A series of Ti(2)O(3)@TiO(2) core-shell heterojunction composite photocatalysts with different internal electric fields were synthesized using simple heat treatment methods. The synthesized Ti(2)O(3)@TiO(2) core-shell heterojunction composites were characterized by means of SEM, XRD, PL, UV-Vis, BET, SPV, TEM and other related analytical techniques. Tetracycline (TC) was used as the degradation target to evaluate the photocatalytic performance of the synthesized Ti(2)O(3)@TiO(2) core-shell heterojunction composites. The relevant test results show that the photocatalytic performance of the optimized materials has been significantly enhanced compared to Ti(2)O(3), while the photocatalytic degradation rate has increased from 28% to 70.1%. After verification via several different testing and characterization techniques, the excellent catalytic performance is attributed to the efficient separation efficiency of the photogenerated charge carriers derived from the built-in electric field formed between Ti(2)O(3) and TiO(2). When the recombination of electrons and holes is occupied, more charges are generated to reach the surface of the photocatalyst, thereby improving the photocatalytic degradation efficiency. Thus, this work provides a universal strategy to enhance the photocatalytic performance of Ti(2)O(3) by coupling it with TiO(2) to build an internal electric field.
Construction of Built-In Electric Field in TiO(2)@Ti(2)O(3) Core-Shell Heterojunctions toward Optimized Photocatalytic Performance.
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作者:Hu Tingting, Feng Panpan, Guo Liping, Chu Hongqi, Liu Fusheng
| 期刊: | Nanomaterials | 影响因子: | 4.300 |
| 时间: | 2023 | 起止号: | 2023 Jul 21; 13(14):2125 |
| doi: | 10.3390/nano13142125 | ||
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