会议论文详细信息
4th ModTech International Conference - Modern Technologies in Industrial Engineering
Recent progress concerning the production of controlled highly oriented electrospun nanofibrous arrays
Manea, L.R.^1,2 ; Hristian, L.^1 ; Leon, A.L.^1 ; Popa, A.^3
Gheorghe Asachi Technical University of Iasi, Department of Knitting and Clothing, Faculty of Textiles, Leather and Industrial Management, Iasi, Romania^1
Romanian Inventors Forum, Str. Sf.P.Movila 3, L11, III/3, Iasi
700089, Romania^2
Aurel Vlaicu University of Arad, Engineering Faculty, Textile Department, Romania^3
关键词: Controlled assembly;    Electrospun nanofibers;    Fibrous deposits;    Materials and technologies;    Mechanical characteristics;    Multiple applications;    Photonic sensors;    Research development;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/145/3/032007/pdf
DOI  :  10.1088/1757-899X/145/3/032007
来源: IOP
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【 摘 要 】

Among the foreground domains of all the research-development programs at national and international level, a special place is occupied by that concerning the nanosciences, nanotechnologies, new materials and technologies. Electrospinning found a well-deserved place in this space, offering the preparation of nanomaterials with distinctive properties and applications in medicine, environment, photonic sensors, filters, etc. These multiple applications are generated by the fact that the electrospinning technology makes available the production of nanofibers with controllable characteristics (length, porosity, density, and mechanical characteristics), complexity and architecture. The apparition of 3D printing technology favors the production of complex nanofibrous structures, controlled assembly, self-assembly of electrospun nanofibers for the production of scaffolds used in various medical applications. The architecture of fibrous deposits has a special influence on the subsequent development of the cells of the reconstructed organism. The present work proposes to study of recent progress concerning the production of controlled highly oriented electrospun nanofibrous arrays and progress in research on the production of complex 2D and 3D structures.

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