400-8910-119
山东大学陈代荣教授:电纺a-WO3/PAN纳米纤维膜用于水净化和金属回收
山东大学陈代荣教授:电纺a-WO3/PAN纳米纤维膜用于水净化和金属回收
含有金属污染物的废水对人类健康的具有极大的负面影响。同时,废水中的金属污染物是宝贵的资源,从废水中去除/回收对环境保护和可持续发展至关重要。然而,目前的技术不能满足从废水中高浓度去除/回收超低浓度金属离子的要求。
2019/9/28 22:36:51
电纺结合3D打印:从想象到现实
电纺结合3D打印:从想象到现实
本网独家观点
2019/11/18 20:22:46
电纺行业的春天即将到来
电纺行业的春天即将到来
本网独家观点
2019/11/18 20:22:46
Nano Energy:基于电纺聚偏氟乙烯纳米纤维的新型摩擦纳米发电机用于有效的声能收集
Nano Energy:基于电纺聚偏氟乙烯纳米纤维的新型摩擦纳米发电机用于有效的声能收集
声能作为一种无处不在的可再生能源,广泛分布在世界各个角落,如工厂机器和建筑工地的噪音。声能捕获并不普遍作为其他类型的能量收集,这主要归因于其相对较低功率密度和缺乏有效的清除技术。
2019/11/27 16:02:16
Nat. Commun. 高效大尺寸的电纺硅基热电纳米材料
Nat. Commun. 高效大尺寸的电纺硅基热电纳米材料
近日,研究人员通过静电纺丝和模板法构建一系列高性能纳米结构热电材料,且该方法具有低成本和可扩展的特点。研究者
2019/11/27 16:17:13
Nat. Commun. 高效大尺寸的电纺硅基热电纳米材料
Nat. Commun. 高效大尺寸的电纺硅基热电纳米材料
近日,研究人员通过静电纺丝和模板法构建一系列高性能纳米结构热电材料,且该方法具有低成本和可扩展的特点。研究者
2019/11/27 16:17:19
Nature Communications:静电纺丝纳米纤维上自发形成纳米颗粒
Nature Communications:静电纺丝纳米纤维上自发形成纳米颗粒
近日,美国加州理工研究人员通过单步电纺丝过程在光滑纳米纤维上自发形成纳米颗粒,这是一种低价且可扩展的制备高表面复合材料的方法。含有质子导电电解质的纳米纤维层,即磷酸铯二氢氢铯,由与聚合物混合的透明溶液均匀地沉积在大面积的基质上。
2019/11/27 16:21:58
Progress in Polymer Science综述:从拓扑结构设计到生物应用的生物功能电纺纳米材料
Progress in Polymer Science综述:从拓扑结构设计到生物应用的生物功能电纺纳米材料
为了解决实际问题或阐明生物领域的基本问题,人们开发了多种纳米技术,制备了大量纳米材料。在这些纳米技术和纳米材料中,电纺丝技术(简称“e-spin”)是制备多种生物功能性纳米材料最简单、最直接的技术,适用于广泛的生物应用。e-spin不仅可以用来制造纳米纤维,而且还可以多用途地制造具有多种拓扑结构的纳米材料,从微珠、中空纤维到分层结构。
2019/11/27 17:07:57
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Electrospun polyacrylonitrile/poly (methyl methacrylate)-derived turbostratic carbon micro-/nanotubes
Electrospun polyacrylonitrile/poly (methyl methacrylate)-derived turbostratic carbon micro-/nanotubesElectrospun polyacrylonitrile/poly (methyl methacrylate)-derived turbostratic carbon micro-/nanotub
2019/11/27 21:19:07
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Tensile deformation of electrospun nylon-6,6 nanofibers
Tensile deformation of electrospun nylon-6,6 nanofibersTensile deformation of electrospun nylon-6,6 nanofibersTensile deformation of electrospun nylon-6,6 nanofibersTensile deformation of electrospun
2019/11/27 21:19:07
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Encapsulation of cells within electrospun fibers
Encapsulation of cells within electrospun fibersEncapsulation of cells within electrospun fibersEncapsulation of cells within electrospun fibersEncapsulation of cells within electrospun fibersEncapsul
2019/11/27 21:19:07
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Incorporation of biodegradable electrospun fibers into calcium phosphate cement for bone regeneration
Incorporation of biodegradable electrospun fibers into calcium phosphate cement for bone regenerationIncorporation of biodegradable electrospun fibers into calcium phosphate cement for bone regenerati
2019/11/27 21:19:08
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Fabrication of Electrical Conductivity and Reinforced Electrospun Silk Nanofibers with MWNTs
Fabrication of Electrical Conductivity and Reinforced Electrospun Silk Nanofibers with MWNTsFabrication of Electrical Conductivity and Reinforced Electrospun Silk Nanofibers with MWNTsFabrication of E
2019/11/27 21:19:08
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A 2.5D approach to the mechanics of electrospun fibre mats
A 2.5D approach to the mechanics of electrospun fibre matsA 2.5D approach to the mechanics of electrospun fibre matsA 2.5D approach to the mechanics of electrospun fibre matsA 2.5D approach to the mec
2019/11/27 21:19:08
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Improved cellular response of chemically crosslinked collagen in corporated hydroxyethyl cellulose/poly(vinyl) alcohol nanofibers scaffold
Improved cellular response of chemically crosslinked collagen in corporated hydroxyethyl cellulose/poly(vinyl) alcohol nanofibers scaffoldImproved cellular response of chemically crosslinked collagen
2019/11/27 21:19:08
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Nanostructured materials from hydroxyethyl cellulose for skin tissue engineering
Nanostructured materials from hydroxyethyl cellulose for skin tissue engineeringNanostructured materials from hydroxyethyl cellulose for skin tissue engineeringNanostructured materials from hydroxyeth
2019/11/27 21:19:08
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Nanofibrous TiO2 improving performance of mesoporous TiO2 electrode in dye-sensitized solar cell
Nanofibrous TiO2 improving performance of mesoporous TiO2 electrode in dye-sensitized solar cellNanofibrous TiO2 improving performance of mesoporous TiO2 electrode in dye-sensitized solar cellNanofibr
2019/11/27 21:19:08
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Zinc(II) 2,9,16,23-tetrakis 4-(N-methylpyridyloxy) -phthalocyanine anchored on an electrospun polysulfone polymer fiber: Application for photosensitized conversion of methyl orange
Zinc(II) 2,9,16,23-tetrakis 4-(N-methylpyridyloxy) -phthalocyanine anchored on an electrospun polysulfone polymer fiber: Application for photosensitized conversion of methyl orangeZinc(II) 2,9,16,23-t
2019/11/27 21:19:08
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Comparative Phototransformation of Environmental Pollutants Using Metallophthalocyanines Supported on Electrospun Polymer Fibers
Comparative Phototransformation of Environmental Pollutants Using Metallophthalocyanines Supported on Electrospun Polymer FibersComparative Phototransformation of Environmental Pollutants Using Metall
2019/11/27 21:19:08
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Photooxidation of 4-chlorophenol sensitized by lutetium tetraphenoxy phthalocyanine anchored on electrospun polystyrene polymer fiber
Photooxidation of 4-chlorophenol sensitized by lutetium tetraphenoxy phthalocyanine anchored on electrospun polystyrene polymer fiberPhotooxidation of 4-chlorophenol sensitized by lutetium tetraphenox
2019/11/27 21:19:08
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