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Mode and polarization state selected guided wave spectroscopy of orientational anisotrophy in model membrane cellulosic polymer films: relevance to lab-on-a-chip

机译:模型膜纤维素聚合物膜中取向侧视胶质术的模式和偏振态选定引导波谱:与实验室芯片的相关性

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Orientation anisotropies in structural properties relevant to the use of cellulosic polymers as membranes for lab-on-chips were investigated for cellulose acetate (CA) and regenerated cellulose (RC) films deposited as slab waveguides. Anisotropy was probed with mode and polarization state selected guided wave Raman spectroscopy. CA exhibits partial chain orientation in the plane of the film, and this orientation is independent of sample substrate and film preparation conditions. RC films also show in-plane anisotropy, where the hexose sugar rings lie roughly in the plane of the film. Explanations are given of the role of artifacts in interpreting waveguide Raman spectra, including anomalous contributions to Raman spectra that arise from deviations from right angle scattering geometry, mode-dependent contributions to longitudinal electric field components and TE?TM mode conversion. We explore diffusion profiles of small molecules in cellulosic films by adaptations of an inverse-Wentzel-Kramers-Brillouin (iWKB) recursive, noninteger virtual mode index algorithm. Perturbations in the refractive index distribution, n(z), are recovered from the measured relative propagation constants, neffective,m, of the planar waveguide. The refractive index distribution then yields the diffusion profile.
机译:研究了与使用纤维素聚合物的结构性能的方向各向异性,作为用于芯片的膜的膜,用于纤维素(CA)和再生纤维素(RC)薄膜作为平板波导。用模式和偏振态选择引导波拉曼光谱法探测各向异性。 CA在薄膜的平面中表现出部分链取向,这种取向与样品基材和薄膜制备条件无关。 RC薄膜还显示出面内各向异性,其中六叶糖糖环大致位于薄膜的平面中。给出了伪像在解释波导拉曼光谱中的作用,包括从从右角散射几何形状,模式相关贡献与纵向电场分量和TM模式转换的偏差产生的拉曼光谱的异常贡献。通过改编逆舷 - 克拉姆斯 - 布里渊(IWKB)递归,非整数虚拟模式索引算法,探讨纤维素膜中小分子的扩散谱。从平面波导的测量的相对传播常数,NEFFECTIVE,M的折射率分布,N(Z)中的扰动。然后折射率分布产生扩散曲线。

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