Beijing Key Laboratory of Construction Tailorable Advanced Functional Materials and Green Applications, School of Materials Science and Engineering, Beijing Institute of Technology, Beijing, 100081, China.
Physics Department, University of Science and Technology Beijing, Beijing, 100083, China.
Sci Rep. 2017 Jul 21;7(1):6132. doi: 10.1038/s41598-017-05229-9.
Tungsten-doped VO thin films have been synthesized by a modified sol-gel process and followed by a post annealing. Vanadium pentoxide and tungstic acid as raw materials with the addition of hydrogen peroxide, concentrated hydrochloric acid (catalyst) and oxalic acid used as reducing agent were reacted in isobutanol. Finally, the uniform sol of vanadyl oxalate in isobutanol solvent was obtained as precursor. Detailed study suggested that W doped in VO introduces additional electron carriers and induces the formation of V. Post annealing under vacuum promotes the releasing of chemical stress and generates oxygen vacancies in the samples. Temperature dependent transmittance study revealed that the releasing of chemical stress and deliberately introducing oxygen vacancies in W-doped VO films have positive effects on enhancing its switching ability in the infrared transmittance as the metal-insulator transition (MIT) occurs. The largest switching of transmittance was obtained about 48% in the infrared range at 43 °C in 1.5%W doped VO films, which is significantly larger than the reported ones. The findings in this work open a new way to synthesize the novel and thermochromic W doped VO films with facility and low cost. Therefore, it has extensive application to construct smart windows and electronic devices.
掺钨 VO 薄膜通过改进的溶胶-凝胶工艺合成,并随后进行后退火处理。五氧化二钒和钨酸作为原料,加入过氧化氢、浓盐酸(催化剂)和草酸作为还原剂,在异丁醇中反应。最后,得到了均匀的草酸氧钒在异丁醇溶剂中的溶胶作为前体。详细研究表明,W 掺杂 VO 会引入额外的载流子,并诱导 V 的形成。在真空中进行后退火处理有助于释放化学应力,并在样品中产生氧空位。温度相关透光率研究表明,释放化学应力和故意在 W 掺杂 VO 薄膜中引入氧空位对增强其在红外透光率中的开关能力有积极影响,因为金属-绝缘体转变(MIT)发生了。在 1.5%W 掺杂 VO 薄膜中,在 43°C 的红外范围内获得了最大约 48%的透光率切换,明显大于已报道的值。这项工作的发现为合成新型热致变色 W 掺杂 VO 薄膜开辟了一条新途径,具有简单、低成本的特点。因此,它在构建智能窗户和电子设备方面有广泛的应用。