Bridgeman Devon, Corral Javier, Quach Ashley, Xian Xiaojun, Forzani Erica
Center for Bioelectronics and Biosensors, Biodesign Institute and ‡Fulton School of Engineering Matter, Transport, and Energy, Arizona State University , Tempe, Arizona 85287, United States.
Langmuir. 2014 Sep 9;30(35):10785-91. doi: 10.1021/la502593g. Epub 2014 Aug 27.
Using supported ionic-liquid membrane (SILM)-inspired methodologies, we have synthesized, characterized, and developed a humidity sensor by coating a liquid composite material onto a hygroscopic, porous substrate. Similar to pH paper, the sensor responds to the environment's relative humidity and changes color accordingly. The humidity indicator is prepared by casting a few microliters of low-toxicity reagents on a nontoxic substrate. The sensing material is a newly synthesized liquid composite that comprises a hygroscopic medium for environmental humidity capture and a color indicator that translates the humidity level into a distinct color change. Sodium borohydride was used to form a liquid composite medium, and DenimBlu30 dye was used as a redox indicator. The liquid composite medium provides a hygroscopic response to the relative humidity, and DenimBlu30 translates the chemical changes into a visual change from yellow to blue. The borate-redox dye-based humidity sensor was prepared, and then Fourier transform infrared spectroscopy, differential scanning calorimetry, and image analysis methods were used to characterize the chemical composition, optimize synthesis, and gain insight into the sensor reactivity. Test results indicated that this new sensing material can detect relative humidity in the range of 5-100% in an irreversible manner with good reproducibility and high accuracy. The sensor is a low-cost, highly sensitive, easy-to-use humidity indicator. More importantly, it can be easily packaged with products to monitor humidity levels in pharmaceutical and food packaging.
我们采用受支撑离子液体膜(SILM)启发的方法,通过将一种液体复合材料涂覆在吸湿多孔基材上,合成、表征并开发了一种湿度传感器。与pH试纸类似,该传感器对环境相对湿度做出响应并相应地改变颜色。湿度指示剂是通过将几微升低毒性试剂浇铸在无毒基材上制备而成。传感材料是一种新合成的液体复合材料,它包含用于捕获环境湿度的吸湿介质和将湿度水平转化为明显颜色变化的颜色指示剂。使用硼氢化钠形成液体复合介质,并使用DenimBlu30染料作为氧化还原指示剂。液体复合介质对相对湿度产生吸湿响应,DenimBlu30将化学变化转化为从黄色到蓝色的视觉变化。制备了基于硼酸盐-氧化还原染料的湿度传感器,然后使用傅里叶变换红外光谱、差示扫描量热法和图像分析方法来表征化学成分、优化合成并深入了解传感器的反应性。测试结果表明,这种新型传感材料能够以不可逆的方式检测5-100%范围内的相对湿度,具有良好的重现性和高精度。该传感器是一种低成本、高灵敏度、易于使用的湿度指示剂。更重要的是,它可以很容易地与产品包装在一起,以监测药品和食品包装中的湿度水平。