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Improved interconnectivity among TiO2 particles in the presence of the f-MWCNTs is seen as another reason for the Jsc enhancements.
The size of porogens correlated well with the porosity of the construct produced and larger porogens improved interconnectivity of spaces within constructs.
Comparatively, tree-like ZnO structures exhibit a larger internal surface area for efficient dye loading and light harvesting, a greater available pore volume, reduced charge recombination, and improved interconnectivity for faster electron transport than ZnO nanorods.
The enhanced Jsc is explained by the increased surface area of the film, enhanced cluster formation of TiO2 particles around f-MWCNTs, and improved interconnectivity of TiO2 particles in the presence of f-MWCNTs.
The enhanced method involved the combination of a conventional SCPL method and a step of centrifugation, with the centrifugation being employed to improve the pore uniformity and the pore interconnectivity of scaffolds.
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