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Synthesis, characterization and photoactivity of bi-crystalline mesoporous TiO2 被引量:1

Synthesis, characterization and photoactivity of bi-crystalline mesoporous TiO2
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摘要 Mesoporous titania (meso-TiO2) has received extensive attention owing to its versatile potential applications. This paper reports a low-temperature templating approach for the fabrication of meso-TiO2 using the peroxo titanic acid (PTA) sol as precursor and Pluronic P123 as nonionic template. The TGA, XRD, N2 sorption, FE-SEM and HRTEM were used to characterize the obtained samples. The results showed that meso-TiO2 with high surface area up to 163 m2.g^-1 and large pore volume of 0.65 cm3.^-1 can be obtained. The mesopore sizes can be varied between 13 and 20 nm via this synthesis approach. The amount of P123 and the calcination conditions were found to have great influence on the mesoporous and crystalline structures of meso-TiO2. The photocatalytic activity testing clearly shows that the high surface area and bi-crystallinity phases of meso-TiO2 play important roles in enhancing photocatalytic properties of meso-TiO2 in photo-decomposing Rhodamine B in water. Mesoporous titania (meso-TiO2) has received extensive attention owing to its versatile potential applications. This paper reports a low-temperature templating approach for the fabrication of meso-TiO2 using the peroxo titanic acid (PTA) sol as precursor and Pluronic P123 as nonionic template. The TGA, XRD, N2 sorption, FE-SEM and HRTEM were used to characterize the obtained samples. The results showed that meso-TiO2 with high surface area up to 163 m2.g^-1 and large pore volume of 0.65 cm3.^-1 can be obtained. The mesopore sizes can be varied between 13 and 20 nm via this synthesis approach. The amount of P123 and the calcination conditions were found to have great influence on the mesoporous and crystalline structures of meso-TiO2. The photocatalytic activity testing clearly shows that the high surface area and bi-crystallinity phases of meso-TiO2 play important roles in enhancing photocatalytic properties of meso-TiO2 in photo-decomposing Rhodamine B in water.
出处 《Frontiers of Materials Science》 SCIE CSCD 2016年第1期23-30,共8页 材料学前沿(英文版)
基金 Acknowledgements This work was supported by the National Natural Science Foundation of China (Grant Nos. 21201030, 21471026 and 51272039), the Fundamental Research Funds for the Central Universities (N141005001, L1502020 and N130810003) and the Liaoning Province Innovation Funds (Grant No. 2014020030).
关键词 surfactant templating MESOPORE bi-crystallinity TITANIA surfactant templating mesopore bi-crystallinity titania
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  • 1Boettcher S W, Fan J, Tsung C K, et al. Harnessing the sol-gel process for the assembly of non-silicate mesostructured oxide materials. Accounts of Chemical Research, 2007, 40(9): 784- 792.
  • 2Li W, Wu Z, Wang J, et al. A perspective on mesoporous TiO2 materials. Chemistry of Materials, 2014, 26(1): 287-298.
  • 3Zhang R, Elzatahry A A, A1-Deyab S S, et al. Mesoporous titania: From synthesis to application. Nano Today, 2012, 7(4): 344-366.
  • 4Pan J H, Dou H, Xiong Z, et al. Porous photocatalysts for advanced water purifications. Journal of Materials Chemistry, 2010, 20(22): 4512-4528.
  • 5Oveisi H, Suzuki N, Beitollahi A, et al. Aerosol-assisted fabrication ofmesoporous titania spheres With crystallized anatase structures and investigation of their photocatalitic properties. Journal of Sol-Gel Science and Technology, 2010, 56(2): 212-218.
  • 6Samiee L, Beitollahi A, Virtu A. Effect of calcination atmosphere on the structure and photocatalytic properties of titania mesopor- ous powder. Research on Chemical Intermediates, 2012, 38(7): 1467-1482.
  • 7Shamaila S, Sajjad A K L, Chen F, et al. Mesoporous titania with high crystallinity during synthesis by dual template system as an efficient photocatalyst. Catalysis Today, 2011, 175(1): 568-575.
  • 8Renuka N K, Praveen A K, Aravindakshan K K. Synthesis and characterisation of mesoporous anatase TiO2 with highly crystalline framework. Materials Letters, 2013, 91:118-120.
  • 9Chang Y S, Lee Y C, Yuhara J, et al. Effect of water on the formation of nanostructured mesoporous titania. Current Applied Physics, 2011, 11(3): 486-491.
  • 10Chu S, Luo L L, Yang J C, et al. Low-temperature synthesis of mesoporous TiO2 photocatalyst with self-cleaning strategy to remove organic templates. Applied Surface Science, 2012, 258 (24): 9664-9667.

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