Theoretical study of size and shell composition effect of TiO2 core-shell mesoporous microsphere on UV absorption effectivity for photocatalytic application

被引:0
作者
Geints, Yury E. [1 ]
Panina, Ekaterina K. [1 ]
机构
[1] VE Zuev Inst Atmospher Opt, 1 Acad,Zuev Sq, Tomsk 634021, Russia
关键词
Photocatalyst; Core-shell microparticle; Nanosphere; Optical absorption; Finite elements method; Full-wave electromagnetics; HYDROGEN-PRODUCTION; LIGHT; ENHANCEMENT; FABRICATION; SPHERES; SILVER; RUTILE;
D O I
10.1016/j.jqsrt.2024.109246
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Microdispersed photocatalysts based on titanium dioxide (TiO2) in the form of hollow core-shell microspheres (microcapsules) with mesoporous structure are widely demanded in modern critical technologies related to the catalysis of various chemicals, solving environmental problems, and obtaining cheap fuel. To date, a number of experimental works are known, showing that geometrical parameters of microcapsules (size, shell thickness), as well as microstructural composition (nanosized metal additives, additional inner dielectric core- the "yolk") noticeably affect their photocatalytic activity. At the same time, a valuable physical description of the optical properties of porous microcapsules has not been presented in the literature so far. Using the finite element method, we perform a full-wave theoretical simulation of the optical field inside a hollow microsphere whose shell is randomly self-assembled from multiple TiO2 nanoparticles forming an irregular nanoporous structure. We provide a unified physical explanation of the published experimental data on the optical activity of titaniumdioxide microcapsules and show that the existing theoretical models do not always give a correct interpretation of the observed empirical behaviors.
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页数:8
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