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Highly Crystalline WO3 Thin Films with Ordered 3D Mesoporosity and Improved Electrochromic Performance

机译:具有有序3D中孔性和改善的电致变色性能的高结晶度WO3薄膜

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摘要

WO3 thin layers with nanometer-scale periodicity were prepared by evaporation-induced self-assembly (EISA) using a novel amphiphilic block-copolymer template (poly(ethylene-co-butylene)-block-poly(ethylene oxide)). The evolution of the mesoporous ordered network and the crystallinity of the framework were monitored by 2D-SAXS, WAXS, SEM, XPS, and porosimetry. By annealing the films, the pore-wall crystallinity is adjusted between fully amorphous and highly crystalline without mesostructural degradation. Thus, the crystalline-film framework is composed of phase-pure monoclinic WO3 nanoparticles (12-14 nm in size). Furthermore, heat treatment transforms the originally spherical mesopores into ellipsoids, resulting in a unidirectionally shrunken, but still well-defined and fully accessible bcc mesopore architecture. The influence of mesoporosity and crystallinity on electrochemical/electrochromic characteristics was addressed by monitoring electrochemical features and the absorption changes during Li insertion/extraction (repetitive potentiostatic cycling). Both the amorphous and crystalline mesoporous films possess electrochromic response times on the order of only seconds, which are attributable to the facilitated insertion of guest ions due to shortening of the diffusion path lengths. Also, the insertion/extraction reversibility of crystalline WO3 layers with 3D mesoporosity is improved compared to amorphous ones and reaches values close to 100 %.
机译:使用新型的两亲嵌段共聚物模板(聚(乙烯-共-丁烯)-嵌段-聚(环氧乙烷))通过蒸发诱导自组装(EISA)制备具有纳米级周期性的WO3薄层。通过2D-SAXS,WAXS,SEM,XPS和孔隙率法监测介孔有序网络的演变和骨架的结晶度。通过对膜进行退火,可将孔壁的结晶度调整为完全非晶态和高度结晶态,而不会发生介观结构退化。因此,晶体膜框架由相纯单斜WO3纳米颗粒(尺寸为12-14 nm)组成。此外,热处理将最初的球形中孔转变为椭圆体,从而导致单向收缩,但仍然定义明确且完全可访问的密件抄送中孔结构。介孔和结晶度对电化学/电致变色特性的影响通过监测电化学特性和在Li插入/萃取(重复恒电位循环)过程中的吸收变化来解决。无定形和晶体中孔膜都具有仅数秒的电致变色响应时间,这归因于由于扩散路径长度的缩短而促进了客体离子的插入。而且,与无定形的WO3相比,具有3D中孔性的WO3结晶层的插入/拔出可逆性得到改善,其值接近100%。

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