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Synthesis of hierarchical Bi2O3/Bi4Ti3O12 p-n junction nanoribbons on carbon fibers from (001) facet dominated TiO2 nanosheets

机译:由(001)面为主的TiO2纳米片在碳纤维上合成Bi2O3 / Bi4Ti3O12分层p-n结纳米带

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摘要

A novel hierarchical photocatalyst of Bi2O3/Bi4Ti3O12 p-n junction nanoribbons (NRs) on carbon fibers has been successfully fabricated from the precursor of (001) facet dominated TiO2 nanosheets (NSs), which provide well-shaped templates. The dominant (001) facets of the TiO2 precursor diminished slower than the (101) facets during the hydrothermal process. Single crystallized p-type Bi2O3 and n-type Bi4Ti3O12 coexist, forming p-n junctions within one NR. This hierarchical nanostructure exhibits markedly improved photocatalytic activity for degradation of methyl orange. The improvement can be attributed to enhanced absorption in the visible light region due to the ultrathin NRs, more efficient charge separation/transportation owing to the formation of a p-n junction, and high exposure of reactive (001) facets resulting from the formation of a hierarchical structure. Moreover, this hierarchical photocatalyst shows high stability and excellent recycling properties.
机译:碳纤维上Bi2O3 / Bi4Ti3O12 p-n结纳米带(NRs)的新型分层光催化剂已成功地由(001)面为主的TiO2纳米片(NSs)的前体制备,该模板提供了形状良好的模板。在水热过程中,TiO2前体的主要(001)面减小得比(101)面慢。单晶的p型Bi2O3和n型Bi4Ti3O12共存,在一个NR中形成p-n结。这种分级的纳米结构显示出显着改善的对甲基橙降解的光催化活性。这种改善可以归因于由于超薄NR而导致的在可见光区域的吸收增强,由于形成了pn结而导致的更有效的电荷分离/传输以及由于形成了分层结构而导致的高反应性(001)面暴露结构体。此外,这种分级光催化剂显示出高稳定性和优异的再循环性能。

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