda, Nunes De C. Carvalho, A. Amaral, M. H. Godinho, M. T. Cidade, and J. L. Figueirinhas. "Flexible cellulose derivative PDLC type cells." 29.3 (2002): 475-477. Abstract
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Baltazar, LG, F. M. A. Henriques, and M. T. Cidade. "Grouts with improved durability for masonry consolidation: An experimental study with non-standard specimens." Key Engineering Materials. 747 KEM (2017): 480-487. AbstractWebsite
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Filipe, Susana, João Manuel Maia, Catarina Rosa Leal, and Maria Teresa Cidade. "Influence of processing conditions on the morphological and mechanical properties of compatibilized PP/LCP blends." 105.3 (2007): 1521-1532. Abstract
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Duarte, AP, JC Bordado, and M. T. Cidade. "Influence to the performance of cellulose acetate reverse osmosis membranes by fibers addition." 109.4 (2008): 2321-2328. Abstract
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Cidade, M. T., DJ Ramos, J. Santos, H. Carrelo, N. Calero, and J. P. Borges. "Injectable Hydrogels Based on Pluronic/Water Systems Filled with Alginate Microparticles for Biomedical Applications." Materials. 12.7 (2019): paper 1083.
Delgado, B., H. Carrêlo, M. V. Loureiro, A. C. Marques, J. P. Borges, and M. T. Cidade. "Injectable hydrogels with two different rates of drug release based on pluronic/water system filled with poly(ε-caprolactone) microcapsules." J Mater Sci . 56.23 (2021): 13416.
Carrêlo, Henrique, Paula I. P. Soares, João Paulo Borges, and Maria Teresa Cidade. "Injectable Microparticle/Hydrogel Composite Systems for Bio-2 active Cargo Controlled Delivery." Gels . 7.3 (2021): 147.
Harrison, P., P. Navard, and M. T. Cidade. "Investigation into Band Texture Occurring in Liquid Crystal Polymers." Progress and Trends in Rheology V. Steinkopff, 1998. 226-227. Abstract
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Almeida, PL, M. T. Cidade, M. H. Godinho, AC Ribeiro, and J. L. Figueirinhas. "Light scattering studies in cellulose derivative based PDLC type cells." 359.1 (2001): 79-88. Abstract
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Tipa, Cezar, Maria T. Cidade, Tânia Vieira, Jorge Carvalho Silva, Paula I. P. Soares, and João Paulo Borges. "A New Long-Term Composite Drug Delivery System Based on Thermo-Responsive Hydrogel and Nanoclay." Nanomaterials . 11 (2021): 25.
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Baptista, Ricardo, Mafalda Guedes, M. F. C. Pereira, A. Maurício, Henrique Nuno Carrêlo, and Maria Teresa Cidade. "On the effect of design and fabrication parameters on mechanical performance of 3D printed PLA scaffolds." Bioprinting . 20. e00096 (2020).