欢迎登录材料期刊网

材料期刊网

高级检索

TiO2纳米棒阵列由于具有电子传输率高和光散射效应强等优异的特性,从而在太阳能电池、光催化、光解水制氢等领域中具有广阔的应用前景。主要从水热法制备工艺及生长机理、形貌优化及改性和应用几个方面综述了TiO2纳米棒阵列的研究进展,并对今后的研究趋势进行展望。

TiO2 nanorod arrays are widely applied in solar cells,photocatalysis,solar water splitting (for hy-drogen production)because of their high electron mobility ratio and excellent light scattering effect.This paper pro-vides a description on research progress of TiO2 nanotube arrays in terms of hydrothermal synthesis method and growth mechanism,morphology optimization,modification,as well as applications,followed by a brief prospect on the development trends.

参考文献

[1] Kevin P. Musselman;Gregory J. Mulholland;Adam P. Robinson;Lukas Schmidt-Mende;Judith L. MacManus-Driscoll.Low-temperature Synthesis Of Large-area, Free-standing Nanorod Arrays On Ito/glass And Other Conducting Substrates[J].Advanced Materials,200823(23):4470-4475.
[2] Junfeng Yan;Feng Zhou.TiO2 nanotubes: Structure optimization for solar cells[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201126(26):9406-9418.
[3] Damian Kowalski;Doohun Kim;Patrik Schmuki.TiO2 nanotubes, nanochannels and mesosponge: Self-organized formation and applications[J].Nano Today,20133(3):235-264.
[4] Ahmed El Ruby Mohamed;Sohrab Rohani.Modified TiO_2 nanotube arrays (TNTAs): progressive strategies towards visible light responsive photoanode, a review[J].Energy & environmental science: EES,20114(4):1065-1086.
[5] Kubacka, A.;Fernández-García, M.;Colón, G..Advanced nanoarchitectures for solar photocatalytic applications[J].Chemical Reviews,20123(3):1555-1614.
[6] Hua Wang;Yusong Bai;Hao Zhang.CdS Quantum Dots-Sensitized TiO2 Nanorod Array on Transparent Conductive Glass Photoelectrodes[J].The journal of physical chemistry, C. Nanomaterials and interfaces,201039(39):16451-16455.
[7] Cho, I.S.;Chen, Z.;Forman, A.J.;Kim, D.R.;Rao, P.M.;Jaramillo, T.F.;Zheng, X..Branched TiO_2 nanorods for photoelectrochemical hydrogen production[J].Nano letters,201111(11):4978-4984.
[8] Bian, Haiqin;Ma, Shuyi;Sun, Aimin;Xu, Xiaoli;Yang, Guijin;Gao, Jiming;Zhang, Zhengmei;Zhu, Haibin.Characterization and acetone gas sensing properties of electrospun TiO2 nanorods[J].Superlattices and microstructures,2015:107-113.
[9] 党威武.TiO2纳米棒阵列制备方法的研究进展[J].电池工业,2014(05):333-336.
[10] Akshay Kumar;Anuj R. Madaria;Chongwu Zhou.Growth of Aligned Single-Crystalline Rutile TiO2 Nanowires on Arbitrary Substrates and Their Application in Dye-Sensitized Solar Cells[J].The journal of physical chemistry, C. Nanomaterials and interfaces,201017(17):7787-7792.
[11] Guo, W.;Xu, C.;Wang, X.;Wang, S.;Pan, C.;Lin, C.;Wang, Z.L..Rectangular bunched rutile TiO _2 nanorod arrays grown on carbon fiber for dye-sensitized solar cells[J].Journal of the American Chemical Society,20129(9):4437-4441.
[12] Liu, B;Aydil, ES.Growth of Oriented Single-Crystalline Rutile TiO2 Nanorods on Transparent Conducting Substrates for Dye-Sensitized Solar Cells[J].Journal of the American Chemical Society,200911(11):3985-3990.
[13] Qiuliu Huang;Gang Zhou;Liang Fang;Lipeng Hu;Zhong-Sheng Wang.TiO_2 nanorod arrays grown from a mixed acid medium for efficient dye-sensitized solar cells[J].Energy & environmental science: EES,20116(6):2145-2151.
[14] Structural engineering of thin films of vertically aligned TiO_2 nanorods[J].Materials Letters,201014(14):P.1614.
