Micro-fluidic platforms have been conferred with inherent optical sensing capabilities by coating the walls of micro-fluidic channels or micro-capillaries with stimuli-responsive materials. These adaptive materials respond optically to environmental stimuli, such as changes in pH, solvent polarity, the presence of certain metal ions and light. This approach confers sensing capabilities along the entire length of the coated micro-channel or micro-capillary. Adaptive coatings based on two types of materials are presented:udud1. Conductive polymer polyaniline - The optical properties of these coatings respond to changes in the pH of the solution that is passing through the micro- channel or micro-capillary, and therefore can be used for dynamic pH monitoring (pH 2-8) or for aqueous ammonia sensing.udud2. Photochromic spiropyrans - Photoswitchable coatings based on spiropyran are used to photo-detect solvents of different polarity when passing through the micro-capillary in continuous flow. This sensing behaviour can be switched on/off remotely using light.ududFinally, it is reported, for the first time, the potential of using spiropyran as a pH pump in fluidic channels for photo-activated chemopropulsion of organic droplets and the solvato-morphological control of self-assembled micro-structures based on spiropyran.
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机译:通过用刺激响应材料覆盖微流体通道或微毛细管的壁,微流体平台具有固有的光学传感功能。这些适应性材料对环境刺激具有光学响应,例如pH值,溶剂极性,某些金属离子和光的存在。这种方法赋予涂层微通道或微毛细管整个长度的传感能力。介绍了基于两种类型的材料的自适应涂层: ud ud1。导电聚合物聚苯胺-这些涂层的光学特性对通过微通道或微毛细管的溶液pH值的变化有反应,因此可用于动态pH值监测(pH 2-8)或水性氨感测。 ud ud2。光致变色螺吡喃-基于螺螺吡喃的可光转换涂料在连续流动通过微毛细管时用于光检测不同极性的溶剂。最后,首次报道了在流体通道中使用螺吡喃作为pH泵进行光敏化有机液滴化学溶剂化和溶剂化反应的潜力,这是首次报道。螺吡喃的自组装微结构的形态控制
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