Department of Marine Engineering, Dalian Maritime University, Dalian, 116026, China.
Department of Mechanical and Mechatronics Engineering, University of Waterloo, Waterloo, ON, N2L 3G1, Canada.
Analyst. 2022 Aug 8;147(16):3723-3731. doi: 10.1039/d2an00375a.
Building an optical filtration function into a microfluidic chip is a promising way of simplifying the optical detection system of a microfluidic device. In this paper, a PDMS microfluidic chip filter that is capable of transmitting chlorophyll fluorescence and blocking interfering light in the visible wavelength range was developed for living algae detection with a smartphone. The chip was fabricated by sealing a layer of crystal violet solution in a PDMS layer on the top of the Sudan II-doped PDMS slab, which has a straight microchannel. Optimum dye concentrations and thicknesses for the crystal violet solution layer and Sudan II-doped PDMS slab were investigated and determined by spectrum measurements. It was found that the cut-on range of this integrated microfluidic chip is extended to about 625 nm and the transmittance in the chlorophyll fluorescence range (650 nm to 710 nm) is as high as 95%, when 25 mg L Sudan II-doped PDMS slab (with a 3 mm thickness) and 2 mg L crystal violet solution (with a 0.3 mm thickness) were used. Living algae detection using this chlorophyll-fluorescence-filtering PDMS microfluidic chip and a smartphone-based imaging platform was achieved, and the results compared favorably with those using a commercial filter.
在微流控芯片中构建光学滤波功能是简化微流控设备光学检测系统的一种很有前途的方法。本文开发了一种 PDMS 微流控芯片滤光片,可用于智能手机检测活藻,该滤光片可传输叶绿素荧光并阻挡可见光范围内的干扰光。该芯片通过在顶部 PDMS 层上密封一层结晶紫溶液来制造,PDMS 层上有一个直的微通道。通过光谱测量研究并确定了结晶紫溶液层和苏丹 II 掺杂 PDMS 板的最佳染料浓度和厚度。结果发现,当使用 25mg L 苏丹 II 掺杂 PDMS 板(厚度为 3mm)和 2mg L 结晶紫溶液(厚度为 0.3mm)时,集成微流控芯片的截止范围扩展到约 625nm,叶绿素荧光范围(650nm 至 710nm)的透过率高达 95%。使用这种带有基于智能手机的成像平台的叶绿素荧光滤光 PDMS 微流控芯片实现了活藻检测,结果与使用商用滤光片的结果相当。