In this work, Silk Fibroin (SF) nanofibers were electrospun onto plasma-treated 100% cotton gauze bandages to form a novel silk-gauze composite wound dressing. Atmospheric pressure plasma pre- and post- treatments wer...
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The lithium aluminum titanium phosphate (LATP)/Polyacrylonitrile (PAN) composite fiber-based membrane were prepared by electrospinning composite solution of LATP and PAN in N, N-dimethylformamide(DMF). The crystalliza...
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ISBN:
(纸本)9787122120199
The lithium aluminum titanium phosphate (LATP)/Polyacrylonitrile (PAN) composite fiber-based membrane were prepared by electrospinning composite solution of LATP and PAN in N, N-dimethylformamide(DMF). The crystallization phase of the LATP particles were characterized by X-ray diffraction(XRD). The electrolyte uptakes of the electrospun LATP/PAN composite fiber-based membranes were also evaluated. In addition, the electrochemical performance of the liquid electrolyte-soaked electrospun LATP/PAN composite fiber-based is also improved after the introduction of LATP particles.
Research and development in textiles have gone beyond the conventional applications as clothing and furnishing materials;for example, the convergence of textiles, nanotechnologies, and energy science opens up the oppo...
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Research and development in textiles have gone beyond the conventional applications as clothing and furnishing materials;for example, the convergence of textiles, nanotechnologies, and energy science opens up the opportunity to take on one of the major challenges in the 21st century-energy. This presentation addresses the development of high-energy lithium-ion batteries using electrospun nanofibers.
Conventional textile-based wound dressings are cost-effective and highly absorbent, but used alone, fail to provide optimal wound healing conditions (hemostasis, non-adherence, maintenance of a moist wound bed, etc.)....
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Conventional textile-based wound dressings are cost-effective and highly absorbent, but used alone, fail to provide optimal wound healing conditions (hemostasis, non-adherence, maintenance of a moist wound bed, etc.). Modern wound dressings often incorporate multiple non-textile components (films, gels, antimicrobials, and biological forms) that provide advanced functionalities at a significantly higher cost. Electrospun nanofiber dressings have demonstrated the potential to revolutionize wound care by providing significantly enhanced moisture management, barrier properties, and bioactivity. However, nanofiber webs are inherently weak and difficult to handle. Deposition of electrospun nanofiber coatings on a conventional textile bandages addresses the need for structural support, but faces challenges of delamination due to compliance mismatch or poor adhesion. Atmospheric plasma has been shown to increase adhesion of coatings to fibers due to enhanced surface chemistry and/or morphology.
作者:
K.C.LeeH.R.YuJ.H.ChenDepartment of Textile Engineering
Chinese Culture UniversityTaipeiTaiwan Department of Chemical and Materials Engineering and Master Program of NanomaterialsChinese Culture UniversityTaipeiTaiwan
In this experiment, acrylic and carbon fiber fabrics made of orthogonal three-dimensional, three-dimensional fabric with three-dimensional space can be consumed when the incident electromagnetic wave, The main purpose...
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In this experiment, acrylic and carbon fiber fabrics made of orthogonal three-dimensional, three-dimensional fabric with three-dimensional space can be consumed when the incident electromagnetic wave, The main purpose causes the electromagnetic wave (EMI) absorption value to increase, and achieving the purpose protection of the electromagnetic wave.
In the study, a spatial spring model has been proposed to investigate the effects of fabric parameters (such as surface braid angle, fiber volume fraction in a rectangular parallelpiped unit cell) on the effective ela...
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In the study, a spatial spring model has been proposed to investigate the effects of fabric parameters (such as surface braid angle, fiber volume fraction in a rectangular parallelpiped unit cell) on the effective elastic moduli of 3D (4-step) braided *** consider the crimp arrangement of the fiber tows and the interaction among the fiber tows in the unit cell, this model first treats each fiber tow as a curve composed of a series of springs with only axial rigidity, and thus discretizes the unit cell of braided composites into a finite elementmesh with both spring and solid elements.
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