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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Crack-free 2D-inverse opal anatase TiO2 films on rigid and flexible transparent conducting substrates: low temperature large area fabrication and electrochromic properties
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Crack-free 2D-inverse opal anatase TiO2 films on rigid and flexible transparent conducting substrates: low temperature large area fabrication and electrochromic properties

机译:刚性和柔性透明导电基材上的无裂纹二维反蛋白石锐钛矿型TiO2膜:低温大面积制造和电致变色性能

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摘要

Two-dimensional (2D) inverse opal (IO) TiO2 films, synthesized by colloidal crystal templating, such as polystyrene (PS) spheres, are particularly interesting because of their potential applications in sensors, solar cells, and electrochromic devices. For these applications, high crystallinity is essential for device performance. Usually, to achieve the IO structure with high crystallinity, the PS opal template is first removed by calcination at a temperature of ~400 °C, and subsequently to crystallize amorphous TiO2, a temperature higher than 400 °C is needed. This results in cracks and collapse of the macroporous framework. Furthermore, this route is limited to thermally stable substrates, such as glass, which is a significant drawback as the increasing development of technologies and modern electronics requires the design of inexpensive, lightweight, and efficient optoelectronic devices on flexible substrates. In order to circumvent these problems, we developed a 'dynamic-hard-template' infiltration strategy for the fabrication of large-area crack-free nanocrystalline (NC) anatase 2D-TiO2 IO films on rigid transparent conducting substrates and on ITO coated flexible polyethyleneterephthalate (ITO/PET) substrates, by using various sizes of PS spheres. According to this strategy, first a dynamic opal 2D film of PS spheres is self-assembled on the surface of water, followed by the infiltration of preformed anatase TiO2 nanoparticle sol from the bottom into the PS opal crystal as the guest material, thus eliminating the need for high temperature crystallization. The obtained floating PS/TiO2 opal composite film is deposited on ITO-coated glass and ITO/PET substrates. An optimized low temperature chemical method is adopted to remove the PS template to yield NC anatase 2D-TiO2 IO films. The films obtained on ITO/PET substrates were successfully used as an active electrode in the fabrication of a flexible electrochromic device.
机译:通过胶体晶体模板合成的二维(2D)反蛋白石(IO)TiO2薄膜,例如聚苯乙烯(PS)球,由于其在传感器,太阳能电池和电致变色设备中的潜在应用而特别受关注。对于这些应用,高结晶度对于器件性能至关重要。通常,要获得具有高结晶度的IO结构,首先要在约400°C的温度下通过煅烧除去PS蛋白石模板,然后使无定形的TiO2结晶,需要高于400°C的温度。这导致大孔框架的破裂和塌陷。此外,该途径限于热稳定的基底,例如玻璃,这是一个显着的缺点,因为技术和现代电子技术的不断发展要求在柔性基底上设计廉价,轻便和高效的光电器件。为了解决这些问题,我们开发了一种“动态-硬模板”渗透策略,用于在刚性透明导电基板和ITO涂覆的柔性聚对苯二甲酸乙二醇酯上制造大面积无裂纹纳米晶(NC)锐钛矿2D-TiO2 IO膜(ITO / PET)基板,使用各种尺寸的PS球。根据此策略,首先将PS球的动态蛋白石2D膜自组装在水表面,然后将预先形成的锐钛矿型TiO2纳米粒子溶胶从底部渗透到PS蛋白石晶体中作为客体材料,从而消除了需要高温结晶。将获得的浮动PS / TiO2蛋白石复合膜沉积在ITO涂层玻璃和ITO / PET基板上。采用优化的低温化学方法去除PS模板,得到NC锐钛矿2D-TiO2 IO薄膜。在ITO / PET基板上获得的薄膜已成功地用作制造柔性电致变色器件的有源电极。

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