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首页> 外文期刊>Functional materials letters >One-step hydrothermal synthesis and thermochromic properties of chlorine-doped VO_2(M) for smart window application
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One-step hydrothermal synthesis and thermochromic properties of chlorine-doped VO_2(M) for smart window application

机译:一步法水合氯掺杂VO_2(M)的热致变色性能

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The monoclinic phase of VO2 has promising application as a smart window material because it possesses a reversible metal-tosemiconductor transformation with a critical temperature of 68 degrees C. The high critical temperature must be lowered to achieve a possible application. Anion doping has been widely researched as possible doping of VO2(M) with fluorine is the main option nowadays. However, other halogen elements such as chlorine have not been investigated albeit possessing possible advantages properties. In this work, we report the use of chlorine anion as doping for VO2(M) to lower its critical temperature and to enhance its thermochromic performance. The synthesis was performed using a facile one-step hydrothermal reduction of vanadium pentoxide by hydrazine at 350-490 degrees C, using ammonium chloride as the source of the anion. The result showed that the optimum temperature to synthesize Cl-doped VO2(M) was 490 degrees C. The lowest critical temperature that can be achieved by chlorine-doped VO2(M) was at 59.9 degrees C. The thermochromic performance of Cl-doped VO2(M) was improved compared to pristine VO2(M) nanoparticle. This finding provides a novel use of chlorine-doped VO2(M) with a facile one-step hydrothermal method to synthesize chlorine-doped VO2(M) as well as the feasibility of chlorine-doped VO2(M) as a smart window material.
机译:VO2的单斜晶相具有广阔的前景,因为它具有临界温度为68摄氏度的可逆金属-半导体转变。必须降低高临界温度才能实现可能的应用。阴离子掺杂已被广泛研究,因为现今主要的选择是用氟掺杂VO2(M)。然而,尚未研究其他卤素元素,例如氯,尽管具有可能的优势特性。在这项工作中,我们报告了使用氯阴离子作为VO2(M)的掺杂剂,以降低其临界温度并增强其热致变色性能。使用氯化铵作为阴离子源,在350-490摄氏度下通过肼方便地一步一步水热还原五氧化二钒进行合成。结果表明,合成Cl掺杂VO2(M)的最佳温度为490℃。氯掺杂VO2(M)可达到的最低临界温度为59.9℃。Cl掺杂的热致变色性能与原始VO2(M)纳米颗粒相比,VO2(M)得到了改善。这一发现为掺氯的VO2(M)的一种新颖的使用方法和一种简便的一步水热法来合成掺氯的VO2(M)以及掺氯的VO2(M)作为智能窗户材料的可行性提供了一种新的方法。

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