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Li, S., Guo, H., He, S., Yang, H., Liu, K., Duan, G., & Jiang, S. (2022). Advanced Electrospun Nanofibers as Bifunctional Electrocatalysts for Flexible Metal-Air (O2) Batteries: Opportunities and Challenges. Mater. Des., 214, 110406. DOI: 10.1016/j. matdes.2022.110406Search in Google Scholar
Zhou, Y., Liu, Y., Zhang, M., Feng, Z., Yu, D. G., & Wang, K. (2022). Electrospun Nanofiber Membranes for Air Filtration: A Review. Nanomaterials, 12 (7). DOI: 10.3390/nano12071077Search in Google Scholar
Arun, A., Malrautu, P., Laha, A., & Ramakrishna, S. (2021). Gelatin Nanofibers in Drug Delivery Systems and Tissue Engineering. Eng. Sci., 16, 71–81. DOI: 10.30919/es8d527Search in Google Scholar
Hanumantharao, S. N., & Rao, S. (2019). Multi-functional Electrospun Nanofibers from Polymer Blends for Scaffold Tissue Engineering. Fibers, 7 (66), 1–35.Search in Google Scholar
Ambekar, R. S., & Kandasubramanian, B. (2019). Advancements in Nanofibers for Wound Dressing: A Review. Eur. Polym. J., 117, 304–336. DOI: 10.1016/j. eurpolymj.2019.05.020Search in Google Scholar
Kulkarni, D., Musale, S., Panzade, P., Paiva-Santos, A. C., Sonwane, P., Madibone, M., … & Cavalu, S. (2022). Surface Functionalization of Nanofibers: The Multifaceted Approach for Advanced Biomedical Applications. Nanomaterials, 12 (21), 3899. DOI: 10.3390/nano12213899Search in Google Scholar
Guerrero-Pérez, M. O. (2022). Research Progress on the Applications of Electrospun Nanofibers in Catalysis. Catalysts, 12 (1). DOI: 10.3390/catal12010009Search in Google Scholar
Lasenko, I., Sanchaniya, J. V., Kanukuntla, S. P., Ladani, Y., Viluma-Gudmona, A., Kononova, O., … & Selga, T. (2023). The Mechanical Properties of Nanocomposites Reinforced with PA6 Electrospun Nanofibers. Polymers, 15 (3), 673. DOI: 10.3390/polym15030673Search in Google Scholar
Sanchaniya, J. V., Lasenko, I., Vijayan, V., Smogor, H., Gobins, V., Kobeissi, A., & Goljandin, D. (2024). A Novel Method to Enhance the Mechanical Properties of Polyacrylonitrile Nanofiber Mats: An Experimental and Numerical Investigation. Polymers, 16 (7), 992. DOI: 10.3390/polym16070992Search in Google Scholar
Grauda, D., Butkauskas, D., Vyšniauskienë, R., Ranèelienë, V., Krasņevska, N., Miķelsone, A., … & Ļašenko, I. (2023). Establishment of Biotesting System to Study Features of Innovative Multifunctional Biotextile. Proc. Latv. Acad. Sci. Sect. B Nat. Exact, Appl. Sci., 77 (3–4), 186–192. DOI: 10.2478/prolas-2023-0026Search in Google Scholar
Zhu, W., Zhang, D., Liu, X., Ma, T., He, J., Dong, Q., … & Cai, J. (2022). Improving the Hydrophobicity and Mechanical Properties of Starch Nanofibrous Films by Electrospinning and Cross-linking for Food Packaging Applications. LWT, 169, 114005. DOI: 10.1016/j.lwt.2022.114005Search in Google Scholar
Sanchaniya, J. V., Lasenko, I., Kanukuntla, S. P., Mannodi, A., Viluma-Gudmona, A., & Gobins, V. (2023). Preparation and Characterization of Non-Crimping Laminated Textile Composites Reinforced with Electrospun Nanofibers. Nanomaterials, 13 (13), 1949. DOI: 10.3390/nano13131949Search in Google Scholar
Sanchaniya, J. V., Lasenko, I., Kanukuntala, S. P., Smogor, H., Viluma-Gudmona, A., Krasnikovs, A., … & Gobins, V. (2023). Mechanical and Thermal Characterization of Annealed Oriented PAN Nanofibers. Polymers, 15 (15), 3287. DOI: 10.3390/polym15153287Search in Google Scholar
Sanchaniya, J. V., Kanukuntla, S. P., & Senyurt, K. B. (2023). Fabrication and Mechanical Properties of Polymer Composite Nanofiber Mats. Eng. Rural Dev., 85–90. DOI: 10.22616/ERDev.2023.22. TF014Search in Google Scholar
Sanchaniya, J. V., Lasenko, I., Gobins, V., & Kobeissi, A. (2024). A Finite Element Method for Determining the Mechanical Properties of Electrospun Nanofibrous Mats. Polym., 16 (6), 852. DOI: 10.3390/polym16060852Search in Google Scholar
Verschatse, O., Loccufier, E., Swanckaert, B., De Clerck, K., & Daelemans, L. (2023). Microscale and Macroscale Deformation Behavior of Electrospun Polymeric Nanofiber Membranes Using In Situ SEM during Mechanical Testing. Polymers (Basel)., 15 (7). DOI: 10.3390/polym15071630Search in Google Scholar
Sanchaniya, J. V., Kanukuntla, S.-P., Modappathi, P., & Macanovskis, A. (2022). Mechanical Behaviour Numerical Investigation of Composite Structure, Consisting of Polymeric Nanocomposite Mat and Textile. 21st Int. Sci. Conf. Eng. Rural Dev. Proc., 21, 720–726. DOI: 10.22616/erdev.2022.21.tf225Search in Google Scholar