TiO2纳米管阵列的制备及其应用研究进展

赵春琦, 荆涛*, 田景芝, 赵志远, 娄丛强, 王超

化工新型材料 ›› 2021, Vol. 49 ›› Issue (4) : 242 -246.

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化工新型材料 ›› 2021, Vol. 49 ›› Issue (4) : 242-246. DOI: 10.19817/j.cnki.issn1006-3536.2021.04.053
开发与应用

TiO2纳米管阵列的制备及其应用研究进展

    赵春琦, 荆涛*, 田景芝, 赵志远, 娄丛强, 王超
作者信息 +

Progress in preparation and application of TiO2NTs array

  • Zhao Chunqi, Jing Tao, Tian Jingzhi, Zhao Zhiyuan, Lou Congqiang, Wang Chao
Author information +
文章历史 +
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摘要

二氧化钛纳米管(TiO2NTs)阵列作为一种新型的三维立体纳米材料,凭借其独特、规整有序的空心管状结构、良好的化学稳定性、生物相容性以及优异的光电化学性能,在环境、新能源和生物传感领域展现出巨大的应用价值。综述了TiO2NTs阵列常见的制备方法,指出了当前TiO2NTs阵列的研究现状和亟待解决的问题,并对今后的研究重点和方向提出了新的展望。

Abstract

TiO2 nanotubes (TiO2NTs) arrays are a new type of 3D nanomaterials due to their distinctive and well-organized hollow nanotubular structure,favorable chemical stability,biocompatibility,excellent photoelectrochemical performance.It has great application value in the fields of environmental,energy and biosensors.The preparation methods of TiO2NTs arrays were reviewed.In the end,it pointed out the problems existing in the current research situation,and put forward a new prospect for the future research direction.

关键词

二氧化钛纳米管阵列 / 纳米材料 / 制备 / 应用

Key words

TiO2 nanotube array / nanomaterial / preparation / application

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TiO2纳米管阵列的制备及其应用研究进展[J]. 化工新型材料, 2021, 49(4): 242-246 DOI:10.19817/j.cnki.issn1006-3536.2021.04.053

