Laboratory of Nano-Enabled Packaging & Safety, Department of Packaging, Yonsei University, 1 Yonseidaegil, Wonju-si, Gangwon-do 26493, Republic of Korea.
Laboratory of Nano-Enabled Packaging & Safety, Department of Packaging, Yonsei University, 1 Yonseidaegil, Wonju-si, Gangwon-do 26493, Republic of Korea.
Int J Biol Macromol. 2019 Nov 1;140:91-97. doi: 10.1016/j.ijbiomac.2019.08.055. Epub 2019 Aug 7.
Herein, an optical colorimetric sensor based on photonic cellulose nanocrystals (CNCs) was successfully developed to offer a convenient approach for measuring the qualitative index of high humidity (>85% RH). The addition of monovalent electrolyte (0.11 wt% NaCl) to CNC suspension before gelation enabled CNC film to bear consistent pinkish color, which is far better to readily reflect the visible color appeared as the pitch increases by water uptake. Further study of virtual reality simulation revealed that the increase of ambient humidity alters the color of photonic CNC film to be sufficiently observable either by optical instruments or human eyes. Under polarized optical microscope, CNC films appeared initially green and gradually turned to red color that is in agreement with red shift in UV-Vis absorption spectrum. Whereas, the reflected color change from pinkish to bluish was well-recognized by human eyes indicating photonic CNC is capable of being an effective colorimetric indicator. In a variable circumstance of low and high humidity, consecutive cycle test showed that the as-prepared indicator fully recovered to the original color in 30 min with 99.8% colorimetric response value. This film can be potentially used for an accurate and reversible humidity optical indicator in intelligent packaging for products that undergo deterioration along with high moisture, e.g., pharmaceutical products, cereals and grain seeds, and electronic parts, to monitor the quality during export or storage.
在此,成功开发了一种基于光子纤维素纳米晶体(CNC)的光学比色传感器,为测量高湿度(>85%RH)的定性指标提供了一种便捷的方法。在凝胶化之前将单价电解质(0.11wt%NaCl)添加到 CNC 悬浮液中,使 CNC 薄膜呈现出一致的粉红色,这使得水合作用引起的 pitches 增加时更容易反映出可见颜色。虚拟现实模拟的进一步研究表明,环境湿度的增加会改变光子 CNC 薄膜的颜色,无论是通过光学仪器还是人眼都可以充分观察到。在偏光显微镜下,CNC 薄膜最初呈绿色,逐渐变为红色,这与紫外-可见吸收光谱的红移一致。然而,人眼可以识别出从粉红色到蓝色的反射颜色变化,这表明光子 CNC 能够成为一种有效的比色指示剂。在低湿度和高湿度的变化环境中,连续循环测试表明,所制备的指示剂在 30 分钟内完全恢复到原始颜色,比色响应值为 99.8%。这种薄膜可以潜在地用于智能包装中的准确和可逆湿度光学指示剂,用于监测出口或储存过程中易受高水分影响变质的产品的质量,例如药品、谷物和粮食种子以及电子部件。