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Study of humidity-responsive behavior in chiral nematic cellulose nanocrystal films for colorimetric response

机译:色谱型纤维素纳米晶体湿度响应性的比例反应研究

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摘要

This study focuses on the preparation and characterization of an iridescent chiral nematic cellulose nanocrystal (CNC) film in relation to their use as a humidity-responsive material. A free-standing film with Bragg reflection was successfully prepared. Thermogravimetric analysis demonstrated gradual thermal transitions with two major weight loss regions, while the crystallinity index obtained from X-ray diffraction method was about 78%, implying the presence of disordered regions. A scanning electron microscope confirmed the orientation of CNCs in a chiral nematic pattern with a pitch in the wavelengths of visible light. A dynamic vapor sorption study showed that water vapor can penetrate into the CNC film, leading to an increase of overall mass of up to 20% at 95% RH. The moisture sorption and desorption rates of the CNC film were faster at higher humidity (80% RH). The exposure of CNC film to elevated humidity was simulated to investigate the effect of humidity on their optical semaphore. As the humidity increased, the complementary color was red-shifted upward by about 60-100 nm, which was observable to the naked eye. This is potentially explained by the swelling of the nanocrystals and the expansion of the interspace between the quasi-nematic layers of the CNCs.
机译:该研究侧重于呈虹膜手性纤维素纳米晶体(CNC)膜的制备和表征,其用作湿度响应材料的用途。成功准备了一个带布拉格反思的独立电影。热重分析表明,具有两个主要减肥区的逐渐热转变,而从X射线衍射方法获得的结晶度指数约为78%,暗示存在无序区域的存在。扫描电子显微镜通过在可见光波长的波长的音调中确认了CNC的取向。动态蒸汽吸附研究表明,水蒸气可以渗透到CNC膜中,导致在95%RH下的总质量增加至多20%。 CNC膜的水分吸附和解吸速率在较高湿度(80%RH)下更快。模拟CNC膜暴露于升高的湿度,以研究湿度对其光学信号量的影响。随着湿度的增加,互补颜色向上向上换档约60-100nm,这对于肉眼可观察到。这可能是通过纳米晶体的溶胀和CNCs的准列谱层之间的间隙的膨胀来解释。

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