• Journal of Semiconductors
  • Vol. 41, Issue 9, 091703 (2020)
Jian Zheng and Dajun Shu
Author Affiliations
  • National Laboratory of Solid State Microstructures and School of Physics, Nanjing University, Nanjing 210093, China
  • show less
    DOI: 10.1088/1674-4926/41/9/091703 Cite this Article
    Jian Zheng, Dajun Shu. Regulation of surface properties of photocatalysis material TiO2 by strain engineering[J]. Journal of Semiconductors, 2020, 41(9): 091703 Copy Citation Text show less
    References

    [1] R Asahi, T Morikawa, T Ohwaki et al. Visible-light photocatalysis in nitrogen-doped titanium oxides. Science, 293, 269(2001).

    [2] C T Campbell, S C Parker, D E Starr. The effect of size-dependent nanoparticle energetics on catalyst sintering. Science, 298, 811(2002).

    [3] O Bikondoa, C L Pang, R Ithnin et al. Direct visualization of defect-mediated dissociation of water on TiO2(110). Nat Mater, 5, 189(2006).

    [4] M Gratzel. Photoelectrochemical cells. Nature, 414, 338(2001).

    [5] G Lu, A Linsebigler, J T Yates. Photooxidation of ch3cl on TiO2(110) — a mechanism not involving H 2O. J Phys Chem, 99, 7626(1995).

    [6] X Y Pan, M Q Yang, X Z Fu et al. Defective TiO2 with oxygen vacancies: Synthesis, properties and photocatalytic applications. Nanoscale, 5, 3601(2013).

    [7] B Yang, F Liu, M G Lagally. Local strain-mediated chemical potential control of quantum dot self-organization in heteroepitaxy. Phys Rev Lett, 92, 4(2004).

    [8] G H Lu, M Cuma, F Liu. First-principles study of strain stabilization of Ge(105) facet on Si(001). Phys Rev B, 72, 6(2005).

    [9] W J Yin, S Y Chen, J H Yang et al. Effective band gap narrowing of anatase TiO2 by strain along a soft crystal direction. Appl Phys Lett, 96, 3(2010).

    [10] D J Shu, S T Ge, M Wang et al. Interplay between external strain and oxygen vacancies on a rutile TiO2(110) surface. Phys Rev Lett, 101, 4(2008).

    [11] Z W Wang, D J Shu, M Wang et al. Diffusion of oxygen vacancies on a strained rutile TiO2(110) surface. Phys Rev B, 82, 7(2010).

    [12] Z W Wang, D J Shu, M Wang et al. Strain effect on diffusion properties of oxygen vacancies in bulk and subsurface of rutile TiO2. Surf Sci, 606, 186(2012).

    [13] L Jia, D J Shu, M Wang. Tuning the area percentage of reactive surface of TiO2 by strain engineering. Phys Rev Lett, 109, 5(2012).

    [14] L Yang, D J Shu, S C Li et al. Influence of strain on water adsorption and dissociation on rutile TiO2(110) surface. Phys Chem Chem Phys, 18, 14833(2016).

    [15] Z W Wang, D J Shu. Intrinsic interaction between in-plane ferroelectric polarization and surface adsorption. Phys Chem Chem Phys, 21, 18680(2019).

    [16] E Shojaee, M R Mohammadizadeh. First-principles elastic and thermal properties of TiO2: A phonon approach. J Phys Condens Matter, 22, 8(2010).

    [17] H Sato, K Ono, T Sasaki et al. First-principles study of two-dimensional titanium dioxides. J Phys Chem B, 107, 9824(2003).

    [18] D G Isaak, J D Carnes, O L Anderson et al. Elasticity of TiO2rutile to 1800 K. Phys Chem Miner, 26, 31(1998).

    [19] R C Cammarata. Surface and interface stress effects in thin-films. Prog Surf Sci, 46, 1(1994).

    [20] A Vittadini, M Casarin, A Selloni. Chemistry of and on TiO2-anatase surfaces by dft calculations: a partial review. Theor Chem Acc, 117, 663(2007).

    [21] M Lazzeri, A Vittadini, A Selloni. Structure and energetics of stoichiometric TiO2anatase surfaces. Phys Rev B, 63, 9(2001).

    [22] U Diebold, N Ruzycki, G S Herman et al. One step towards bridging the materials gap: surface studies of TiO2 anatase. Catal Today, 85, 93(2003).

    [23] S Wendt, R Schaub, J Matthiesen et al. Oxygen vacancies on TiO2(110) and their interaction with H2O and O2: A combined high-resolution STM and DFT study. Surf Sci, 598, 226(2005).

    [24] T L Thompson, J T Yates. Surface science studies of the photoactivation of TiO2 – new photochemical processes. Chem Rev, 106, 4428(2006).

    [25] C M Yim, C L Pang, G Thornton. Oxygen vacancy origin of the surface band-gap state of TiO2(110). Phys Rev Lett, 104, 4(2010).

    [26] U Diebold, J Lehman, T Mahmoud et al. Intrinsic defects on a TiO2(110)(1x1) surface and their reaction with oxygen: A scanning tunneling microscopy study. Surf Sci, 411, 137(1998).

    [27] E Wahlstrom, N Lopez, R Schaub et al. Bonding of gold nanoclusters to oxygen vacancies on rutile TiO2(110). Phys Rev Lett, 90, 4(2003).

    [28] R Schaub, E Wahlstrom, A Ronnau et al. Oxygen-mediated diffusion of oxygen vacancies on the TiO2(110) surface. Science, 299, 377(2003).

    [29] Z R Zhang, R Rousseau, J L Gong et al. Vacancy-assisted diffusion of alkoxy species on rutile TiO2(110). Phys Rev Lett, 101, 4(2008).

    [30] G A Kimmel, N G Petrik. Tetraoxygen on reduced TiO2(110): Oxygen adsorption and reactions with bridging oxygen vacancies. Phys Rev Lett, 100, 4(2008).

    [31] D O Klenov, W Donner, B Foran et al. Impact of stress on oxygen vacancy ordering in epitaxial (La0.5Sr0.5)CoO3-partial derivative thin films. Appl Phys Lett, 82, 3427(2003).

    [32] H Kamisaka, K Yamashita. The surface stress of the (110) and (100) surfaces of rutile 14 and the effect of water adsorbents. Surf Sci, 601, 4824(2007).

    [33] K Hameeuw, G Cantele, D Ninno et al. Influence of surface and subsurface defects on the behavior of the rutile TiO2(110) surface. Phys Status Solidi A, 203, 2219(2006).

    [34] T Bredow, L Giordano, F Cinquini et al. Electronic properties of rutile TiO2ultrathin films: Odd-even oscillations with the number of layers. Phys Rev B, 70, 6(2004).

    [35] C Lee, P Ghosez, X Gonze. Lattice-dynamics and dielectric-properties of incipient ferroelectric TiO2 rutile. Phys Rev B, 50, 13379(1994).

    [36] R A Parker. Static dielectric constant of rutile (TiO2), 1.6–1060 °K. Phys Rev, 124, 1719(1961).

    [37] J G Trayler, H G Smith, R M Nicklow et al. Lattice dynamics of rutile. Phys Rev B, 3, 3457(1971).

    Jian Zheng, Dajun Shu. Regulation of surface properties of photocatalysis material TiO2 by strain engineering[J]. Journal of Semiconductors, 2020, 41(9): 091703
    Download Citation