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Stability Of Embossed Pei-(pss-pdadmac)_(20) Multilayer Films Versus Storage Time And Versus A Change In Ionic Strength

机译:压花Pei-(pss-pdadmac)_(20)多层膜的稳定性与储存时间和离子强度的变化

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The use of microstructured films increased markedly in many areas of science and technology, notably in the design of microfluidic channels and in the design of parallel biosensing arrays. The concept of imprinting polyelectrolyte multilayer films (PEMs) has been introduced recently [C. Gao, B. Wang. J. Feng, J. Shen, Macromolecules 37 (2004) 8836]. These irreversibly imprinted films, obtained by plastic deformation, have to keep their size and shape after contact with fluids having physicochemical properties comparable to those of biological fluids in order to be used as microfluidic channels. We demonstrate herein that PEI-(PSS-PDADMAC)_(20) PEMs built-up by the spray deposition from NaCl 1 M solutions and subsequently imprinted with polydimethylsiloxane stamps keep their morphology over time (up to 9 months) when stored in the dry state. In addition the depth of the imprinted channels does not change over this time duration. When the embossed films are immersed in NaCl 0.15 M solutions, mimicking biological fluids, the depth of the imprinted channels also does not significantly change. But, when the imprinted films prepared in the presence of 1 M NaCl are subsequently dipped in a 4 M NaCl solution, partial film loss and subsequent disappearance of the imprinted channels are observed. An explanation for these findings is furnished by means of FTIR spectroscopy in the attenuated total reflection mode (ATR-FTIR). These observations should offer large opportunities for the use of the imprinted multilayer films as microfluidic channels.
机译:在许多科学和技术领域,特别是在微流体通道的设计和平行生物传感阵列的设计中,微结构膜的使用显着增加。压印聚电解质多层膜(PEM)的概念最近已经引入[C.高宝王J. Feng,J。Shen,高分子37(2004)8836]。通过塑性变形获得的这些不可逆地压印的膜,在与具有与生物流体可比的物理化学性质的流体接触后,必须保持其尺寸和形状,以便用作微流体通道。我们在此证明,PEI-(PSS-PDADMAC)_(20)PEM由NaCl 1 M溶液的喷雾沉积建立,并随后用聚二甲基硅氧烷印模压印,当保存在干燥环境中时,其随时间推移(长达9个月)保持其形态州。另外,压印通道的深度在这段时间内不会改变。当将压印的膜浸入0.15 M NaCl溶液中以模仿生物流体时,压印通道的深度也不会显着变化。但是,当随后将在1 M NaCl存在下制备的压印膜浸入4 M NaCl溶液中时,会观察到部分膜损失和压印通道的消失。通过衰减全反射模式(ATR-FTIR)中的FTIR光谱对这些发现进行了解释。这些观察结果应该为使用印迹多层膜作为微流体通道提供大量机会。

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