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Absorption and electrochromic modulation of near-infrared light: realized by tungsten suboxide

机译:吸收和电致变色的调制近红外光:实现了钨一氧化二

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In the present study, needle-like tungsten suboxide W18O49 nanocrystals were fabricated as the optical active substance to realize the aim of optical control of near-infrared light. The W18O49 nanocrystals were selected in this regard due to their unique optical performance. As revealed by the powder absorption result, the needle-like W18O49 nanocrystals show strong and wide photoabsorption in the entire near infrared region of 780-2500 nm, from which thin films with the W18O49 nanocrystal coating thus benefits and can strongly shield off almost all near infrared irradiation, whereas transmitting the majority of visible light. To make it more tunable, the W18O49 nanocrystals were finally assembled onto an ITO glass via the layer-by-layer strategy for later electrochromic investigation. The nanostructured architectures of the W18O49 nanocrystal electrochromic films exhibit high contrast, faster switching response, higher coloration efficiencies (150 cm(2) C-1 at 650 nm and 255 cm(2) C-1 at 1300 nm), better long-term redox switching stability (reversibility of 98% after 500 cycles) and wide electrochromic spectrum coverage of both the visible and infrared regions.
机译:在目前的研究中,针状的钨一氧化二W18O49纳米晶体是捏造的光学活性物质实现的目标近红外光的光学控制。在这方面选择W18O49纳米晶体由于其独特的光学性能。揭示了粉吸收的结果,针状的W18O49纳米晶体显示强大宽光吸收在整个近红外地区的780 - 2500 nm,薄膜的W18O49纳米晶体涂层和这样的好处能强烈屏蔽掉几乎所有的近红外吗辐照,而传送的大部分可见光。W18O49纳米晶体终于组装上一个ITO玻璃通过分层技术的策略后来电致变色的调查。W18O49纳米结构纳米晶体电致变色的电影表现出高相反,转换反应更快,更高着色效率(150厘米(2)颈- 1在650海里255厘米(2)颈- 1在1300海里),更好的长期氧化还原切换稳定(98%的可逆性后宽500周期)和电致变色的光谱的可见光和报道红外区域。

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