دوره 27، شماره 3 - ( 7-1398 )                   جلد 27 شماره 3 صفحات 746-739 | برگشت به فهرست نسخه ها


XML English Abstract Print


Download citation:
BibTeX | RIS | EndNote | Medlars | ProCite | Reference Manager | RefWorks
Send citation to:

Fadavieslam. Deposition and characterization of SnO2:Sb thin films fabricated by the spray pyrolysis method. www.ijcm.ir 2019; 27 (3) :739-746
URL: http://ijcm.ir/article-1-1339-fa.html
فدوی اسلام محمدرضا. لایه ‌نشانی و مشخصه‌یابی لایه‌‌های نازک SnO2:Sb تهیه شده به روش اسپری پایرولیزیز. مجله بلورشناسی و کانی شناسی ایران. 1398; 27 (3) :739-746

URL: http://ijcm.ir/article-1-1339-fa.html


دانشگاه دامغان
چکیده:   (2304 مشاهده)
در این مطالعه لایه­های نازک نیمرسانای شفاف اکسید قلع آلاییده با ناخالصی آنتیموان بر روی زیر لایه­های شیشه­ای با غلظت­های متفاوت آنتیموان به روش اسپری پایرولیزیز تهیه شده­اند. اثر غلظت­های مختلف  آنتیموان بر خواص ساختاری، اپتیکی و الکتریکی لایه­های نازک مورد مطالعه قرار گرفت. لایه­های تهیه شده توسط پراش پرتو ایکس (XRD)، میکروسکوپ الکترونی روبشی اثر میدان (FESEM) و جذب نوری (UV-vis) مشخصه­یابی شدند. آنالیز XRD نشان داد که نمونه­ها دارای ساختار بس­بلور با جهت­گیری­های ارجح صفحات (110)، (101)، (200)، (211) و (301) مربوط به فاز اکسید قلع می­باشند. اندازه بلورک­ها و  دانه­ها با افزایش غلظت آنتیموان به ترتیب روندهای کاهشی و افزایشی نشان دادند. مطالعات نوری نمونه­ها نشان داد که افزایش غلظت آنتیموان سبب کاهش عبور در گستره نور مرئی از 72% به 15% و گاف نوری از72/3 به eV 98/2 ­شد. افزایش ناخالصی آنتیموان موجب رفتار کاهشی- افزایشی مقاومت الکتریکی شد. مطالعه ترموالکتریک نمونه­ها، رسانش نوع n را نشان داد.    
متن کامل [PDF 1063 kb]   (757 دریافت)    
نوع مقاله: پژوهشي | موضوع مقاله: تخصصي