[15] Qinghui Zeng;Liangzhuan Wu;Yang Zhang.Low-temperature and normal-pressure growth of oriented rutile TiO_2 nanorod arrays on F-doped tin oxide substrate[J].Scripta materialia,201010(10):810-813.
[16] Miaoqiang Lv;Dajiang Zheng;Meidan Ye;Jing Xiao;Wenxi Guo;Yuekun Lai;Lan Sun;Changjian Lin;Juan Zuo.Optimized porous rutile TiO_2 nanorod arrays for enhancing the efficiency of dye-sensitized solar cells[J].Energy & environmental science: EES,20135(5):1615-1622.
[17] Mengjin Yang;Bo Ding;Sangwook Lee.Carrier Transport in Dye-Sensitized Solar Cells Using Single Crystalline TiO2 Nanorods Grown by a Microwave-Assisted Hydrothermal Reaction[J].The journal of physical chemistry, C. Nanomaterials and interfaces,201130(30):14534-14541.
[18] Yulong Zhao;Xiuquan Gu;Yinghuai Qiang.Influence of growth time and annealing on rutile TiO_2 single-crystal nanorod arrays synthesized by hydrothermal method in dye-sensitized solar cells[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,20127(7):2814-2818.
[19] Kim, Hyun;Yang, Bee Lyong.Effect of seed layers on TiO2 nanorod growth on FTO for solar hydrogen generation[J].International journal of hydrogen energy,201517(17):5807-5814.
[20] Jiang, Shangfeng;Yi, Baolian;Zhang, Changkun;Liu, Sa;Yu, Hongmei;Shao, Zhigang.Vertically aligned carbon-coated titanium dioxide nanorod arrays on carbon paper with low platinum for proton exchange membrane fuel cells[J].Journal of Power Sources,2015Feb.15(Feb.15):80-88.
[21] Dong, Rulin;Jiang, Su;Li, Zhongyu;Chen, Zhidong;Zhang, Hanping;Jin, Changchun.Superhydrophilic TiO2 nanorod films with variable morphology grown on different substrates[J].Materials Letters,2015Aug.1(Aug.1):151-154.
[22] Fu, Ke;Huang, Jinzhao;Yao, Nannan;Xu, Xijin;Wei, Mingzhi.Enhanced Photocatalytic Activity of TiO2 Nanorod Arrays Decorated with CdSe Using an Upconversion TiO2:Yb3+,Er3+ Thin Film[J].Industrial & Engineering Chemistry Research,20152(2):659-665.
[23] Hua Wang;Yusong Bai;Qiong Wu.Rutile TiO2 nano-branched arrays on FTO for dye-sensitized solar cells[J].Physical chemistry chemical physics: PCCP,201115(15):7008-7013.
[24] Jiao Liu;Xuelian Yu;Qingya Liu.Surface-phase junctions of branched TiO2 nanorod arrays for efficient photoelectrochemical water splitting[J].Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications,2014:296-300.
[25] Hong Zhu;Jie Tao;Tao Wang;Jie Deng.Growth of branched rutile TiO_2 nanorod arrays on F-doped tin oxide substrate[J].Applied Surface Science,201124(24):10494-10498.
[26] Liu, L;Qian, JS;Li, B;Cui, YM;Zhou, XF;Guo, XF;Ding, WP.Fabrication of rutile TiO2 tapered nanotubes with rectangular cross-sections via anisotropic corrosion route[J].Chemical communications,201014(14):2402-2404.
[27] Hao Pan;Jieshu Qian;Ang Yu;Meigui Xu;Luo Tu;Qingli Chai;Xingfu Zhou.TiO_2 Wedgy Nanotubes Array Flims for Photovoltaic Enhancement[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,201111(11):5059-5063.
[28] Xi, Min;Zhang, Yulan;Long, Lizhen;Li, Xinjun.Controllable hydrothermal synthesis of rutile TiO2 hollow nanorod arrays on TiCl4 pretreated Ti foil for DSSC application[J].Journal of Solid State Chemistry,2014:118-126.
