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Simple fabrication of hydrophilic nanochannels using the chemical bonding between activated ultrathin PDMS layer and cover glass by oxygen plasma

机译:使用活化的超薄PDMS层和盖玻片之间的化学键通过氧等离子体简单地制造亲水性纳米通道

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摘要

This study describes a simple and low cost method for fabricating enclosed transparent hydrophilic nanochannels by coating low-viscosity PDMS (monoglycidyl ether-terminated polydimethylsiloxane) as an adhesion layer onto the surface of the nanotrenches that are molded with a urethane-based UV-curable polymer, Norland Optical Adhesive (NOA 63). In detail, the nanotrenches made of NOA 63 were replicated from a Si master mold and coated with 6 nm thick layer of PDMS. These nanotrenches underwent an oxygen plasma treatment and finally were bound to a cover glass by chemical bonding between silanol and hydroxyl groups. Hydrophobic recovery that is observed in the bulk PDMS was not observed in the thin film of PDMS on the mold and the PDMS-coated nanochannel maintained its surface hydrophilicity for at least one month. The potentials of the nanochannels for bioapplications were demonstrated by stretching λ-DNA (48,502 bp) in the channels. Therefore, this fabrication approach provides a practical solution for the simple fabrication of the nanochannels for bioapplications.
机译:这项研究描述了一种简单而低成本的方法,该方法是通过将低粘度PDMS(单缩水甘油醚封端的聚二甲基硅氧烷)作为粘附层涂覆到纳米沟槽的表面上来制造封闭的透明亲水纳米通道,该沟槽由聚氨酯基UV固化聚合物模制而成,Norland光学胶粘剂(NOA 63)。详细地,从Si主模复制由NOA 63制成的纳米沟槽,并涂覆6 nm厚的PDMS层。这些纳米沟槽经过氧等离子体处理,最后通过硅烷醇和羟基之间的化学键结合到防护玻璃上。在模具上的PDMS薄膜中未观察到在整体PDMS中观察到的疏水性恢复,并且涂覆PDMS的纳米通道至少保持了其表面亲水性一个月。通过在通道中拉伸λ-DNA(48,502 bp),证明了纳米通道在生物应用中的潜力。因此,该制造方法为生物应用的纳米通道的简单制造提供了实用的解决方案。

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