Potassium titanium oxide (K2Ti4O9)

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CAS: 12056-49-4
MF: 4[Ti+4].2[K+].9[O-2]
MW: 413.6592
Synonyms: Potassium titanium oxide (K2Ti4O9)

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Xiaohua Lu

Nanjing University of Technology
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Xin Feng

Nanjing University of Technology
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Ningzhong Bao

Nanjing University of Technology
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Liming Shen

Nanjing Tech University
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JianPing Lv

HeFei University of Technology
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FengYu Wei

HeFei University of Technology
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Jin Wang

HeFei University of Technology
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Xue-Ting Liu

Hefei University of Technology
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Shuxin Ouyang

Tianjin University
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Co-reporter: Shuxin Ouyang, Peng Li, Hua Xu, Hua Tong, Lequan Liu, and Jinhua Ye
pp: 22726
Publication Date(Web):November 21, 2014
DOI: 10.1021/am506877b
Nanoporous SrTiO3 photocatalysts were fabricated via a novel technique, the nanotemplate assisted sol–gel hydrothermal reaction. In the alkaline-environment hydrothermal reaction, the SiO2 nanotemplate not only served as pore generator but also worked on adjusting the local reaction environment around the SrTiO3 nanocrystals. This contributed to a continuous modulation between the surface area and the crystallinity of the photocatalyst. The photocatalytic activities of the nanoporous SrTiO3 samples were evaluated by the degradation of gaseous isopropyl alcohol (IPA). Due to an optimal equilibrium between surface area and crystallinity, a SrTiO3 sample synthesized via adding 40% template (STO-SiO2-40%) showed the highest activity, which achieves 40 and 8 times of enhancement of CO2 evolution in comparison with the sample prepared without template and a commercial nano-SrTiO3, respectively. The photodegradation mechanism of IPA over this sample was also investigated in detail. This synthetic technique is also available to prepare the other nanoporous titanates, such as doped SrTiO3 samples and alkali-metal titanates.Keywords: crystallinity; nanoporous material; nanotemplate; organic pollutant photodegradation; photocatalysis; surface area

Weijia Zhou

South China University of Technology
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