| [1] |
ZHU H, WANG J, XU G.Fast synthesis of Cu2O hollow microspheres and their application in DNA biosensor of hepatitis B virus. Crystal Growth & Design, 2008, 9(1): 633-638.
|
| [2] |
YANG J, LIND J U, TROGLER W C.Synthesis of hollow silica and titania nanospheres. Chemistry of Materials, 2008, 20(9): 2875-2877.
|
| [3] |
WANG Z Y, LUAN D Y, BOEY F Y C, et al. Fast formation of SnO2 nanoboxes with enhanced lithium storage capability.Journal of the American Chemical Society, 2011, 133(13): 4738-4741.
|
| [4] |
GUBBALA S, CHAKRAPANI V, KUMAR V, et al.Band-edge engineered hybrid structures for dye-sensitized solar cells based on SnO2 nanowires.Advanced Functional Materials, 2008, 18(16): 2411-2418.
|
| [5] |
SONG F, SU H, HAN J.Bioinspired hierarchical tin oxide scaffolds for enhanced gas sensing properties.The Journal of Physical Chemistry C, 2012, 116(18): 10274-10281.
|
| [6] |
MIYAUCHI M, NAKAJIMA A, WATANABE T, et al.Photocatalysis and photoinduced hydrophilicity of various metal oxide thin films.Chemistry of Materials, 2002, 14(6): 2812-2816.
|
| [7] |
BROVELLEi S, CHIODINI N, LORENZI R, et al.Fully inorganic oxide-in-oxide ultraviolet nanocrystal light emitting devices.Nature Communications, 2012, 3(2): 23-25.
|
| [8] |
SEKO A, TOGO A, OBA F, et al.Structure and stability of a homologous series of tin oxides.Physical Review Letters, 2008, 100: 045702.
|
| [9] |
BERENGUE O M, SIMON R A, CHIQUITO A J, et al. Semiconducting Sn3O4 nanobelts: growth and electronic structure. Journal of Applied Physics.2010, 107(3): 033717-1-5.
|
| [10] |
PARK S H, SON Y C,WILLIS W S, et al.Tin oxide films made by physical vapor deposition-thermal oxidation and spray pyrolysis.Chemistry of Materials, 1998, 10(9): 2389-2398.
|
| [11] |
LI L, YANG Y W, HUANG X H, et al.Fabrication and characterization of single-crystalline znte nanowire arrays. The Journal of Physical Chemistry C, 2005, 109(25): 12394-12398.
|
| [12] |
LI L, YANG Y W, LI G H, et al.Conversion of a Bi nanowire array to an array of Bi-Bi2O3 core-shell nanowires and Bi2O3 nanotubes.Small, 2006, 2(4): 548-553.
|
| [13] |
LIANG L Y, LIU Z M, CAO H T, et al.Improvement of phase stability and accurate determination of optical constants of SnO thin films by using Al2O3 capping layer. Acs Applied Materials & Interfaces, 2010, 2(6): 1565-1568.
|
| [14] |
WANG C, ZHAO J C, WANG X M, et al.Preparation, characterization and photocatalytic activity of nano-sized ZnO/SnO2 coupled photocatalysts. Applied Catalysis B: Environmental, 2002, 39(3): 269-279.
|
| [15] |
GUAN M L, XIAO C, ZHANG J, et al.Vacancy associates promoting solar-driven photocatalytic activity of ultrathin bismuth oxychloride nanosheets.Journal of the American Chemical Society, 2013, 135(28): 10411-10417.
|
| [16] |
YANG G D, JIANG Z, SHI H H, et al.Preparation of highly visible- light active N-doped TiO2 photocatalyst.Journal of Materials Chemistry, 2010, 25(20): 5301-5309.
|
| [17] |
DAI S, YAO Z.Synthesis of flower-like SnO2 single crystals and its enhanced photocatalytic activity.Applied Surface Science, 2012, 258(15): 5703-5706.
|
| [18] |
PAN J, GANESAN R, SHEN H, et al.Plasma-modified SnO2 nanowires for enhanced gas sensing.The Journal of Physical Chemistry C, 2010, 114(18): 8245-8250.
|
| [19] |
SUHUA L, PAUL K C, WEILI L, et al.Origin of low-temperature photoluminescence from SnO2 nanowires fabricated by thermal evaporation and annealed in different ambients.Applied Physics Letters, 2006, 88(18): 183112-183114.
|
| [20] |
JIA T K, WANG W M, LONG F, et al.Synthesis, Characterization, and photocatalytic activity of Zn-doped SnO2 hierarchical architectures assembled by nanocones.The Journal of Physical Chemistry C, 2009, 113(21): 9071-9077.
|
| [21] |
JIA B, JIA W N, MA Y L, et al.SnO2 Core-shell microspheres with excellent photocatalytic properties.Science of Advanced Materials, 2012, 4(7): 702-707.
|