Controllable growth of vertically aligned heterophase TiO2 nanocones under glycerol assistance toward photocatalytic water purification†

IF 2.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY CrystEngComm Pub Date : 2025-01-09 DOI:10.1039/D4CE01115E
Xiangzhuo Wang, Yun Zhao, Xuqiang Zhang, Yongkai Li, Tinglu Song, Renyi Li, Miao Li, Ming Xu, Junfeng Han and Wende Xiao
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Abstract

TiO2 nanocone structures (TNCs) have attracted tremendous interest in recent years owing to their intriguing physicochemical properties and potential applications in water purification-related fields. However, the controllable synthesis of high-quality vertically aligned TNCs with a specific phase is crucial for their effective application. Herein, we report the successful synthesis of heterophase TNCs with abundant active edge sites on a titanium foil by designing a glycerol-assisted hydrothermal approach. By tuning the growth parameters of the TNCs, their coverage can be tuned from 62% to 88% and their shapes can be tuned from sparse oblique to vertically aligned. In a photodegradation experiment, the photodegradation rate (K) of vertically aligned TNCs reaches ≈0.01985 min−1, which is five times that of normal TiO2 dense films (TDFs) under the same conditions, probably owing to their vertical and ordered nanocone array structures, which possess a large specific area, more active edge sites and efficient light harvesting. This work provides an efficient synthetic route for achieving vertically aligned heterophase TNCs, which can serve as perfect platforms for promoting their applications in photocatalytic fields.

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甘油辅助下垂直排列异相TiO2纳米锥的可控生长和光催化水净化†
二氧化钛纳米锥结构(TNCs)由于其独特的物理化学性质和在水净化领域的潜在应用,近年来引起了人们的极大兴趣。然而,具有特定相位的高质量垂直排列跨国公司的可控合成对于其有效应用至关重要。在此,我们报道了通过设计甘油辅助水热方法在钛箔上成功合成具有丰富活性边缘位的异相TNCs。通过调整跨国公司的增长参数,它们的覆盖率可以从62%调整到88%,它们的形状可以从稀疏的倾斜调整到垂直对齐。在光降解实验中,垂直排列的TNCs的光降解率(K)达到≈0.01985 min−1,是相同条件下普通TiO2致密膜(tdf)的5倍,这可能是由于其垂直有序的纳米锥阵列结构具有更大的比面积,更活跃的边缘位点和高效的光捕获。本研究为制备垂直排列的异相TNCs提供了一条高效的合成途径,为其在光催化领域的应用提供了良好的平台。
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来源期刊
CrystEngComm
CrystEngComm 化学-化学综合
CiteScore
5.50
自引率
9.70%
发文量
747
审稿时长
1.7 months
期刊介绍: Design and understanding of solid-state and crystalline materials
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