Ion Transportation Control in Nanofluidics through Geometrically Controlled Nanoparticle Assembly

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초록

Research interest on transportation of ion through nanoscale geometries has increased recently due to its emerging applications such as energy harvesting, biomolecule concentration/separation, water purification, chemical mixing etc. Besides of application studies using ion transportation, the fundamental research for revealing and understanding mechanism has been carried out by many research groups. However, until so far, the configuration of microplatform has relied on thin nanochannels based on silicon micromachining. In this paper, we present a new method that enables to control ion transportation with high ionic flux, which was intrinsically impossible for typical thin nanochnnels. Three dimensional nanochannel networks between two microchannels are created by geometrically controlled self-assembled nanoparticles. This assembled networks has a role as ion-selective membranes with high ionic selectivity and low fluidic resistance, which was trade-off relation heretofore. Electrical characteristics under various geometrical changes are studied and as a promising application, clean microenergy generation by reverse electrodialysis is presented using the proposed system.

키워드

Ion transportationNanofluidicsNanoparticlesIon-selective membraneReverse electrodialysisCONCENTRATION GRADIENTGENERATION
제목
Ion Transportation Control in Nanofluidics through Geometrically Controlled Nanoparticle Assembly
저자
Choi, EunpyoKwon, KilsungKim, DaejoongPark, Jungyul
DOI
10.1109/ICCAS.2014.6988019
발행일
2014-12-16
유형
Proceedings Paper
저널명
2014 14TH INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION AND SYSTEMS (ICCAS 2014)
페이지
345 ~ 347