Please wait a minute...
Chin. Phys. B, 2017, Vol. 26(10): 106801    DOI: 10.1088/1674-1056/26/10/106801
CONDENSED MATTER: STRUCTURAL, MECHANICAL, AND THERMAL PROPERTIES Prev   Next  

Structural, optical, and electrical properties of Cu-doped ZrO2 films prepared by magnetron co-sputtering

Nian-Qi Yao(姚念琦), Zhi-Chao Liu(刘智超), Guang-Rui Gu(顾广瑞), Bao-Jia Wu(吴宝嘉)
Department of Physics, College of Science, Yanbian University, Yanji 133002, China
Abstract  

Copper (Cu)-doped ZrO2 (CZO) films with different Cu content (0 at.%~8.07 at.%) are successfully deposited on Si (100) substrates by direct current (DC) and radio frequency (RF) magnetron co-sputtering. The influences of Cu content on structural, morphological, optical and electrical properties of CZO films are discussed in detail. The CZO films exhibit ZrO2 monocline (111) preferred orientation, which indicates that Cu atoms are doped in ZrO2 host lattice. The crystallite size estimated form x-ray diffraction (XRD) increases by Cu doping, which accords with the result observed from the scanning electron microscope (SEM). The electrical resistivity decreases from 2.63 Ω.cm to 1.48 Ω·cm with Cu doping content increasing, which indicates that the conductivity of CZO film is improved. However, the visible light transmittances decrease slightly by Cu doping and the optical band gap values decrease from 4.64 eV to 4.48 eV for CZO films.

Keywords:  Cu-doped ZrO2 films      magnetron co-sputtering      resistivity      transmittance  
Received:  10 April 2017      Revised:  27 June 2017      Accepted manuscript online: 
PACS:  68.55.A- (Nucleation and growth)  
  73.61.-r (Electrical properties of specific thin films)  
  78.66.-w (Optical properties of specific thin films)  
  81.15.Cd (Deposition by sputtering)  
Fund: 

Project supported by the National Natural Science Foundation of China (Grant Nos. 51272224 and 11164031).

Corresponding Authors:  Guang-Rui Gu     E-mail:  grgu@ybu.edu.cn

Cite this article: 

Nian-Qi Yao(姚念琦), Zhi-Chao Liu(刘智超), Guang-Rui Gu(顾广瑞), Bao-Jia Wu(吴宝嘉) Structural, optical, and electrical properties of Cu-doped ZrO2 films prepared by magnetron co-sputtering 2017 Chin. Phys. B 26 106801

