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Microfabrication (hot-embossing) of COC microfluidic devices: Effect of norbornene content on replication fidelity and surface modification by UV- photografting

机译:COC微流体装置的微制造(热压花):降冰片烯含量对通过紫外线 - 摄影的复制保真度和表面改性的影响

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The fabrication of polymer based microfluidic devices using the hot embossing technique and their surface modification for easy fluid flow through the devices has been a growing field of research. During hot embossing, the replication fidelity on polymer substrate not only depends on the processing parameters such as temperature, pressure and time but also on their chemical structure which affects their thermo-dependent viscoelastic properties. For copolymers such as cyclic olefin copolymer (COC) which comprises ethylene and norbornene units, such properties depend on their relative ethylene and norbornene content. We report in this paper, a systematic study of replication fidelity and surface modification on COC polymer with varying norbornene content from 65 to 82 wt%. Replication fidelity which includes the surface morphology and cross-section profiles of the microchannel were characterized using SEM and Confocal microscope respectively. The modified surface was evaluated using Fourier transform infrared spectroscopy (FTIR spectroscopy) and water contact angle measurement. It was observed that in hot embossing, higher norbornene content contributed to good replication fidelity at identical experimental conditions. Furthermore, it was observed that with increase in norbornene content, the grafting efficiency decreases resulting in poor surface modification.
机译:使用热压花技术的聚合物基微流体装置的制造及其通过器件轻松流体流动的表面改性是一种日益增长的研究领域。在热压花期间,聚合物基板上的复制保真度不仅取决于加工参数,例如温度,压力和时间,还依赖于影响其热依赖性粘弹性的化学结构。对于包含乙烯和降冰片烯单元的环状烯烃共聚物(COC)的共聚物,这些性质取决于它们的相对乙烯和降冰片烯含量。我们本文报告了对COC聚合物的复制保真度和表面改性的系统研究,具有不同的降冰片烯含量为65-82wt%。包括微通道的表面形态和横截面轮廓的复制保真性分别使用SEM和共聚焦显微镜表征了微通道的横截面轮廓。使用傅里叶变换红外光谱(FTIR光谱)和水接触角测量评估改性表面。观察到在热压花中,在相同的实验条件下,降低的降冰片烯含量促成了良好的复制保真度。此外,观察到,随着降冰片烯含量的增加,接枝效率降低导致表面改性差。

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