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Extended-nano fluidic systems for analytical and chemical technologies
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Extended-nano fluidic systems for analytical and chemical technologies

Kazuma Mawatari, Takehiko Tsukahara, Yasuhiko SugiiTakehiko Kitamori
Nanoscale, 卷.2(9), 頁碼.1588-1595
09/2010
PMID: 20820689

摘要

Materials Science (all)
Recently, integrated chemical systems have been further downscaled to the 10 -10 nm scale, which we call extended-nano space. The extended-nano space is a transient space from single molecules to bulk condensed phase, and fluidics and chemistry have not been explored. One of the reasons is the lack of research tools for the extended-nano space, because the space locates the gap between the conventional nanotechnology (10 -10 nm) and microtechnology (>1μm). For these purposes, basic methodologies were developed such as nanofabrication, fluidic control, detection methods, and surface modification methods. Especially, fluidic control is one of the important methods. By utilizing the methodologies, new specific phenomena in fluidics and chemistry were reported, and the new phenomena are increasingly applied to unique applications. Microfluidic technologies are now entering new research phase combined with the nanofluidic technologies. In this review, we mainly focus on pressure-driven or shear-driven extended-nano fluidic systems and illustrate the basic nanofluidics and the representative applications. © 2010 The Royal Society of Chemistry.

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