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利用红外光谱椭偏仪同时表征聚合物多层膜的物理、化学和热性能。

Simultaneous characterization of physical, chemical, and thermal properties of polymeric multilayers using infrared spectroscopic ellipsometry.

作者信息

Castilla-Casadiego David A, Pinzon-Herrera Luis, Perez-Perez Maritza, Quiñones-Colón Beatriz A, Suleiman David, Almodovar Jorge

机构信息

Department of Chemical Engineering, University of Puerto Rico Mayaguez, Call Box 9000, Mayaguez, PR 00681-9000, USA.

Department of Biology, University of Puerto Rico Mayaguez, Call Box 9000, Mayaguez, PR 00681-9000, USA.

出版信息

Colloids Surf A Physicochem Eng Asp. 2018 Sep 20;553:155-168. doi: 10.1016/j.colsurfa.2018.05.052. Epub 2018 May 18.

Abstract

In this study, multilayered films of polyethylenimine/poly (sodium-p-styrene sulfonate) (PEI)/(PSS) and type I collagen/heparin sodium (COL)/(HEP) were fabricated using the layer-by-layer technique, and fully characterized using Infrared Variable Angle Spectroscopic Ellipsometry (IRVASE) to simultaneously analyze the chemistry, thickness, and roughness of the multilayers with respect to changes in pH of the washing solution, and changes in temperature. Film topography and Young's modulus were obtained by atomic force microscopy (AFM) and nanoindentation. Our results show that with IRVASE it is possible to analyze the thickness of the multilayers prepared using a washing solution of pH 5, obtaining values of 71.7 nm and 40.3 nm for three bilayers of PEI/PSS and COL/HEP, respectively. Film roughness varies between multilayer systems, obtaining values of 37.76 nm for three bilayers of PEI/PSS and 33.58 nm for three bilayers of COL/HEP. Increasing the pH of the washing solution for PEI/PSS yielded thinner films that were less susceptible to thermal induced changes in film chemistry in the range of 25 - 150 °C. PEI/PSS films decreased in thickness with increasing temperature up to 75 °C, whereas above 75 °C film thickness increased. Through IRVASE, a transition temperature for the PEI/PSS multilayers was observed at 75 °C. Temperatures above 37 °C drastically alter the chemistry and the thickness of the COL/HEP multilayers indicating a possible degradation of the polymers. We obtained, through nanoindentation, a Young's modulus of 15000 kPa and 9000 kPa for 12 bilayers of PEI/PSS and COL/HEP, respectively. These results demonstrate that, using IRVASE, we can simultaneously evaluate the physical, chemical, and thermal properties of synthetic and natural multilayered polymeric films.

摘要

在本研究中,采用层层组装技术制备了聚乙烯亚胺/聚(对苯乙烯磺酸钠)(PEI)/(PSS)和I型胶原/肝素钠(COL)/(HEP)多层膜,并使用红外可变角度光谱椭偏仪(IRVASE)对其进行了全面表征,以同时分析多层膜的化学组成、厚度和粗糙度随洗涤溶液pH值以及温度变化的情况。通过原子力显微镜(AFM)和纳米压痕法获得了薄膜的形貌和杨氏模量。我们的结果表明,使用IRVASE可以分析用pH值为5的洗涤溶液制备的多层膜的厚度,对于三层PEI/PSS和COL/HEP多层膜,其厚度分别为71.7 nm和40.3 nm。薄膜粗糙度在不同多层膜体系中有所不同,三层PEI/PSS的粗糙度值为37.76 nm,三层COL/HEP的粗糙度值为33.58 nm。提高PEI/PSS洗涤溶液的pH值会使薄膜变薄,且在25 - 150 °C范围内薄膜化学性质受热诱导变化的影响较小。PEI/PSS薄膜在温度升高至75 °C之前厚度减小,而在75 °C以上薄膜厚度增加。通过IRVASE观察到PEI/PSS多层膜的转变温度为75 °C。高于37 °C的温度会显著改变COL/HEP多层膜的化学组成和厚度,表明聚合物可能发生降解。通过纳米压痕法,我们分别测得12层PEI/PSS和COL/HEP的杨氏模量为15000 kPa和9000 kPa。这些结果表明,使用IRVASE我们可以同时评估合成和天然多层聚合物薄膜的物理、化学和热性能。

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