Chinese Journal of Lasers, Volume. 42, Issue 8, 806004(2015)

A Study on Titanium Dioxide Surface Adsorption Hydrogen Halide Gas and Oxygen Vacancy Oxidation Characteristics

Zhu Hongqiang1,2、* and Feng Qing1,2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    References(19)

    [1] [1] Huang Jianbin. Handbook of Industrial Gas[M]. Beijing: Chemical Industry Press, 2002: 248-277.

    [2] [2] Situ Jiesheng. Handbook of Chemical Products (3rd Edition)[M]. Beijing: Chemical Industry Press, 1999: 83-245.

    [3] [3] Fujishima A, Honda K. Electrochemical photolysis of water at a semiconductor electrode[J]. Nature, 1972, 238(5358): 37-38.

    [4] [4] Khan S U M, Al S M, Ingler W B. Efficient photochemical water splitting by a chemically modified n-TiO2[J]. Science, 2002, 297(5590): 2243-2245.

    [5] [5] Zhu Hongqiang, Feng Qing, Yue Yuanxia. Electronic and optical properties of rutile TiO2 co-doped with nitrogen and platinum group metals (Ru,Rh,Pd)[J]. Chinese J Lasers, 2014, 41(s1): s106003.

    [6] [6] Yu Xiangyang, Liang Wen, Cheng Jijian. Ways of improving TiO2 photocatalytic properties[J]. Bulletin of the Chinese Ceramic Society, 2000, 15(1): 53-56.

    [7] [7] Chen X B, Liu L, Yu P Y, et al.. Increasing solar absorption for photocatalysis with black hydrogenated titanium dioxide nanocrystals [J]. Science, 2011, 331(6018): 746-750.

    [8] [8] Wang Yin, Feng Qing, Wang Weihua, et al.. First-principles study on the electronic and optical property of C-Zn co-doped anatase TiO2[J]. Acta Physica Sinica, 2012, 61(19): 193102.

    [9] [9] Elliott S D, Bates S P. Assignment of the (1×2) surface of rutile TiO2(110) from first principles[J]. Phys Rev B, 2003, 67(3): 035421.

    [10] [10] Zhu Hongqiang, Feng Qing. Microscopic characteristics mechanism of optical gas sensing material rutile titanium dioxide (110) surface adsorption of CO molecules[J]. Acta Physica Sinica, 2014, 63(13): 133101.

    [11] [11] Xiao Bing, Feng Jing, Chen Jingchao, et al.. Study of rutile (110) surface STM image via ab initio simulation[J]. Acta Physica Sinica, 2008, 57(6): 3769-3774.

    [12] [12] Wu X Y, Selloni A, Nayak S K. First principles study of CO oxidation on TiO2(110): The role of surface oxygen vacancies[J]. J Chem Phys, 2004, 120(9): 4512-4516.

    [13] [13] Sorescu D C, Yates J T. First principles calculations of the adsorption properties of CO and NO on the defective TiO2(110) surface [J]. J Phys Chem B, 2002, 106(24): 6184-6199.

    [14] [14] Wang Yang. Study of NO adsorption on TiO2(110) surface by molecular orbital theory[J]. Acta Chimica Sinica, 2005, 63(11): 1023-1027.

    [15] [15] Wang Yang, Meng Liang. Effects of the oxygen vacancy on NO adsorption at the TiO2 surface[J]. Acta Physica Sinica, 2005, 54(5): 2207-2211.

    [16] [16] Zhu Hongqiang, Feng Qing. A study on microscopic mechanism and optical gas sensing material characteristics of rutile titanium dioxide (110) surface adsorption NH3 molecules[J]. Acta Optica Sinica, 2014, 34(10): 1016002.

    [19] [19] Stopkowicz S, Gauss J. Relativistic corrections to electrical first-order properties using direct perturbation theory[J]. J Chem Phys, 2008, 129(16): 164119.

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    Zhu Hongqiang, Feng Qing. A Study on Titanium Dioxide Surface Adsorption Hydrogen Halide Gas and Oxygen Vacancy Oxidation Characteristics[J]. Chinese Journal of Lasers, 2015, 42(8): 806004

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    Paper Information

    Category: Materials

    Received: Mar. 23, 2015

    Accepted: --

    Published Online: Sep. 24, 2022

    The Author Email: Zhu Hongqiang (346033480@qq.com)

    DOI:10.3788/cjl201542.0806004

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