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参考文献

[1] Yue G C,Li S,Li D,et al.Coral-like Au/TiO2 hollow nanofibers with through-holes as a high-efficient catalyst through mass transfer enhancement[J].Langmuir,2019,35(14):4843-4848.
[2] Wang S C,Cai J S,Mao J J,et al.Defective black Ti3+ self-doped TiO2 and reduced graphene oxide composite nanoparticles for boosting visible-light driven photocatalytic and photoelectrochemical activity[J].Appl Surf Sci,2019,467(76):45-55.
[3] Kashale A A,Rasal A S,Kamble G P,et al.Biosynthesized Co-doped TiO2 nanoparticles based anodefor lithium-ion battery application and investigating the influence of dopant concentrations on its performance[J].Compos Part B-Eng,2019,167(667):44-50.
[4] Bao R Y,Geng J F,Sullivan J A,et al.Hierarchical 3D TiO2 nanotube arrays sensitized by graphene oxideand ZnxCdyS for high performance photoelectrochemical applications[J].Phys Status Solidi A,2018,215(24):89-95.
[5] Camposeco R,Castillo S,Hinojosa M,et al.Active TiO2-nanostructured surfaces for CO oxidation on Rh model catalysts at low-temperature[J].Catal Lett,2019,149(6):1565-1578.
[6] Toledo W D,Couto A B,Almeida D A L,et al.Facile synthesis of TiO2/RGO neatly electrodeposited on carbon fiber applied as ternary electrode for supercapacitor[J].Mater Res Express,2019,6(6):234-237.
[7] Xie C,Li P,Liu Y,et al.Preparation of TiO2 nanotubes/mesoporous calcium silicate composites with controllable drug release[J].Mat Sci Eng C-Mater,2016,67(78):433-439.
[8] Alexander M,Pandian K.Linen fiber template-assisted preparation of TiO2 nanotubes:palladium nanoparticle coating and electrochemical applications[J].J Solid State Electr,2013,17(58):1117-1125.
[9] Zhang T T,Rahman Z U,Wei N,et al.In situ growth of single-crystal TiO2 nanorod arrays on Ti substrate:controllable synthesis and photoelectro-chemical water splitting[J].Nano Res,2017,10(83):1021-1032.
[10] Miyauchi M,Tokudome H,Toda Y,et al.Electron field emission from TiO2 nanotube arrays synthesized by hydrothermal reaction[J].Applied Physics Letters,2006,89(4):043114-043114-3.
[11] Huo X H,Liu P P,Zhu J,et al.Electrochemical immunosensor constructed using TiO2 nanotubes as immobilization scaffold and tracing tag[J].Biosensors and Bioelectronics,2016,85(35):698-706.
[12] Ksauga T,Hiramatsu M,Hoson A,et al.Formation of titanium oxide nanotube[J].Langmuir,1998,14(12):316-3163.
[13] Du G H,Chen Q,Che R C,et al.Preparation and structure analysis of titanium oxide nanotubes[J].Applied Physics Letters,2001,79(22):370-3704.
[14] 王芹,陶杰,翁履谦.二氧化钛纳米管的合成机理与表征[J].材料开发与应用,2004,19(5):9-12.
[15] Gong D,Grimes C A,Varghese O K,et al.Titanium oxide nanotube arrays prepared by anodic oxidation[J].J Mater Res,2001,16(12):99-105.
[16] Zeng L B,Li X Y,Fan S Y,et al.Enhancing interfacial charge transfer on novel 3D/1D multidimensional MoS2/TiO2 heterojunction toward efficient photoelectrocatalytic removal of levofloxacin[J].Electrochim Acta,2019,295(3):810-821.
[17] Qiu L Y,Wang Q Y,Liu Z Y,et al.Preparation of 3D TiO2 nanotube arrays photoelectrode on Ti mesh for photoelectric conversion and photoelectrocatalytic removal of pollutant[J].Sep Purif Technol,2018,207(5):206-212.
[18] Wang X Q,Li Y F,Song H,et al.Fluoride concentration controlled TiO2 nanotubes:the interplay of microstructure and photocatalytic performance[J].RSC Adv,2016,6(22):18333-18339.
[19] 韩思思.TiO2纳米管阵列用于光催化还原CO2及聚光反应研究[D].杭州:浙江工业大学,2017.
[20] 王宇航,姜梦培,吴红军.N,α-Fe2O3共掺杂TiO2纳米管阵列的制备及其光电催化还原CO2性能研究[J].化工新型材料,2019,47(4):104-107.
[21] Qiao J,Wang Q,Xiao Y.High-efficiency photoelectrochemical performance of PbS nanoparticles sensitized TiO2 nanotube arrays[J].Journal of Applied Electrochemistry,2014,44(9):1007-1011.
[22] Kisslinger R,Askar A M,Thakur U K,et al.Preferentially oriented TiO2 nanotube arrays on non-native substrates and their improved performance as electron transporting layer in halide perovskite solar cells[J].Nanotechnology,2019,30(20):110-115.
[23] Zhang Y J,Zhao G H,Shi H J,et al.Photoelectrocatalytic glucose oxidation to promote hydrogen production over periodically ordered TiO2 nanotube arrays assembled of Pd quantum dots[J].Electrochim Acta,2015,174(8):93-101.
[24] Yao J Z,Yan P W,Zhen H W,et al.Preparation of CdS/TiO2NTs nanocomposite and its activity of photocatalytic hydrogen production[J].Rare Metal Materials and Engineering,2009,38(9):1514-1517.
[25] Grimes C A.Synthesis and application of highly ordered arrays of TiO2 nanotubes[J].Journal of Materials Chemistry,2007,17(15):1451.
[26] Chi S S,Qi X G,Hu Y S,et al.3D flexible carbon felt host for highly stable sodium metal anodes[J].Advo Energy Materials,2018,8(15):1702.
[27] Zhao Y,Zhu W,Chen G Z,et al.Polypyrrole/TiO2 nanotube arrays with coaxial heterogeneous structure as sulfur hosts for lithium sulfur batteries[J].Journal of Power Sources,2016,327(19):447-456.
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