首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Multi-layered mesoporous TiO2 thin films with large pores and highly crystalline frameworks for efficient photoelectrochemkal conversion
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Multi-layered mesoporous TiO2 thin films with large pores and highly crystalline frameworks for efficient photoelectrochemkal conversion

机译:具有大孔和高结晶骨架的多层中孔TiO2薄膜,可实现有效的光电化学转化

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摘要

Mesoporous thin films with various compositions are unique architectures for photoelectrochemical (PEC) solar cells. In this paper, we report the synthesis of highly ordered, multi-layered, continuous mesoporous TiO2 thin films with uniform large pores, crystalline walls and tunable film thickness, via a ligand-assisted evaporation induced self assembly (EISA) method. A Ti(acetylacetone) precursor and a diblock copolymer PEO-fa-PS are employed for the controlled assembly of the TiO2/template mesostructure, followed by a two-step pyrolysis that generates carbon residue as an intermediate protection layer to support the TiO2 framework and mesostructures during the crystallization. Other transition metal ion dopants (such as Cr, Ni and Co) can be facilely incorporated into the TiO2 frameworks by co-assembly of these metal acetylacetone precursors during the EISA process. The obtained TiO2 thin film possesses an ordered monoclinic mesostructure distorted from a (110)-oriented primitive cubic structure, uniform and tunable large pores of 10-30 nm, a large surface area of ~100 m~2 g~(-1) and a high crystallinity anatase wall. The film thickness can be well controlled from 150 nm to several microns to tune the absorption, with the capability of generating free-standing film morphologies. Furthermore, this designed architecture allows for effective post-deposition of other small-bandgap semiconductor nanomaterials inside the large, open and interconnecting mesopores, leading to significantly improved solar absorption and photoconversion. As a proof-of-concept, we demonstrate that the photoanodes made of 4.75 urn thick mesoporous TiO2 film with deposited cadmium sulfide quantum dots exhibit excellent performance in PEC water splitting, with an optimized photocurrent density of 6.03 mA cm~(-2) and a photoconversion efficiency of 3.9%. These multi-layered mesoporous TiO2-based thin films can serve as a unique architecture for PEC and other solar energy conversion and utilization.
机译:具有各种组成的中孔薄膜是光电化学(PEC)太阳能电池的独特架构。在本文中,我们报告了通过配位体辅助蒸发诱导自组装(EISA)方法合成具有均匀大孔,结晶壁和可调膜厚度的高度有序的多层连续中孔TiO2薄膜。 Ti(乙酰丙酮)前体和二嵌段共聚物PEO-fa-PS用于TiO2 /模板介观结构的受控组装,然后进行两步热解,生成碳残留物作为中间保护层,以支撑TiO2骨架和结晶过程中的介观结构。通过在EISA工艺中将这些金属乙酰丙酮前体共组装,可以轻松地将其他过渡金属离子掺杂剂(例如Cr,Ni和Co)掺入TiO2骨架中。所得的TiO2薄膜具有从(110)取向的原始立方结构变形的有序单斜介观结构,均匀可调谐的10-30 nm大孔,〜100 m〜2 g〜(-1)的大表面积和高结晶度的锐钛矿壁。可以将膜厚控制在150 nm至几微米之间,以调节吸收率,并具有产生自立式膜形态的能力。此外,这种设计的体系结构允许在大的,开放的且互连的中孔内有效地后沉积其他小带隙半导体纳米材料,从而显着改善了太阳能吸收和光转换。作为概念验证,我们证明了由4.75微米厚的中孔TiO2膜与沉积的硫化镉量子点构成的光阳极在PEC水分解中表现出优异的性能,优化的光电流密度为6.03 mA cm〜(-2),并且光转换效率为3.9%。这些多层的介孔TiO2基薄膜可以用作PEC和其他太阳能转换和利用的独特架构。

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