فهرست منابع
1. [1] Bagheri-Mohagheghi M.M., Shokooh-Saremi M., "The electrical, optical, structural and thermoelectrical characterization of n- and p-type cobalt-doped SnO2 transparent semiconducting films prepared by spray pyrolysis technique", Physica B 405 (2010) 4205-4210. [DOI:10.1016/j.physb.2010.06.067]
2. [2] Yuonesi M., Izadifard M., Ghazi M. E., Esmaili Ghodsi F., "Influence of Co and Fe substitution on optical and structural properties of zinc oxide thin films", Iranian Journal of Crystallography and Mineralogy 19 (2011) 65-72.
3. [3] Ha-Rim An, ChangYeoulKim, Sung-TagOh, Hyo-JinAhn, "Effect of sol-layers on Sb-doped SnO2 thin films as solution-based transparent conductive oxides", Ceramics International 40 (2014) 385-391. [DOI:10.1016/j.ceramint.2013.06.013]
4. [4] Sushant Gupta, B.C. Yadav, Prabhat K. Dwivedi, B. Das, Microstructural, "optical and electrical investigations of Sb-SnO2 thin films deposited by spray pyrolysis", Materials Research Bulletin 48 (2013) 3315-3322. [DOI:10.1016/j.materresbull.2013.05.001]
5. [5] S. M. B. Gharshi, A. Bejat, M. Naghabi, G. Mirjalili, "Simulation and fabrication of nanostructured ZnS/Metal/ZnS films and study of their structural and optical properties, NW of Iran (in Persian)", Iranian Journal of Crystallography and Mineralogy 20 (2013) 169-178.
6. [6] Wenhao Yang, Shihui Yu, Yang Zhang, Weifeng Zhang, "Properties of Sb-doped SnO2 transparent conductive thin films deposited by radio-frequency magnetron sputtering", Thin Solid Films 542 (2013) 285-288. [DOI:10.1016/j.tsf.2013.06.077]
7. [7] Seung-Yup Lee, Byung-Ok Park, "Structural, electrical and optical characteristics of SnO2:Sb thin films by ultrasonic spray pyrolysis", Thin Solid Films 510 (2006) 154-158. [DOI:10.1016/j.tsf.2006.01.001]
8. [8] E. Elangovan, S.A. Shivashankar, K. Ramamurthi, "Studies on structural and electrical properties of sprayed SnO2:Sb films", Journal of Crystal Growth 276 (2005) 215-221. [DOI:10.1016/j.jcrysgro.2004.11.387]
9. [9] Hong-Lei Ma, Xiao-Tao Hao, Jin Ma, Ying-Ge Yang, Jie Huang, De-Heng Zhang,Xian-Gang Xu, "Thickness dependence of properties of SnO2:Sb films deposited on flexible substrates", Applied Surface Science 191 (2002) 313-318. [DOI:10.1016/S0169-4332(02)00253-2]
10. [10] S. Haireche, A. Boumeddiene, A. Guittoum, A. El Hdiy, A. Boufelfel, "Structural, morphological and electronic study of CVD SnO2:Sb films", Materials Chemistry and Physics 139 (2013), 871-876. [DOI:10.1016/j.matchemphys.2013.02.046]
11. [11] Dengbaoleer Ao, Masaya Ichimura, "Deposition and characterization of Sb and Cu doped nanocrystalline SnO2 thin films fabricated by the photochemical method", Journal of Non-Crystalline Solids 358 (2012) 2470-2473. [DOI:10.1016/j.jnoncrysol.2011.12.049]
12. [12] E.A. Floriano, L.V.A. Scalvi, J.R. Sambrano, A. de Andrade, "Decay of photo-induced conductivity in Sb-doped SnO2 thin films, using monochromatic light of about bandgap energy", Applied Surface Science 267 (2013) 164-168. [DOI:10.1016/j.apsusc.2012.09.003]
13. [13] Viviany Geraldo, Luis V.A. Scalvi, P.N. Lisboa-Filho, C. Morilla-Santos, "Drude's model calculation rule on electrical transport in Sb-doped SnO2 thin films, deposited via sol-gel", Journal of Physics and Chemistry of Solids 67 (2006) 1410-1415. [DOI:10.1016/j.jpcs.2006.01.102]
14. [14] Rita Singh, ManishKumar, S.Shankar, RajeevSingh, Anup K.Ghosh, O.P.Thakur, B.Das, "Effects of Sb, Zn doping on structural, electrical and optical properties of SnO2 thin films", Materials Sciencein Semiconductor Processing 31 (2015) 310-314. [DOI:10.1016/j.mssp.2014.12.010]
15. [15] Novinrooz Abdoljavad, Sarabadani Parvin, Garousi Javad, "Characterization of Pure and Antimony Doped SnO2 Thin Films Prepared by the Sol-Gel Technique", Iran. J. Chem. Chem. Eng. 25 (2006) 31-38.
16. [16] Xiudi Xiao, Guoping Dong, Jianda Shao, Hongbo He, Zhengxiu Fan, "Optical and electrical properties of SnO2:Sb thin films deposited by oblique angle deposition", Applied Surface Science 256 (2010) 1636-1640. [DOI:10.1016/j.apsusc.2009.09.084]
17. [17] J. Mazloom, F.E. Ghodsi, M. "Gholami, Fiber-like stripe ATO (SnO2:Sb) nanostructured thin films grown by sol-gel method: Optical, topographical and electrical properties", Journal of Alloys and Compounds 579 (2013) 384-393. [DOI:10.1016/j.jallcom.2013.06.063]
