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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Preparation of WO3 Films with Controllable Crystallinity for Improved Near-Infrared Electrochromic Performances
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Preparation of WO3 Films with Controllable Crystallinity for Improved Near-Infrared Electrochromic Performances

机译:具有可控结晶度的WO3膜的制备,改善近红外电致变色性能

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摘要

In this study, a WO3 film with controllable crystallinity has been prepared by radio frequency magnetron sputtering. The WO3 film with about 400 nm thickness and controllable crystallinity not only has the advantages of amorphous WO3 with large transmittance modulation and short switching response time but also has the outstanding cyclic stability of crystalline WO3. Therefore, this WO3 film exhibits superior electrochromic performances including large transmittance modulation in the near infrared regime (72.5% at lambda = 1000 nm), short coloration/bleaching switching response time (5.3 s for coloration and 3.0 s for bleaching), high coloration efficiency at lambda = 1000 nm (80.5 cm(2) C-1), and excellent cycle stability. The strategy of preparing a WO3 film with controllable crystallinity by a simple magnetron sputtering method presents an innovative direction to obtain high-performance WO3 electrochromic materials applied in the fields of smart windows, spacecraft thermal control, and infrared camouflage.
机译:在该研究中,通过射频磁控溅射制备了具有可控结晶度的WO3膜。具有约400nm厚度和可控结晶度的WO3薄膜不仅具有无定形WO3具有大透射率调制和短开关响应时间的优点,而且具有结晶WO3的突出循环稳定性。因此,该WO3薄膜具有卓越的电致变色性能,包括在近红外线状态下的大透射率调制(在λ= 1000nm处为72.5%),短着色/漂白开关响应时间(用于着色和3.0秒,用于漂白为3.0秒),高着色效率在Lambda = 1000nm(80.5cm(2)C-1),以及出色的循环稳定性。通过简单的磁控溅射法制备具有可控结晶度的WO3膜的策略提出了一种创新的方向,以获得施加在智能窗口,航天器热控制和红外伪装领域的高性能WO3电致变色材料。

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