[1] Reisfeld R, Zelner M and Patra A 2000 J. Alloys Compd. 300 147151
[2] Pamu D, Sudheendran K, Krishna M G, Raju K C J and Bhatnagar A K 2009 Thin Solid Films 517 15871591
[3] Lee W G, Cho K H, Lee S B, Park S B and Jang H 2009 J. Alloys Compd. 474 268272
[4] Padmamalini N and Ambujam K 2014 Superlattices Microstruct. 76 376384
[5] Khojier K, Savaloni H and Jafari F 2013 J. Theor. Appl. Phys. 7 55
[6] Chakraborty S, Bera M K, Dalapathi G K, Paramanik D, Varma S, Bose P K, Bhattacharya S and Maiti C K 2006 Semicond. Sci. Technol. 21 467472
[7] Ma C Y and Zhang Q Y 2008 Vacuum 82 847851
[8] Hembram K P S S, Dutta G, Waghmare U V and Rao G M 2007 Physica B 399 2126
[9] Zhang H H, Ma C Y and Zhang Q Y 2009 Vacuum 83 13111316
[10] Septawendar R, Purwasasmita B S, Suhanda, Nurdiwijayanto L and Edwin F 2011 J. Ceram. Process. Res. 12 110113
[11] Pakma O, özdemir C, Kariper I A, özaydin C and Güllü ö 2016 Appl. Surf. Sci. 377 159166
[12] Ray J C, Pramanik P and Ram S 2001 Mater. Lett. 48 281291
[13] Xiao Q L, Xu C, Shao S Y, Shao J D and Fan Z X 2009 Vacuum 83 366371
[14] Jeong J and Yong K 2003 J. Cryst. Growth 254 6569
[15] Gordon G R, Becker J, Hausmann D and Suh S 2001 Chem. Mater. 13 24632464
[16] Berlin I J and Joy K 2015 Physica B 457 182187
[17] Sethi G, Sunal P, Horn M W and Lanagan M T 2009 J. Vac. Sci. Technol. A 27 577583
[18] Thaveedeetrakul A, Witit-anun N and Boonamnuayvitay V 2012 Appl. Surf. Sci. 258 26122619
[19] Kumar A, Dhiman P and Singh M 2016 Ceram. Int. 42 79187923
[20] Bruns S, Vergöhl M, Werner O and Wallendorf T 2012 Thin Solid Films 520 41224126
[21] Musil J, Sklenka J, Čerstvy R, Suzuki T, Mori T and Takahashi M 2012 Surf. Coat. Technol. 207 355360
[22] Myagkov V G, Bykova L E, Bayukov O A, Zhigalov V S, Tambasov I A, Zharkov S M, Matsynin A A and Bondarenko G N 2015 J. Alloys Compd. 636 223228
[23] Joy K 2014 Thin Solid Films 556 99104
[24] Seidel S, Sabelfeld A, Strohmeyer R, Schreiber G, Klemm V, Rafaja D, Joseph Y and Heitmann J 2016 Thin Solid Films 606 1318
[25] Korsunska N, Baran M, Polishchuk Y, Kolomys O, Stara T, Kharchenko M, Gorban O, Strelchuk V, Venger Y, Kladko V and Khomenkovaa L 2015 ECS J. Solid State Sci. Technol. 4 103110
[26] Korsunska N, Polishchuk Y, Kladko V, Portier X and Khomenkova L 2017 Mater. Res. Express 4 035024
[27] Mukhtar M, Munisa L and Saleh R 2012 Mater. Sci. Appl. 3 543551
[28] Holzwarth U and Gibson N 2011 Nat. Nanotechnol. 6 534
[29] Anitha V S, Lekshmy S S and Joy K 2016 J. Alloys Compd. 675 331340
[30] Kumaravel R, Ramamurthi K, Sulania I, Asokan K and Kanjilal D 2011 Radiat. Phys. Chem. 80 435439
[31] Schuetze A P, Lewis W, Brown C and Geerts W J 2004 Am. J. Phys. 72 149153
[32] Sreedhar A, Kwon J H, Yi J, Kim J S and Gwag J S 2016 Mater. Sci. Semicond. Process. 49 814
[33] Presto S, Viviani M 2016 Solid State Ionics 295 111116
[34] Paraguay F, Yoshida M M, Morales J, Solis J and Estrada W 2000 Thin Solid Films 373 137140
[35] Tarwal N L, Gurav K V, Mujawar S H, Sadale S B, Nam K W, Bae W R, Moholkar A V, Kim J H, Patil P S and Jang J H 2014 Ceram. Int. 40 76697677
[36] Sandeep K M, Bhat S and Dharmaprakash S M 2017 J. Phys. Chem. Solids 104 3644
[1] High efficiency of broadband transmissive metasurface terahertz polarization converter
Qiangguo Zhou(周强国), Yang Li(李洋), Yongzhen Li(李永振), Niangjuan Yao(姚娘娟), and Zhiming Huang(黄志明). Chin. Phys. B, 2023, 32(2): 024201.
[2] Anisotropic superconducting properties of FeSe0.5Te0.5 single crystals