18. [18] Shihui Yu, Linghong Ding, Chuang Xue, Li Chen, W.F. Zhang, "Transparent conducting Sb-doped SnO2 thin films grown by pulsed laser deposition", Journal of Non-Crystalline Solids 358 (2012) 3137-3140. [DOI:10.1016/j.jnoncrysol.2012.09.009]
19. [19] Shihui Yu, Weifeng Zhang, Linngxia Li, Dan Xu, Helei Dong, Yuxin Jin, "Fabrication of p-type SnO2 films via pulsed laser deposition method by using Sb as dopant", Applied Surface Science 286 (20130 417-420. [DOI:10.1016/j.apsusc.2013.09.107]
20. [20] S. Sujatha Lekshmy, Georgi P. Daniel, K. Joy, "Microstructure and physical properties of sol gel derived SnO2:Sb thin films for optoelectronic applications", Applied Surface Science 274 (2013) 95-100. [DOI:10.1016/j.apsusc.2013.02.109]
21. [21] Haoran Zheng, Lingxia Li, Zheng Sun, Shihui Yu, Weijia Luo, "Preferential orientation, microstructure and functional properties of SnO2:Sb thin film: The effects of post-growth annealing", Applied Surface Science 362 (2016) 230-236. [DOI:10.1016/j.apsusc.2015.11.230]
22. [22] Yang-Yi Lin, Albert T. Wu, Ching-Shun Ku, and Hsin-Yi Lee, "Analysis of Chlorine Ions in Antimony-Doped Tin Oxide Thin Film Using Synchrotron Grazing Incidence X-ray Diffraction", Japanese Journal of Applied Physics 51 (2012) 10NE28-4. [DOI:10.1143/JJAP.51.10NE28]
23. [23] B. Zhang, Y. Tian, J.X. Zhang, W. Cai, "The FTIR studies of SnO2:Sb (ATO) films deposited by spray pyrolysis", Materials Letters 65 (2011) 1204-1206. [DOI:10.1016/j.matlet.2011.01.052]
24. [24] Xiudi Xiao, Guoping Dong, Jianda Shao, Hongbo He, Zhengxiu Fan, "Optical and electrical properties of SnO2:Sb thin films deposited by oblique angle deposition", Applied Surface Science 256 (2010) 1636-1640. [DOI:10.1016/j.apsusc.2009.09.084]
25. [25] Bon-RyulKoo,Hyo-JinAhn, "Structural, electrical, and optical properties of Sb-doped SnO2 transparent conductive oxides fabricated using an electrospray technique", Ceramics International 40 (2014) 4375-4381. [DOI:10.1016/j.ceramint.2013.08.108]
26. [26] M. Ranjbar, M. Ghazi, M. Izadifard, "Effect of drying temperature on structural, dielectric, optical and magnetic properties of sol-gel derived BiFeO3 nanoparticles, NW of Iran (in Persian)", Iranian Journal of Crystallography and Mineralogy 26 (2018) 251-260. [DOI:10.29252/ijcm.26.1.251]
27. [27] G.K Williamson, W.H Hall, "X-ray line broadening from filed aluminium and wolfram Die verbreiterung der roentgeninterferenzlinien von aluminium- und wolframspaenen", Acta Metallurgica 1 (1953) 22-31 [DOI:10.1016/0001-6160(53)90006-6]
28. [28] M. R. Fadavieslam, N. Shahtahmasebi, M. Rezaee-Roknabadi, M. M. R. Bagheri-Mohagheghi, "A study of the photoconductivity and thermoelectric properties of SnxSy optical semiconductor thin films deposited by the spray pyrolysis technique", Phys. Scr. 84 (2011) 035705 (8pp). [DOI:10.1088/0031-8949/84/03/035705]
29. [29] Soheila Hemmatzadeh Saeedabad, Gurpreet Singh Selopal, Seyed Mohammad Rozati, Yaser Tavakoli, Giorgio Sberveglieri, "From Transparent Conducting Material to Gas-Sensing Application of SnO2:Sb Thin Films", Journal of Electronic Materials 47 (2018) 5165-5173 [DOI:10.1007/s11664-018-6404-5]
30. [30] ShiminLiu,Wanyu Ding, YousongGu, Weiping Chai, "Effect of Sb doping on the microstructure and optoelectrical properties of Sb-doped SnO2 films prepared by spin coating", Phys. Scr. 85 (2012) 065601(5pp). [DOI:10.1088/0031-8949/85/06/065601]
31. [31] Sk. F. Ahmed, S. Khan, P. K. Ghosh, M. K. Mitra, K. K. Chattopadhyay, "Effect of Al doping on the conductivity type inversion and electro-optical properties of SnO2 thin films synthesized by sol-gel technique", Journal of Sol-Gel Science and Technology 39 (2006) 2421-247 [DOI:10.1007/s10971-006-7808-x]
32. [32] R. Outemzabet, M. Doulache, M. Trari, "Physical and photoelectrochemical properties of Sb-doped SnO2 thin films deposited by chemical vapor deposition: application to chromate reduction under solar light", Applied Physics A 119 (2015) 589-596 [DOI:10.1007/s00339-015-8996-4]

ارسال نظر درباره این مقاله : نام کاربری یا پست الکترونیک شما:
CAPTCHA

بازنشر اطلاعات
Creative Commons License این مقاله تحت شرایط Creative Commons Attribution-NonCommercial 4.0 International License قابل بازنشر است.

کلیه حقوق این وب سایت متعلق به مجله بلورشناسی و کانی شناسی ایران می باشد.

طراحی و برنامه نویسی : یکتاوب افزار شرق

© 2024 CC BY-NC 4.0 | Iranian Journal of Crystallography and Mineralogy

Designed & Developed by : Yektaweb