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Original Articles

Blackening of tin oxide thin films heavily doped with antimony

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Pages 215-222 | Received 05 Oct 1992, Accepted 02 Feb 1993, Published online: 02 Sep 2006

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Kwang Soo Huh, Hyun Joo Hong, Eun Woo Lee, Soon Yong Park, Chan Wook Jeon & Sung Ho Lee. (2010) Properties of Transparent Conducting ATO Films Deposited by RF Magnetron Sputtering. Molecular Crystals and Liquid Crystals 532:1, pages 65/[481]-71/[487].
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P.M. Nagy, P. Horváth, E. Kálmán & F. Kormos. (2005) MECHANICAL RELAXATION OF SnO2 PROTECTIVE LAYERS EVALUATED BY NANOINDENTATION AND AFM. Materials and Manufacturing Processes 20:1, pages 115-122.
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Masahiko Kojima, Hisao Kato & Mitsuru Gatto. (1996) Crystallization of amorphous Sb‐Sn‐O thin films. Philosophical Magazine B 73:2, pages 289-296.
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Masahiko Kojima, Hisao Kato & Mitsuru Gatto. (1996) Optical and electrical properties of amorphous Sb‐Sn‐O thin films. Philosophical Magazine B 73:2, pages 277-288.
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J.Q. Zhang, B.L. Zhu, H. Xiong & J. Wu. (2023) Regulation of structural, electrical and optical properties of Sb-doped SnO2 films prepared with different O2 flow rates by rapid thermal annealing. Ceramics International.
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Timur Zinchenko, Ekaterina Pecherskaya, Sergey Gurin, Gennady Kozlov, Angelina Zhurina & Anastasia Shepeleva. (2022) Methods for studying the optical properties of transparent conducting oxides synthesized on the basis of tin dioxide. Journal of Physics: Conference Series 2373:3, pages 032017.
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A. F. Maged & L. A. M. Nada. (2022) Corrosion of Transparent Electrodes Study. Advances in Materials Science 22:2, pages 19-27.
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Noritake Isomura, Naoko Takahashi & Satoru Kosaka. (2022) Distinguishing Sb-containing sites in SnO 2 using spectrum simulation of X-ray absorption spectroscopy . Japanese Journal of Applied Physics 61:4, pages 048001.
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Jaewon Kim, Billy J. Murdoch, James G. Partridge, Kaijian Xing, Dong‐Chen Qi, Josh Lipton‐Duffin, Christopher F. McConville, Joel Embden & Enrico Della Gaspera. (2020) Ultrasonic Spray Pyrolysis of Antimony‐Doped Tin Oxide Transparent Conductive Coatings. Advanced Materials Interfaces 7:18, pages 2000655.
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Sapna D. Ponja, Benjamin A. D. Williamson, Sanjayan Sathasivam, David O. Scanlon, Ivan P. Parkin & Claire J. Carmalt. (2018) Enhanced electrical properties of antimony doped tin oxide thin films deposited via aerosol assisted chemical vapour deposition . Journal of Materials Chemistry C 6:27, pages 7257-7266.
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Abdullah M. Al-Hamdi, Mika Sillanpää, Tanujjal Bora & Joydeep Dutta. (2016) Efficient photocatalytic degradation of phenol in aqueous solution by SnO2:Sb nanoparticles. Applied Surface Science 370, pages 229-236.
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M. Esro, S. Georgakopoulos, H. Lu, G. Vourlias, A. Krier, W. I. Milne, W. P. Gillin & G. Adamopoulos. (2016) Solution processed SnO 2 :Sb transparent conductive oxide as an alternative to indium tin oxide for applications in organic light emitting diodes . Journal of Materials Chemistry C 4:16, pages 3563-3570.
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T.V.K. Karthik, M. de la L. Olvera & A. Maldonado. (2015) Effect of doping method on the morphological and gas sensing properties of Pt:SnO2 pellets. Effect of doping method on the morphological and gas sensing properties of Pt:SnO2 pellets.
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A. Gowri Manohari, K. Santhosh Kumar, Chaogang Lou, T. Mahalingam & C. Manoharan. (2015) Buffer layer of antimony doped tin disulphide thin films for heterojunction solar cells. Materials Letters 155, pages 121-124.
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Jian Qiao Liu, Zhao Xia Zhai, Guo Hua Jin, Xue Song Liu & Lin Quan. (2015) Evaluation of Depletion Layer Width in Antimony-Doped Tin Oxide Thin Films for Gas Sensors. Key Engineering Materials 644, pages 125-128.
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Qi Zhong Li & Qi Chang Li. (2014) Densification Mechanism of Antimony-Doped Tin Oxide Ceramics by Spark Plasma Sintering. Advanced Materials Research 1058, pages 196-199.
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