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Hierarchical nanostructures of K-birnessite nanoplates on anatase nanofibers and their application for decoloration of dye solution

机译:锐钛矿型纳米纤维上钾钾水钠锰矿纳米板的层级纳米结构及其在染料溶液脱色中的应用

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摘要

This paper reports a simple method for fabricating hierarchical nanostructures consisting of K-birnessite (K_xMnO2) nanoplates on anatase (TiO2) nanofibers. The nanofibers were prepared in the form of a composite by electrospinning, followed by calcination at 500 °C in air for 2 h. The nanofibers were then immersed in a sulfuric acid solution containing KMnO4 at 90 °C for 20 min to deposit the K_xMnO2 nanoplates. The nanoplates had a thickness of ~5 nm and an edge length of ~150 nm, and were oriented perpendicular to the nanofibers. They were confirmed as K-birnessite by XRD and EDX measurements. The density of the K_xMnO2 nanoplates could be controlled by simply adjusting the concentration of KMnO4 and/or the deposition time. We also investigated the growth mechanism in light of surface roughness for the nanofibers and spatial confinement for the plates. We further demonstrated the potential use of these hierarchical nanostructures for waste water treatment by removing congo red from an aqueous solution. They exhibited good performance in both batch and continuous flow studies.
机译:本文报道了一种在锐钛矿(TiO2)纳米纤维上制造由K-水钠锰矿(K_xMnO2)纳米板组成的分层纳米结构的简单方法。通过电纺丝将纳米纤维制成复合材料形式,然后在空气中于500°C下煅烧2小时。然后将纳米纤维在90°C下浸入含有KMnO4的硫酸溶液中20分钟,以沉积K_xMnO2纳米板。纳米板的厚度约为5 nm,边缘长度约为150 nm,并且垂直于纳米纤维定向。通过XRD和EDX测量证实它们为钾水钠锰矿。 K_xMnO2纳米板的密度可以通过简单地调整KMnO4的浓度和/或沉积时间来控制。根据纳米纤维的表面粗糙度和平板的空间限制,我们还研究了其生长机理。通过从水溶液中去除刚果红,我们进一步证明了这些分级纳米结构在废水处理中的潜在用途。他们在批处理和连续流研究中均显示出良好的性能。

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