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Heterostructured ZnFe2O4/Fe2TiO5/TiO2 Composite Nanotube Arrays with an Improved Photocatalysis Degradation Efficiency Under Simulated Sunlight Irradiation

机译:模拟阳光照射下具有改善的光催化降解效率的异质结构ZnFe2O4 / Fe2TiO5 / TiO2复合纳米管阵列

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摘要

To improve the visible light absorption and photocatalytic activity of titanium dioxide nanotube arrays (TONTAs), ZnFe2O4 (ZFO) nanocrystals were perfused into pristine TONTA pipelines using a novel bias voltage-assisted perfusion method. ZFO nanocrystals were well anchored on the inner walls of the pristine TONTAs when the ZFO suspensions (0.025 mg mL−1) were kept under a 60 V bias voltage for 1 h. After annealing at 750 °C for 2 h, the heterostructured ZFO/Fe2TiO5 (FTO)/TiO2 composite nanotube arrays were successfully obtained. Furthermore, Fe3+ was reduced to Fe2+ when solid solution reactions occurred at the interface of ZFO and the pristine TONTAs. Introducing ZFO significantly enhanced the visible light absorption of the ZFO/FTO/TONTAs relative to that of the annealed TONTAs. The coexistence of type I and staggered type II band alignment in the ZFO/FTO/TONTAs facilitated the separation of photogenerated electrons and holes, thereby improving the efficiency of the ZFO/FTO/TONTAs for photocatalytic degradation of methylene blue when irradiated with simulated sunlight.
机译:为了提高二氧化钛纳米管阵列(TONTA)的可见光吸收和光催化活性,使用新颖的偏压辅助灌注方法将ZnFe2O4(ZFO)纳米晶体灌注到原始的TONTA管道中。当将ZFO悬浮液(0.025 mg mL -1 )保持在60 V偏置电压下1 h时,ZFO纳米晶体牢固地固定在原始TONTA的内壁上。在750°C退火2小时后,成功获得了异质结构的ZFO / Fe2TiO5(FTO)/ TiO2复合纳米管阵列。此外,当ZFO和原始TONTAs发生固溶反应时,Fe 3 + 被还原为Fe 2 + 。相对于退火的TONTA,引入ZFO显着增强了ZFO / FTO / TONTA的可见光吸收。 ZFO / FTO / TONTA中I型和II型交错带的共存促进了光生电子和空穴的分离,从而提高了ZFO / FTO / TONTAs在模拟阳光照射下对亚甲基蓝光催化降解的效率。

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