Piruska Aigars, Nikcevic Irena, Lee Se Hwan, Ahn Chong, Heineman William R, Limbach Patrick A, Seliskar Carl J
Department of Chemistry, University of Cincinnati, PO Box 210172, Cincinnati, OH 45221, USA.
Lab Chip. 2005 Dec;5(12):1348-54. doi: 10.1039/b508288a. Epub 2005 Nov 1.
Plastic materials have the potential to substitute for glass substrates used in microfluidic and microTAS systems adding flexibility in materials' choices. Optical quality plastic materials with a low autofluorescence are crucial for optimal detection by fluorescence and laser induced fluorescence techniques. This paper summarizes a series of optical investigations on commercially available plastic chip materials (PMMA, COC, PC, PDMS) and chips made from those materials. Intrinsic optical constants of plastic materials-refractive index for bulk materials-determined by spectroscopic ellipsometry and transmission spectroscopy in the visible range are presented. The laser-induced autofluorescence of materials and chips was assessed at four laser wavelengths, namely, 403, 488, 532 and 633 nm. Considerable bleaching of the autofluorescence was observed under continuous laser illumination. Overall, the longer wavelength laser excitation sources yielded less autofluorescence. PDMS exhibited the least autofluorescence and was comparable to BoroFloat glass. In all cases, chips exhibited slightly higher autofluorescence than the raw plastic materials from which they had been made.
塑料材料有潜力替代微流控和微型全分析系统中使用的玻璃基板,增加材料选择的灵活性。具有低自发荧光的光学质量塑料材料对于通过荧光和激光诱导荧光技术进行最佳检测至关重要。本文总结了对市售塑料芯片材料(聚甲基丙烯酸甲酯、环烯烃共聚物、聚碳酸酯、聚二甲基硅氧烷)以及由这些材料制成的芯片进行的一系列光学研究。给出了通过光谱椭偏仪和可见光谱范围内的透射光谱测定的塑料材料的本征光学常数——块状材料的折射率。在四个激光波长,即403、488、532和633nm下评估了材料和芯片的激光诱导自发荧光。在连续激光照射下观察到自发荧光有相当程度的漂白。总体而言,波长较长的激光激发源产生的自发荧光较少。聚二甲基硅氧烷的自发荧光最少,与硼硅酸盐玻璃相当。在所有情况下,芯片的自发荧光都略高于制成它们的原始塑料材料。