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Development of optimized triaxially electrospun titania nanofiber-in-nanotube core-shell structure

机译:优化三轴电纺出纳米纤维型纳米管芯壳结构的研制

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摘要

One dimensional (1D) nanostructures and its derivatives can be manipulated to serve special functions like hollow structure, and higher surface area. 1D TiO2 nanotube-in-nanofibers (NF@NT) are developed through triaxial electrospinning followed by a calcination process. A blended solution of polyvinyl pyrrolidone and tetra-butyl titanate is used in outer and inner layers of nanofibers, respectively, while paraffin oil is used in the middle layer. The optimized triaxial nanofibers of 669.4 +/- 52.43 nm are developed at 7.5 w/w% concentration, 28 kV applied voltage, and 24 cm spinning distance. TiO2 NF@NT structure is obtained through calcination of optimized triaxial nanofibers at 550 degrees C. Subsequently, the morphology of TiO2 NF@NT and its uniform diameter distribution is confirmed through scanning electron microscopy. Fourier-transform infrared spectroscopy results indicates the formation of TiO2 NF@NT. X-Rays diffraction pattern peaks also reveals the presence of both anatase and rutile crystalline phases. The presence of only titanium (Ti) and oxygen (O) elements in the TiO2 NF@NT is confirmed through energy dispersive X-ray spectroscopy. Brunauer-Emmett-Teller analysis indicates that TiO2 NF@NT has a higher specific surface area of similar to 141.68 m(2)/g compared with the solid TiO2 nanofiber (similar to 75.31 m(2)/g). This study can be adopted to develop TiO2 NF@NT for wide range of application.
机译:一维(1D)纳米结构及其衍生物可以被操纵,以实现中空结构和更高表面积等特殊功能。纳米纤维中的一维TiO2纳米管(NF@NT)通过三轴静电纺丝和煅烧工艺开发。聚乙烯醇吡咯烷酮和钛酸四丁酯的共混溶液分别用于纳米纤维的外层和内层,而中间层使用石蜡油。在7.5w/w%浓度、28kv外加电压和24cm纺丝距离下,制备了669.4+/-52.43nm的优化三轴纳米纤维。二氧化钛NF@NT通过在550℃下煅烧优化的三轴纳米纤维获得结构。随后,TiO2的形态NF@NT扫描电镜证实了其直径分布均匀。傅里叶变换红外光谱结果表明TiO2的形成NF@NT.X射线衍射峰也显示了锐钛矿和金红石晶相的存在。TiO2中仅存在钛(Ti)和氧(O)元素NF@NT通过能量色散X射线光谱证实了这一点。Brunauer-Emmett-Teller分析表明TiO2NF@NT与固体TiO2纳米纤维(类似于75.31 m(2)/g)相比,具有更高的比表面积,类似于141.68 m(2)/g。本研究可用于开发TiO2NF@NT适用范围广泛。

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