Niu Xiaofang, Zhong Yuanbo, Chen Rui, Wang Fei, Luo Dan
Opt Express. 2017 Jun 12;25(12):13549-13556. doi: 10.1364/OE.25.013549.
Ammonia detection technologies are very important in environment monitoring. However, most existing technologies are complex and expensive, which limit the useful range of real-time application. Here, we propose a highly sensitive and selective optical sensor for detection of ammonia (NH) based on liquid crystals (LCs). This optical sensor is realized through the competitive binding between ammonia and liquid crystals on chitosan-Cu that decorated on glass substrate. We achieve a broad detection range of ammonia from 50 ppm to 1250 ppm, with a low detection limit of 16.6 ppm. This sensor is low-cost, simple, fast, and highly sensitive and selective for detection of ammonia. The proposal LC sensing method can be a sensitive detection platform for other molecule monitors such as proteins, DNAs and other heavy metal ions by modifying sensing molecules.
氨检测技术在环境监测中非常重要。然而,大多数现有技术复杂且昂贵,这限制了其在实时应用中的有效范围。在此,我们提出一种基于液晶(LC)的高灵敏度和选择性的光学传感器,用于检测氨(NH)。这种光学传感器是通过氨与修饰在玻璃基板上的壳聚糖 - 铜上的液晶之间的竞争性结合来实现的。我们实现了50 ppm至1250 ppm的宽氨检测范围,检测限低至16.6 ppm。该传感器成本低、操作简单、快速,对氨的检测具有高灵敏度和选择性。所提出的液晶传感方法通过修饰传感分子,可以成为用于检测蛋白质、DNA和其他重金属离子等其他分子的灵敏检测平台。