Jia-Ming Zhao(赵佳铭) and Zhi-He Wang(王智河). Chin. Phys. B, 2022, 31(9): 097402.
[3] Sign reversal of anisotropic magnetoresistance and anomalous thickness-dependent resistivity in Sr2CrWO6/SrTiO3 films
Chunli Yao(姚春丽), Tingna Shao(邵婷娜), Mingrui Liu(刘明睿), Zitao Zhang(张子涛), Weimin Jiang(姜伟民), Qiang Zhao(赵强), Yujie Qiao(乔宇杰), Meihui Chen(陈美慧), Xingyu Chen(陈星宇), Ruifen Dou(窦瑞芬), Changmin Xiong(熊昌民), and Jiacai Nie(聂家财). Chin. Phys. B, 2022, 31(10): 107302.
[4] Magnetic properties and resistivity of a 2:17-type SmCo magnet doped with ZrO2
Qi-Qi Yang(杨棋棋), Zhuang Liu(刘壮), Chao-Yue Zhang(张超越), Hai-Chen Wu(吴海辰), Xiao-Lei Gao(高晓磊), Yi-Long Ma(马毅龙), Ren-Jie Chen(陈仁杰), and A-Ru Yan(闫阿儒). Chin. Phys. B, 2021, 30(7): 077504.
[5] Phase transition of shocked water up to 6 GPa: Transmittance investigation
Lang Wu(吴浪), Yue-Hong Ren(任月虹), Wen-Qiang Liao(廖文强), Xi-Chen Huang(黄曦晨), Fu-Sheng Liu(刘福生), Ming-Jian Zhang(张明建), and Yan-Yun Sun(孙燕云). Chin. Phys. B, 2021, 30(5): 050701.
[6] Suppression of ion migration in perovskite materials by pulse-voltage method
Xue-Yan Wang(王雪岩), Hu Wang(王虎), Luo-Ran Chen(陈烙然), Yu-Chuan Shao(邵宇川), and Jian-Da Shao(邵建达). Chin. Phys. B, 2021, 30(11): 118104.
[7] Growth and physical characterization of high resistivityFe: β-Ga2O3 crystals
Hao Zhang(张浩), Hui-Li Tang(唐慧丽), Nuo-Tian He(何诺天), Zhi-Chao Zhu(朱智超), Jia-Wen Chen(陈佳文), Bo Liu(刘波), Jun Xu(徐军). Chin. Phys. B, 2020, 29(8): 087201.
[8] Laser scattering, transmittance and low thermal expansion behaviors in Y2-x(ZnLi)xMo3O12 by forming regular grains
Xian-Sheng Liu(刘献省), Yong-Guang Cheng(程永光), Bao-He Yuan(袁保合), Er-Jun Liang(梁二军), Wei-Feng Zhang(张伟风). Chin. Phys. B, 2019, 28(9): 096501.
[9] Influence of annealing treatment on the luminescent properties of Ta:β-Ga2O3 single crystal
Xiaowei Yu(余小威), Huiayuan Cui(崔慧源), Maodong Zhu(朱茂东), Zhilin Xia(夏志林), Qinglin Sai(赛青林). Chin. Phys. B, 2019, 28(7): 077801.
[10] Different behavior of upper critical field in Fe1-xSe single crystals
Shunli Ni(倪顺利), Wei Hu(胡卫), Peipei Shen(沈沛沛), Zhongxu Wei(魏忠旭), Shaobo Liu(刘少博), Dong Li(李栋), Jie Yuan(袁洁), Li Yu(俞理), Kui Jin(金魁), Fang Zhou(周放), Xiaoli Dong(董晓莉), Zhongxian Zhao(赵忠贤). Chin. Phys. B, 2019, 28(12): 127401.
[11] Nonlinear uniaxial pressure dependence of the resistivity in Sr1-xBaxFe1.97Ni0.03As2
Hui-Can Mao(毛慧灿), Dong-Liang Gong(龚冬良), Xiao-Yan Ma(马肖燕), Hui-Qian Luo(罗会仟), Yi-Feng Yang(杨义峰), Lei Shan(单磊), Shi-Liang Li(李世亮). Chin. Phys. B, 2018, 27(8): 087402.
[12] A transparent electromagnetic-shielding film based on one-dimensional metal-dielectric periodic structures
Ya-li Zhao(赵亚丽), Fu-hua Ma(马富花), Xu-feng Li(李旭峰), Jiang-jiang Ma(马江将), Kun Jia(贾琨), Xue-hong Wei(魏学红). Chin. Phys. B, 2018, 27(2): 027302.
[13] General equation describing viscosity of metallic melts under horizontal magnetic field
Yipeng Xu(许亦鹏), Xiaolin Zhao(赵晓林), Tingliang Yan(颜廷亮). Chin. Phys. B, 2017, 26(3): 036601.
[14] Simulation on effect of metal/graphene hybrid transparent electrode on characteristics of GaN light emitting diodes
Ming-Can Qian(钱明灿), Shu-Fang Zhang(张淑芳), Hai-Jun Luo(罗海军), Xing-Ming Long(龙兴明), Fang Wu(吴芳), Liang Fang(方亮), Da-Peng Wei(魏大鹏), Fan-Ming Meng(孟凡明), Bao-Shan Hu(胡宝山). Chin. Phys. B, 2017, 26(10): 104402.
[15] Magnetoresistivity and filamentary superconductivity in nickel-doped BaFe2As2
Wei Zhang(张威), Yao-Min Dai(戴耀民), Bing Xu(许兵), Run Yang(杨润), Jin-Yun Liu(刘金云), Qiang-Tao Sui(随强涛), Hui-Qian Luo(罗会仟), Rui Zhang(张睿), Xing-Ye Lu(鲁兴业), Hao Yang(杨浩), Xiang-Gang Qiu(邱祥冈). Chin. Phys. B, 2016, 25(4): 047401.
No Suggested Reading articles found!