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一种露天纳米流控工具:介孔薄膜渗透辅助的局部化学。

An Open Pit Nanofluidic Tool: Localized Chemistry Assisted by Mesoporous Thin Film Infiltration.

机构信息

Departamento de Micro y Nanotecnología, Comisión Nacional de Energía Atómica , Av. Gral. Paz, 1499 San Martín, Buenos Aires, Argentina.

INTEC (Universidad Nacional del Litoral-CONICET) Predio CCT CONICET Santa Fe , RN 168, 3000 Santa Fe, Argentina.

出版信息

ACS Appl Mater Interfaces. 2017 May 17;9(19):16679-16684. doi: 10.1021/acsami.7b03080. Epub 2017 May 5.

Abstract

Nanofluidics based on nanoscopic porous structures has emerged as the next evolutionary milestone in the construction of versatile nanodevices with unprecedented applications. However, the straightforward development of nanofluidically interconnected systems is crucial for the production of practical devices. Here, we demonstrate that spontaneous infiltration into supramolecularly templated mesoporous oxide films at the edge of a sessile drop in open air can be used to connect pairs of landmarks. The liquids from the drops can then join through the nanoporous network to guide a localized chemical reaction at the nanofluid-front interface. This method, here named "open-pit" nanofluidics, allows mixing reagents from nanofluidically connected droplet reservoirs that can be used as reactors to conduct reactions and precipitation processes. From the fundamental point of view, the work contributes to unveiling subtle phenomena during spontaneous infiltration of fluids in bodies with nanoscale dimensions such as the front broadening effect and the oscillatory behavior of the infiltration-evaporation front. The approach has distinctive advantages such as easy fabrication, low cost, and facility of scaling up for future development of ultrasensitive detection, controlled nanomaterial synthesis, and novel patterning methods.

摘要

基于纳米尺度多孔结构的纳流控技术已经成为构建具有前所未有应用前景的多功能纳米器件的下一个重要里程碑。然而,对于实际器件的生产而言,纳流控互连系统的直接开发至关重要。在这里,我们证明了在开放空气中的液滴边缘处的超分子模板介孔氧化物薄膜中自发的浸润可以用于连接成对的地标。然后,来自液滴的液体可以通过纳米多孔网络连接,以在纳流控前缘界面处引导局部化学反应。这种方法,在这里被称为“露天”纳流控,可以混合来自纳流控连接的液滴储器中的试剂,这些试剂可以用作反应器来进行反应和沉淀过程。从根本上讲,这项工作有助于揭示在具有纳米尺寸的物体中流体自发渗透过程中的微妙现象,例如前沿展宽效应和渗透-蒸发前沿的振荡行为。该方法具有易于制造、成本低以及易于扩展等独特优势,可用于未来的超灵敏检测、可控纳米材料合成和新型图案化方法的发展。

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