[29] Wang, Lingyun;Daoud, Walid A..BiOI/TiO2-nanorod array heterojunction solar cell: Growth, charge transport kinetics and photoelectrochemical properties[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2015Jan.1(Jan.1):532-537.
[30] Park, Kyung-Hee;Dhayal, Marshal.Simultaneous growth of rutile TiO2 as 1D/3D nanorod/nanoflower on FTO in one-step process enhances electrochemical response of photoanode in DSSC[J].Electrochemistry communications,2014:47-50.
[31] Ahmad, M. K.;Mohan, V. M.;Murakami, K..Hydrothermal growth of bilayered rutile-phased TiO2 nanorods/micro-size TiO2 flower in highly acidic solution for dye-sensitized solar cell[J].Journal of Sol-Gel Science and Technology,20153(3):655-659.
[32] Yu, Libo;Li, Zhen;Liu, Yingbo;Cheng, Fa;Sun, Shuqing.Enhanced photoelectrochemical performance of CdSe/CdS/TiO2 nanorod arrays solar cell with a PbS underlayer[J].Journal of Materials Science. Materials in Electronics,20154(4):2286-2295.
[33] Jalali, Mahsa;Moakhar, Roozbeh Siavash;Kushwaha, Ajay;Goh, Gregory Kia Liang;Riahi-Noori, Nastaran;Sadrnezhaad, Sayed Khatiboleslam.Enhanced dye loading-light harvesting TiO2 photoanode with screen printed nanorod-nanoparticles assembly for highly efficient solar cell[J].Electrochimica Acta,2015:395-401.
[34] Yan, Pengli;Wang, Xiang;Zheng, Xiaojia;Li, Rengui;Han, Jingfeng;Shi, Jingying;Li, Ailong;Gan, Yang;Li, Can.Photovoltaic device based on TiO2 rutile/anatase phase junctions fabricated in coaxial nanorod arrays[J].Nano Energy,2015:406-412.
[35] Dai, G.;Zhao, L.;Li, J.;Wan, L.;Hu, F.;Xu, Z.;Dong, B.;Lu, H.;Wang, S.;Yu, J..A novel photoanode architecture of dye-sensitized solar cells based on TiO_2 hollow sphere/nanorod array double-layer film[J].Journal of Colloid and Interface Science,20121(1):46-52.
[36] Fakharuddin, Azhar;Di Giacomo, Francesco;Palma, Alessandro L.;Matteocci, Fabio;Ahmed, Irfan;Razza, Stefano;D'Epifanio, Alessandra;Licoccia, Silvia;Ismail, Jamil;Di Carlo, Aldo;Brown, Thomas M.;Jose, Rajan.Vertical TiO2 Nanorods as a Medium for Stable and High-Efficiency Perovskite Solar Modules[J].ACS nano,20158(8):8420-8429.
[37] Zeng, T.;Tao, H.;Sui, X.;Zhou, X.;Zhao, X..Growth of free-standing TiO_2 nanorod arrays and its application in CdS quantum dots-sensitized solar cells[J].Chemical Physics Letters,20111/3(1/3):130-133.
[38] WANG Jingyang;ZHANG Tianjin;WANG Qingqing;WANG Duofa;PAN Ruikun;XIA Hanming.Composite Semiconductor Quantum Dots CdSe/CdS Co-sensitized TiO2 Nanorod Array Solar Cells[J].武汉理工大学学报(材料科学版)(英文版),2012(5):876-880.
[39] Jiao, J.;Zhou, Z.-J.;Zhou, W.-H.;Wu, S.-X..CdS and PbS quantum dots co-sensitized TiO_2 nanorod arrays with improved performance for solar cells application[J].Materials science in semiconductor processing,20132(2):435-440.
[40] Wang, J.;Zhang, T.;Wang, D.;Pan, R.;Wang, Q.;Xia, H..Influence of CdSe quantum dot interlayer on the performance of polymer/TiO _2 nanorod arrays hybrid solar cell[J].Chemical Physics Letters,2012:105-109.
[41] LI Yuxiang;ZHANG Mei;GUO Min;WANG Xidong.Hydrothermal growth of well-aligned TiO2 nanorod arrays: Dependence of morphology upon hydrothermal reaction conditions[J].稀有金属(英文版),2010(03):286-291.
[42] Ali, Heba;Ismail, Nahla;Hegazy, Aiat;Mekewi, Mohamed.A novel photoelectrode from TiO2-WO3 nanoarrays grown on FTO for solar water splitting[J].Electrochimica Acta,2014:314-319.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%