Mercedes Santiago‐Calvo, Josías Tirado‐Mediavilla, José Luis Ruiz‐Herrero, Fernando Villafañe, Miguel Ángel Rodríguez‐Pérez (2019)
Long‐term thermal conductivity of cyclopentane–water blown rigid polyurethane foams reinforced with different types of fillers. Polymer International, 68(10), 1826.
10.1002/pi.5893Daniela Bresolin, Ariovaldo Bolzan, Claudia Sayer, Pedro Henrique Hermes de Araújo, Débora de Oliveira (2021)
Rigid Polyurethane Foam Obtained from Enzymatic Glycerolysis: Evaluation of the Influence of Lipase on Biopolyol Composition and Polymer Characteristics. Journal of Polymers and the Environment, 29(12), 3900.
10.1007/s10924-021-02159-6Yuliya Dulyanska, Luísa Cruz-Lopes, Bruno Esteves, Raquel Guiné, Idalina Domingos (2024)
FTIR Monitoring of Polyurethane Foams Derived from Acid-Liquefied and Base-Liquefied Polyols. Polymers, 16(15), 2214.
10.3390/polym16152214Maria Kurańska, Milena Leszczyńska, Joanna Kubacka, Aleksander Prociak, Joanna Ryszkowska (2020)
Effects of Modified Used Cooking Oil on Structure and Properties of Closed-Cell Polyurethane foams. Journal of Polymers and the Environment, 28(10), 2780.
10.1007/s10924-020-01792-xLuísa Cruz-Lopes, Yuliya Dulyanska, Rogério Lopes, Idalina Domingos, José Ferreira, Bruno Esteves (2024)
Valorization of Arbutus unedo L. Bark Through Chemical Composition Analysis, Liquefaction, and Bio-Based Foam Production. Agronomy, 14(12), 2893.
10.3390/agronomy14122893K. Salasinska, M. Celiński, K. Mizera, P. Kozikowski, M.K. Leszczyński, A. Gajek (2020)
Synergistic effect between histidine phosphate complex and hazelnut shell for flammability reduction of low-smoke emission epoxy resin. Polymer Degradation and Stability, 181, 109292.
10.1016/j.polymdegradstab.2020.109292Patricia Torres‐Regalado, Beatriz Merillas, Miguel Ángel Rodríguez‐Pérez (2025)
Environmentally Friendly Blowing Agents for Producing Polyisocyanurate (PIR) Foams: Study of the Thermal Conductivity Aging and Mechanical Properties. Nano Select,
10.1002/nano.70034Lorenzo Miele, Emilia Di Lorenzo, Céline Guissart, Ernesto Di Maio (2024)
Liquid foaming of TPU with Methylal. Heliyon, 10(12), e32420.
10.1016/j.heliyon.2024.e32420Adam Olszewski, Paulina Kosmela, Wiktoria Żukowska, Paweł Wojtasz, Mariusz Szczepański, Mateusz Barczewski, Łukasz Zedler, Krzysztof Formela, Aleksander Hejna (2022)
Insights into Stoichiometry Adjustments Governing the Performance of Flexible Foamed Polyurethane/Ground Tire Rubber Composites. Polymers, 14(18), 3838.
10.3390/polym14183838Samy A. Madbouly (2023)
Novel recycling processes for thermoset polyurethane foams. Current Opinion in Green and Sustainable Chemistry, 42, 100835.
10.1016/j.cogsc.2023.100835Patricia Torres‐Regalado, Mercedes Santiago‐Calvo, Josep Gimeno, Miguel Angel Rodríguez‐Pérez (2023)
Thermal conductivity aging and mechanical properties of polyisocyanurate (PIR) foams produced with different contents of HFO. Journal of Applied Polymer Science, 140(40), 1.
10.1002/app.54504Hao Jiang, Shuang Liu, Chunhong Liu, Jialu Shang, Xiaoxuan Wang, Xiaodong Li, Xing Su, Meishuai Zou (2025)
Impact of Chain Extenders on Pore Structure, Properties, and Reaction Kinetics of Microporous Polyurethane Elastomers. ACS Applied Polymer Materials, 7(1), 63.
10.1021/acsapm.4c02620Mateusz Barczewski, Maria Kurańska, Kamila Sałasińska, Joanna Aniśko, Joanna Szulc, Izabela Szafraniak-Wiza, Aleksander Prociak, Krzysztof Polaczek, Katarzyna Uram, Karolina Surmacz, Adam Piasecki (2022)
Comprehensive Analysis of the Influence of Expanded Vermiculite on the Foaming Process and Selected Properties of Composite Rigid Polyurethane Foams. Polymers, 14(22), 4967.
10.3390/polym14224967Marta Santos, Marcos Mariz, Igor Tiago, Susana Alarico, Paula Ferreira (2025)
Bio-Based Polyurethane Foams: Feedstocks, Synthesis, and Applications. Biomolecules, 15(5), 680.
10.3390/biom15050680Krishnan V.G. (2025)
Characterizing the foaming process of polymers: Review of experimental methods. Advances in Colloid and Interface Science, 344,
10.1016/j.cis.2025.103579Krasnovskikh M.P. (2022)
PHYSICAL FOAMING AGENT INFLUENCE ON RIGID POLYURETHANE FOAMS PROPERTIES. Chemchemtech, 65(11), 90-97.
10.6060/ivkkt.20226511.6657Nuhu I. (2022)
Enhancement of polyurethane mechanical properties through optimization of its pristine microstructure. Materials Today Proceedings, 110(C), 158-162.
10.1016/j.matpr.2023.11.085Polena J. (2021)
Pervaporation of dichloromethane-cyclopentane and methylal-cyclopentane mixtures through membranes from chloroprene rubber. Journal of Applied Polymer Science, 138(44),
10.1002/app.51320Cimavilla-Román P. (2021)
Dynamic Mechanical Analysis during polyurethane foaming: Relationship between modulus build-up and reaction kinetics. Polymer Testing, 103,
10.1016/j.polymertesting.2021.107336Borowicz M. (2021)
Effect of new eco-polyols based on pla waste on the basic properties of rigid polyurethane and polyurethane/polyisocyanurate foams. International Journal of Molecular Sciences, 22(16),
10.3390/ijms22168981Szczepkowski L. (2020)
New amine adducts with carbon dioxide as blowing agents in the production of integral polyurethane foams. Polimery Polymers, 65(10), 681-690.
10.14314/polimery.2020.10.3Szczepkowski L. (2020)
New amine adducts with carbon dioxide as blowing agents in the production of integral polyurethane foams. Seikagaku, 65(10), 681-690.
10.14952/SEIKAGAKU.2020.920498