Development of homogenous n-TiO2/ZnO bilayer/p-Cu2O heterostructure thin film

被引:0
作者
Nurliyana Mohamad Arifin
Fariza Mohamad
Rosniza Hussin
Anis Zafirah Mohd Ismail
Shazleen Ahmad Ramli
Norazlina Ahmad
Nik Hisyamudin Muhd Nor
Mohd Zainizan Sahdan
Mohd Zamzuri Mohammad Zain
Masanobu Izaki
机构
[1] Universiti Tun Hussein Onn Malaysia,Department of Electronic Engineering, Faculty of Electric and Electronic Engineering
[2] Universiti Tun Hussein Onn Malaysia,Microelectronic and Nanotechnology Shamsuddin Research Centre (MiNT
[3] Universiti Tun Hussein Onn Malaysia,SRC)
[4] Universiti Tun Hussein Onn Malaysia,Faculty of Engineering Technology
[5] Universiti Malaysia Perlis,Faculty of Mechanical & Manufacturing Engineering
[6] Toyohashi University of Technology,Faculty of Mechanical Engineering Technology
来源
Journal of Sol-Gel Science and Technology | 2021年 / 100卷
关键词
TiO; /ZnO bilayer; Cu; O-based heterostructure; Sol–gel spin coating; Electrodeposition; Homogenous p-n heterojunction; Metal oxide semiconductor;
D O I
暂无
中图分类号
学科分类号
摘要
Metal oxide semiconductor materials have shown a great potential in the fabrication of heterojunction thin film due to its improved properties for photovolatic mechanism in solar cell application. In this work, p-(111)-Cu2O based heterostructure was successfully developed with uniformity and highly oriented n-TiO2/(002)-ZnO bilayer thin film in order to overcome improper electron mobility between the heterointerface of n and p-type layer by optimizing several properties. n-TiO2/ZnO bilayer acts as window layer deposited on FTO substrate by using sol–gel spin coating method. The crystallize size and transmittance spectrum of n-TiO2 thin film was improved after n-ZnO was coated onto TiO2 thin film. Meanwhile, cyclic voltammetry (CV) measurement was carried out and potential deposition of −0.4 V vs Ag/Cl at 40 °C was acquired. p-Cu2O which acts as absorbing layer was deposited onto n-TiO2/ZnO bilayer by using electrodeposition technique. The successful fabrication of n- TiO2/ZnO/p- Cu2O heterostructure were confirmed by the existence of all peaks on the XRD spectrum. Two strong absorption edges observed and the merged shape of p-Cu2O grain with other layer leads to the surface flatness improvement. The optical energies of n-TiO2/ZnO bilayer and p-Cu2O thin film are estimated as 3.15 and 1.75 eV, respectively. The structural, morphological, optical, and topological properties of thin films were characterized using X-ray diffraction, Field emission-scanning electron microscope, Ultraviolet–visible spectroscopy, and Atomic force microscopy, respectively.
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页码:224 / 231
页数:7
相关论文
共 141 条
[1]  
Sujuan C(2015)An electrochemical constructed p-Cu J Alloy Compd 644 378-382
[2]  
Limen L(2011)O/n-ZnO heterojunction for solar cell J Electrochem Soc 158 578-584
[3]  
Jinyang L(2019)Electrodeposition of 1.4-eV-Bandgap p-Copper (II) Oxide Film with Excellent Photoactivity Acta Phys Pol A 135 911-914
[4]  
Peiwei L(2012)Cu Procedia Eng 41 1367-1373
[5]  
Xiaoping W(2018)O-based homostructure fabricated by electrodeposition method J Phys: Conf Ser 1 979-921
[6]  
Weifeng Z(2014)Characterization of ZnO and ZnO:TiO Appl Mech Mater 465-466 916-107
[7]  
Yan Q(2020) thin films prepared by sol-gel spray-spin coating technique Nanomaterials 10 1960-307
[8]  
Fachun L(2019)Optical and structural characterization of ZnO/TiO Front Materials 6 259-545
[9]  
Izaki M(2020) bilayer thin films grown by sol-gel spin coating Int J Integr Eng 12 102-2264
[10]  
Nagai M(2017)Fabrication of multilayer ZnO/TiO Mater Sci Forum 890 303-2270