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A Review on Recent Progression of Modifications on Titania Morphology and its Photocatalytic Performance

机译:关于钛菊属形态和光催化性能的最新进展综述

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Titanium dioxide (TiO 2 ) has been broadly used as a photocatalyst because it has good stability and performance for degradation of pollutants. On the other hand, its efficiency as photocatalyst is limited since it can only be excited under UV-light radiation and has a rapid electron-hole recombination that occurs during the photodegradation. There are many studies focusing on adjusting the synthesis methods, addition of dopants and modifying the TiO 2 structure to enhance its photocatalytic performance. Among them, synthesis of TiO 2 as porous nanoparticles as one of the strategies in modifying the TiO 2 structure has gained attention due to its benefits for better adsorption and accessibility of various pollutants onto the reactive site of catalyst, thus enhancing the photocatalytic performance. In this review, we recapitulated on modifications of synthesis methods for TiO 2 and their effect on the structure along with the photocatalytic performance. Recent progress for TiO 2 in terms of synthesis approaches, effect of dopants, modified structures, and applications are also briefly discussed in this review.
机译:二氧化钛(TiO 2)已广泛用作光催化剂,因为它具有良好的稳定性和性能,用于降解污染物。另一方面,其作为光催化剂的效率受到限制,因为它只能在紫外线辐射下激发并且具有在光降解期间发生的快速电子空穴重组。有许多研究专注于调整合成方法,添加掺杂剂并改变TiO 2结构以增强其光催化性能。其中,作为多孔纳米颗粒作为多孔纳米颗粒的合成作为改变TiO 2结构的策略之一,由于其优势,因此在催化剂的反应性位点上更好地吸附和可达性,因此提高了光催化性能。在本综述中,我们概括了TiO 2的合成方法的改性及其对结构的影响以及光催化性能。在本综述中还简要讨论了掺杂剂,改性结构和应用的综合方法,掺杂剂,改性结构和应用的影响。

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