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迈向智能塑料窗:在聚碳酸酯基底上合成电致变色器件的氧化铟锡电极优化。

Toward Plastic Smart Windows: Optimization of Indium Tin Oxide Electrodes for the Synthesis of Electrochromic Devices on Polycarbonate Substrates.

机构信息

Department of Applied Science and Technology, Politecnico di Torino , C.so Duca degli Abruzzi 24, 10129 Torino, Italy.

Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologi a, C.so Trento, 21, 10129 Torino, Italy.

出版信息

ACS Appl Mater Interfaces. 2016 Mar;8(12):8032-42. doi: 10.1021/acsami.6b00988. Epub 2016 Mar 15.

Abstract

Plastic smart windows are becoming one of the key elements in view of the fabrication of inexpensive, lightweight electrochromic (EC) devices to be integrated in the new generation of high-energy-efficiency buildings and automotive applications. However, fabricating electrochromic devices on polymer substrates requires a reduction of process temperature, so in this work we focus on the development of a completely room-temperature deposition process aimed at the preparation of ITO-coated polycarbonate (PC) structures acting as transparent and conductive plastic supports. Without providing any substrate heating or surface activation pretreatments of the polymer, different deposition conditions are used for growing indium tin oxide (ITO) thin films by the radiofrequency magnetron sputtering technique. According to the characterization results, the set of optimal deposition parameters is selected to deposit ITO electrodes having high optical transmittance in the visible range (∼90%) together with low sheet resistance (∼8 ohm/sq). The as-prepared ITO/PC structures are then successfully tested as conductive supports for the fabrication of plastic smart windows. To this purpose, tungsten trioxide thin films are deposited by the reactive sputtering technique on the ITO/PC structures, and the resulting single electrode EC devices are characterized by chronoamperometric experiments and cyclic voltammetry. The fast switching response between colored and bleached states, together with the stability and reversibility of their electrochromic behavior after several cycling tests, are considered to be representative of the high quality of the EC film but especially of the ITO electrode. Indeed, even if no adhesion promoters, additional surface activation pretreatments, or substrate heating were used to promote the mechanical adhesion among the electrode and the PC surface, the observed EC response confirmed that the developed materials can be successfully employed for the fabrication of lightweight and inexpensive plastic EC devices.

摘要

塑料智能窗正在成为制造廉价、轻量级电致变色(EC)器件的关键元素之一,这些器件将集成到新一代高能效建筑和汽车应用中。然而,在聚合物基板上制造电致变色器件需要降低工艺温度,因此在这项工作中,我们专注于开发一种完全在室温下进行的沉积工艺,旨在制备 ITO 涂层聚碳酸酯(PC)结构,作为透明导电的塑料支撑体。在不提供任何基底加热或聚合物表面激活预处理的情况下,通过射频磁控溅射技术使用不同的沉积条件来生长氧化铟锡(ITO)薄膜。根据表征结果,选择了一组最佳的沉积参数来沉积 ITO 电极,这些电极在可见光范围内具有高透光率(约 90%)和低方阻(约 8 欧姆/平方)。然后,将制备的 ITO/PC 结构成功地用作制备塑料智能窗的导电支撑体进行测试。为此,通过反应溅射技术在 ITO/PC 结构上沉积三氧化钨薄膜,并通过计时电流法和循环伏安法对所得的单电极 EC 器件进行表征。在经过多次循环测试后,其电致变色行为的快速变色和褪色响应之间的稳定性和可逆性被认为是 EC 薄膜高质量的代表,尤其是 ITO 电极的高质量代表。实际上,即使没有使用附着力促进剂、额外的表面激活预处理或基底加热来促进电极和 PC 表面之间的机械附着力,观察到的 EC 响应也证实了所开发的材料可以成功地用于制造轻量级和廉价的塑料 EC 器件。

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