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Synthesis of [111]- and {010}-faceted anatase TiO2 nanocrystals from tri-titanate nanosheets and their photocatalytic and DSSC performances

机译:合成[111]和{010}面锐钛矿二氧化钛纳米晶体从tri-titanate nanosheets和他们的光催化和DSSC表演

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摘要

[111]- and {010}-faceted anatase nanocrystals with controllable crystal size and morphology were synthesized from tri-titanate H2Ti3O7 nanosheets by hydrothermal reaction. The nanostructures and the formation reaction mechanism of the obtained TiO2 nanocrystals were investigated using XRD, FE-SEM, and TEM. Furthermore, the photocatalytic and dye-sensitized solar cell (DSSC) performances of the synthesized anatase nanocrystals were also characterized. Two types of reactions occur in the formation process of the anatase nanocrystals. One is an in situ topochemical conversion reaction of the layered titanate structure to an anatase structure, and another is the dissolution-deposition reaction on the particle surface, which splits the formed nanosheet-like particles into small TiO2 nanocrystals. The surface photocatalytic activity and the DSSC performance of the anatase nanocrystals are dependent on the crystal facet exposed on the particle surface, which increases in the order of non-facet < [ 111]-facet < {010}-facet. The increasing order corresponds to the increasing order of the bandgap and energy level of the lowest valence band of the anatase nanocrystals. Furthermore, the facet of the anatase also affects the DSSC performance, which is enhanced in the order of non-facet < [ 111]-facet < {010}-facet.
机译:[111]和{010}面锐钛矿纳米晶体控制晶体的大小和形态从合成tri-titanate H2Ti3O7 nanosheets由热液反应。的形成反应机理使用XRD研究了二氧化钛纳米晶体,FE-SEM和TEM。色素增感太阳能电池和(DSSC)表演合成的锐钛矿纳米晶体也为特征。锐钛矿的形成过程纳米晶体。层状钛酸的转化反应结构为锐钛矿结构,另一个是dissolution-deposition反应上粒子表面,将形成nanosheet-like粒子成小二氧化钛纳米晶体。和DSSC锐钛矿的性能纳米晶体是依赖于晶体方面暴露在粒子表面,从而增加的顺序non-facet <[111]方面<{010}面。隙和能量的增加订单锐钛矿的水平最低的价带纳米晶体。锐钛矿也会影响DSSC的性能,增强的顺序non-facet < [

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