CLARITY: Centre for Sensor Web Technologies, National Centre for Sensor Research, School of Chemical Sciences, Dublin City University, Dublin, 9, Ireland.
Lab Chip. 2010 Jan 21;10(2):195-201. doi: 10.1039/b914709h. Epub 2009 Nov 11.
We present the fabrication, characterisation and performance of four novel ionic liquid polymer gels (ionogels) as photo-actuated valves incorporated into micro-fluidic manifolds. The ionogels incorporate benzospiropyran units and phosphonium-based ionic liquids. Each ionogel is photo-polymerised in situ in the channels of a poly(methyl methacrylate) micro-fluidic device, generating a manifold incorporating four different micro-valves. The valves are actuated by simply applying localised white light irradiation, meaning that no physical contact between the actuation impulse (light) and the valve structure is required. Through variation of the composition of the ionogels, each of the micro-valves can be tuned to open at different times under similar illumination conditions. Therefore, flows through the manifold can be independently controlled by a single light source. At present, the contraction process to open the channel is relatively rapid (seconds) while the recovery (expansion) process to re-close the channel is relatively slow (minutes), meaning that the valve, in its current form, is better suited for single-actuation events.
我们介绍了四种新型离子液体聚合物凝胶(离聚物凝胶)的制造、表征和性能,这些凝胶作为光致动阀被整合到微流控流路中。这些离聚物凝胶中含有苯并螺吡喃单元和基于鏻的离子液体。每个离聚物凝胶都在聚甲基丙烯酸甲酯微流控器件的通道中就地光聚合,生成一个包含四个不同微阀的流路。通过简单地施加局部白光照射,这些阀可以被致动,这意味着在阀结构和致动脉冲(光)之间不需要物理接触。通过改变离聚物凝胶的组成,可以调整每个微阀在相似的照明条件下在不同的时间打开。因此,通过单个光源可以独立控制流路中的流量。目前,打开通道的收缩过程相对较快(秒级),而重新关闭通道的恢复(膨胀)过程相对较慢(分钟级),这意味着在目前的形式下,该阀更适合单次致动事件。