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Nickel Ferrite Nanoparticles Anchored onto Silica Nanofibers for Designing Magnetic and Flexible Nanofibrous Membranes

机译:硅纳米纤维上锚固的镍铁氧体纳米颗粒,用于设计磁性和柔性纳米纤维膜。

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Many applications proposed for magnetic silica nanofibers require their assembly into a cellular membrane structure. The feature to keep structure stable upon large deformation is crucial for a macroscopic porous material which functions reliably. However, it remains a key issue to realize robust flexibility in two-dimensional (2D) magnetic silica nanofibrous networks. Here, we report that the combination of electrospun silica nanofibers with zein dip-coating can lead to the formation of flexible, magnetic, and hierarchical porous silica nanofibrous membranes (SNM). The 290 nm diameter silica nanofibers act as templates for the uniform anchoring of nickel ferrite nanoparticles (size of 50 nm). Benefiting from the homogeneous and stable nanofiber-nanoparticle composite structure, the resulting magnetic SNM can maintain their structure integrity under repeated bending as high as 180 degrees and can facilely recover. The unique hierarchical structure also provides this new class of silica membrane with integrated properties of ultralow density, high porosity, large surface area, good magnetic responsiveness, robust dye adsorption capacity, and effective emulsion separation performance. Significantly, the synthesis of such fascinating membranes may provide new insight for further application of silica in a self-supporting, structurally adaptive, and 2D membrane form.
机译:对于磁性二氧化硅纳米纤维提出的许多应用要求将它们组装成细胞膜结构。大变形时保持结构稳定的特征对于可靠发挥作用的宏观多孔材料至关重要。但是,在二维(2D)磁性二氧化硅纳米纤维网络中实现强大的灵活性仍然是关键问题。在这里,我们报告电纺二氧化硅纳米纤维与玉米蛋白浸涂的结合可以导致形成柔性,磁性和分级多孔二氧化硅纳米纤维膜(SNM)。直径290 nm的二氧化硅纳米纤维充当均匀固定铁酸镍纳米颗粒(尺寸为50 nm)的模板。得益于均匀,稳定的纳米纤维-纳米颗粒复合结构,所得的磁性SNM在高达180度的反复弯曲下可以保持其结构完整性,并且可以轻松恢复。独特的分层结构还为这种新型的二氧化硅膜提供了超低密度,高孔隙率,大表面积,良好的磁响应性,强大的染料吸附能力和有效的乳液分离性能等综合特性。重要的是,这种引人入胜的膜的合成可以为自支撑,结构适应性和二维膜形式的二氧化硅的进一步应用提供新的见识。

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