In Situ One-Pot Synthesis of C-Decorated and Cl-Doped Sea-Urchin-like Rutile Titanium Dioxide with Highly Efficient Visible-Light Photocatalytic Activity

材料科学 光催化 热液循环 二氧化钛 纳米技术 化学工程 纳米结构 罗丹明B 水热合成 金红石 催化作用 锐钛矿 兴奋剂 复合材料 有机化学 光电子学 化学 工程类
作者
Hongmiao Huang,Tongtong Zhang,Xiunan Cai,Zhanjing Guo,Songlin Fan,Yanjuan Zhang,Cui‐Wu Lin,Tao Gan,Huayu Hu,Zuqiang Huang
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:13 (50): 60337-60350 被引量:13
标识
DOI:10.1021/acsami.1c17081
摘要

Titanium dioxide (TiO2) that offers high light-harvesting capacity and efficient charge separation holds great promise in photocatalysis. In this work, an in situ one-pot hydrothermal synthesis was explored to prepare a C-decorated and Cl-doped sea-urchin-like rutile TiO2 (Cl-TiO2/C). The growth of sea-urchin-like 3D hierarchical nanostructures was governed by a mechanism of nucleation and nuclei growth-dissolution-recrystallization growth from time-dependent morphology evolution. The crystal morphology and the content of Cl and C could be controlled by the volume ratio of HCl to TBOT. Systematic studies indicated that the 0.4Cl-TiO2/C sample (the volume ratio of HCl to TBOT was 0.4) exhibited the highest visible-light photocatalytic activity for the degradation of rhodamine B, with kinetic rate constant (k) of 0.0221 min-1, being 6.5 and 3.75 times higher than that of TiO2 and Cl-TiO2. The enhanced photocatalytic performance could be attributed to the high charge separation and transfer efficiency induced by Cl-doping and C decoration and the excellent light-harvesting capacity caused by its sea-urchin-like nanostructure. Moreover, the 0.4Cl-TiO2/C sample exhibited good reusability and excellent structural stability for five cycles. This facile one-pot approach provides new insight for the preparation of a TiO2-based photocatalyst with excellent photocatalytic performance for potential application in practical wastewater treatment.
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