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Transmission Spectrum of PDMS in 4-1 μm Mid-IR Range for Characterization of Protein Structure

机译:4-1μm中红外IR范围中PDMS的透射光谱进行蛋白质结构的表征

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Infrared spectroscopy has been an important tool to characterize secondary structure of proteins for decades. Recent advances in the miniaturization of devices for biochemical assays have embraced poly(dimethylsiloxane) as material. However, the Infrared transmission characteristics of PDMS, especially in the form of sub-mm film, are not well understood. This hampers utilization of microdevices for protein optical identification. This paper characterizes mid-infrared transmission of Dow Corning Sylgard 184 using Fourier transform infrared spectrometer. Effects of various fabrication parameters are considered, particularly the mixing ratio of base to curing agent of the pre-polymer. For typical mixing ratio of 10:1, spectral results showed two viable transmission bands with transmittance above 50%: 2500-2194 cm~(-1) and 2122-1980 cm~(-1), where the former band exhibits higher and near-constant transmittance. The transmittance is found to depend strongly on the mixing ratio; lower mixing ratio results in higher transmittance. Maximum transmittance of about 95% is found between 2490-2231 cm~(-1) with mixing ratio of 8:1. This wavenumbers range appears promising to characterize IR properties of suitable biomolecules using PDMS-based microdevices.
机译:红外光谱是几十年来表征蛋白质二次结构的重要工具。生物化学测定装置的小型化的最新进展具有将聚(二甲基硅氧烷)作为材料。然而,PDM的红外传输特性,特别是以亚mm膜的形式,不太了解。这种妨碍利用MicroDevice进行蛋白质光学识别。本文使用傅里叶变换红外光谱仪表征了Dow Corning Sylgard 184的中红外传输。考虑各种制造参数的效果,特别是碱与预聚物的固化剂的混合比。出于典型的混合比为10:1,光谱结果显示出两个可行的传动带,透射率高于50%:2500-2194cm〜(-1)和2122-1980cm〜(-1),其中前频段更高且近 - 透射透射率。发现透射率依赖于混合比率;较低的混合比导致透射率较高。大约95%的最大透射率在2490-2231cm〜(-1)之间,混合比为8:1。这种波数范围似乎有望使用基于PDMS的MicrodeTeces来表征合适的生物分子的IR性质。

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