首页> 外文会议>2011 IEEE 24th International Conference on Micro Electro Mechanical Systems >Fabrication and characterization of Parylene C-caulked PDMS for low-permeable microfluidics
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Fabrication and characterization of Parylene C-caulked PDMS for low-permeable microfluidics

机译:低渗透性微流体聚对二甲苯C-嵌缝PDMS的制备与表征

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This paper proposed a simple and effective fabrication method of Parylene C-caulked PDMS (pcPDMS) for low-permeability required microfluidics applications. Parylene C was deposited into PDMS to caulk the permeable sites and then the over-deposited Parylene C on top of PDMS surface was etched off by oxygen plasma. A buffered hydro-fluoride acid treatment was adopted to recover the over-oxygen-plasma-treated PDMS surface for the following pcPDMS-pcPDMS bonding. Scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS) were used to characterize the Parylene C caulked status in the PDMS matrix. Dynamic diffusions of Rhodamine B inside the native PDMS and the pcPDMS were experimentally compared. The preliminary results indicated that the proposed pcPDMS can dramatically suppress the diffusion of small molecules into the PDMS matrix, making it suitable for corresponding microfluidics applications.
机译:本文针对低渗透性要求的微流控应用,提出了一种简便有效的聚对二甲苯C嵌塞PDMS(pcPDMS)的制备方法。将聚对二甲苯C沉积到PDMS中以填满渗透性部位,然后通过氧等离子体蚀刻掉PDMS表面顶部的过量沉积的聚对二甲苯C。对于随后的pcPDMS-pcPDMS结合,采用了缓冲的氢氟酸处理来恢复经过氧等离子体处理的PDMS表面。使用扫描电子显微镜(SEM)和X射线光电子能谱(XPS)来表征PDMS基质中聚对二甲苯C的嵌缝状态。实验比较了罗丹明B在天然PDMS和pcPDMS内部的动态扩散。初步结果表明,所提出的pcPDMS可以显着抑制小分子向PDMS基质中的扩散,使其适合相应的微流体应用。

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