Microstructure and physical properties of composite nonwovens produced by incorporating cotton fibers in elastic spunbond and meltblown webs for medical textiles
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[1] R. Mohammadi,et al. A facile, fast, and low-cost method for fabrication of micro/nano-textured superhydrophobic surfaces. , 2020, Journal of colloid and interface science.
[2] A. Moghadam,et al. On liquid bridge adhesion to fibrous surfaces under normal and shear forces , 2020 .
[3] S. Maity,et al. Thermal Resistance and Moisture Management Behaviour of Nettle/Polyester Nonwoven Fabrics , 2019, TEKSTILEC.
[4] Song Jun Doh,et al. Composite Nonwovens Based on Carboxymethyl Cellulose for Wound Dressing Materials , 2019, Fibers and Polymers.
[5] S M Fijul Kabir,et al. Cellulose-based hydrogel materials: chemistry, properties and their prospective applications , 2018, Progress in Biomaterials.
[6] G. Bhat,et al. Porosity and barrier properties of polyethylene meltblown nonwovens , 2017 .
[7] Xingyi Li,et al. Fabrication of superhydrophobic textiles with high water pressure resistance , 2017 .
[8] G. Bhat,et al. Structure and mechanical properties of polyethylene melt blown nonwovens , 2016 .
[9] Xiangyu Jin,et al. Composite melt-blown nonwoven fabrics with large pore size as Li-ion battery separator , 2016 .
[10] Yan Wang,et al. Air permeability of polyester nonwoven fabrics , 2015 .
[11] Xiaosong Huang. Performance evaluation of a non-woven lithium ion battery separator prepared through a paper-making process , 2014 .
[12] Xiangyu Jin,et al. Water Repellency and Corrosion Resistance for High-Temperature Filter Fabrics Based on a Fluorinated Finishing Composition , 2012 .
[13] Senthilkumar Mani,et al. Dynamic Elastic Behavior of Cotton and Cotton / Spandex Knitted Fabrics , 2012 .
[14] X. Qian,et al. Research Progress of Elastic Nonwovens with Meltblown Technology , 2011 .
[15] Behnam Pourdeyhimi,et al. High strength nylon micro- and nanofiber based nonwovens via spunbonding , 2007 .
[16] Yong Lak Joo,et al. Characterization of nanofibrous membranes with capillary flow porometry , 2006 .
[17] Antje J. Baeumner,et al. Electrospun polylactic acid nanofiber membranes as substrates for biosensor assemblies , 2006 .
[18] Yen Wei,et al. Electrospinning polyaniline-contained gelatin nanofibers for tissue engineering applications. , 2006, Biomaterials.
[19] A. Goldstein,et al. Effect of fiber diameter on spreading, proliferation, and differentiation of osteoblastic cells on electrospun poly(lactic acid) substrates. , 2006, Biomaterials.
[20] S. Ramakrishna,et al. Fabrication of porous electrospun nanofibres , 2006 .
[21] D. Reneker,et al. The effect of nanofibers on liquid–liquid coalescence filter performance , 2005 .
[22] K. Sawicka,et al. Electrospun biocomposite nanofibers for urea biosensing , 2005 .
[23] Seeram Ramakrishna,et al. Potential of nanofiber matrix as tissue-engineering scaffolds. , 2005, Tissue engineering.
[24] John P. Ferraris,et al. Electrospun mesoporous titanium dioxide fibers , 2004 .
[25] B. Erman,et al. Palladium Nanoparticles by Electrospinning from Poly(acrylonitrile-co-acrylic acid)-PdCl2 Solutions. Relations between Preparation Conditions, Particle Size, and Catalytic Activity , 2004 .
[26] Hak Yong Kim,et al. Transport properties of electrospun nylon 6 nonwoven mats , 2003 .
[27] Donald Rivin,et al. Transport properties of porous membranes based on electrospun nanofibers , 2001 .