材料科学
单斜晶系
纳米颗粒
墨水池
退火(玻璃)
纳米技术
相变
二氧化二钒
电阻率和电导率
化学工程
薄膜
晶体结构
复合材料
结晶学
凝聚态物理
电气工程
工程类
物理
化学
作者
Mohammad Vaseem,Zhen Su,Shuai Yang,Weiwei Li,Atif Shamim
标识
DOI:10.1002/aelm.201800949
摘要
Abstract The metal–insulator transition (MIT) phase change of vanadium dioxide (VO 2 ) materials has facilitated many exciting applications. Among the various crystal phases of VO 2 , the monoclinic (M) phase is the only one that demonstrates low‐temperature (≈68 °C) MIT behavior. However, the synthesis of pure VO 2 (M) is challenging because various polymorphs, such as VO 2 (A), VO 2 (B), and VO 2 (D), are also typically formed during the process. Furthermore, to achieve pure crystalline VO 2 (M) phase, very long reaction times, up to 2–4 days, are typically required. In this work, an additional annealing step is introduced post nanoparticle preparation, which not only reduces the complete synthesis time from days to only 6 h but also removes the impure phases and helps in achieving the desired pure VO 2 (M) phase. This work covers the complete synthesis and characterization details of such as‐prepared nanoparticles. A VO 2 (M)‐nanoparticle‐based ink is formulated for the inkjet printing of films with controlled thicknesses. The inkjet‐printed films are investigated for their electrical conductivity with external stimuli such as temperature and electrical current. Finally, a fully printed antenna is devised that can change its frequency based on the different states of the VO 2 film.
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