Literature DB >> 33589696

Eco friendly nanofluidic platforms using biodegradable nanoporous materials.

Sungmin Park1, Seongjun Hong1, Junsuk Kim1, Seok Young Son1, Hyomin Lee2, Sung Jae Kim3,4,5.   

Abstract

Splendid advancement of micro/nanofluidic researches in the field of bio- and chemical-analysis enables various ubiquitous applications such as bio-medical diagnostics and environmental monitoring, etc. In such devices, nanostructures are the essential elements so that the nanofabrication methods have been major issues since the last couple of decades. However, most of nanofabrication methods are sophisticated and expensive due to the requirement of high-class cleanroom facilities, while low-cost and biocompatible materials have been already introduced in the microfluidic platforms. Thus, an off-the-shelf and biodegradable material for those nanostructures can complete the concept of an eco-friendly micro/nanofluidic platform. In this work, biodegradable materials originated from well-known organisms such as human nail plate and denatured hen egg (albumen and yolk) were rigorously investigated as a perm-selective nanoporous membrane. A simple micro/nanofluidic device integrated with such materials was fabricated to demonstrate nanofluidic phenomena. These distinctive evidences (the visualization of ion concentration polarization phenomenon, ohmic/limiting/over-limiting current behavior and surface charge-governed conductance) can fulfill the requirements of functional nanostructures for the nanofluidic applications. Therefore, while these materials were less robust than nano-lithographically fabricated structures, bio-oriented perm-selective materials would be utilized as a one of key elements of the biodegradable and eco friendly micro/nanofluidic applications.

Entities:  

Year:  2021        PMID: 33589696      PMCID: PMC7884701          DOI: 10.1038/s41598-021-83306-w

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


  65 in total

1.  Surface-charge-governed ion transport in nanofluidic channels.

Authors:  Derek Stein; Maarten Kruithof; Cees Dekker
Journal:  Phys Rev Lett       Date:  2004-07-15       Impact factor: 9.161

2.  On the propagation of concentration polarization from microchannel-nanochannel interfaces. Part I: Analytical model and characteristic analysis.

Authors:  Ali Mani; Thomas A Zangle; Juan G Santiago
Journal:  Langmuir       Date:  2009-04-09       Impact factor: 3.882

3.  Capillarity at the nanoscale.

Authors:  Joost W van Honschoten; Nataliya Brunets; Niels R Tas
Journal:  Chem Soc Rev       Date:  2010-02-02       Impact factor: 54.564

4.  Nanofluidics in chemical analysis.

Authors:  Aigars Piruska; Maojun Gong; Jonathan V Sweedler; Paul W Bohn
Journal:  Chem Soc Rev       Date:  2009-10-23       Impact factor: 54.564

Review 5.  Microfluidic lab-on-a-chip platforms: requirements, characteristics and applications.

Authors:  Daniel Mark; Stefan Haeberle; Günter Roth; Felix von Stetten; Roland Zengerle
Journal:  Chem Soc Rev       Date:  2010-01-25       Impact factor: 54.564

Review 6.  DNA manipulation, sorting, and mapping in nanofluidic systems.

Authors:  Stephen L Levy; Harold G Craighead
Journal:  Chem Soc Rev       Date:  2010-01-12       Impact factor: 54.564

7.  Nanofluidics, from bulk to interfaces.

Authors:  Lydéric Bocquet; Elisabeth Charlaix
Journal:  Chem Soc Rev       Date:  2009-12-01       Impact factor: 54.564

8.  Non-planar nanofluidic devices for single molecule analysis fabricated using nanoglassblowing.

Authors:  Elizabeth A Strychalski; Samuel M Stavis; Harold G Craighead
Journal:  Nanotechnology       Date:  2008-06-17       Impact factor: 3.874

9.  Field effect nanofluidics.

Authors:  Shaurya Prakash; A T Conlisk
Journal:  Lab Chip       Date:  2016-10-05       Impact factor: 6.799

Review 10.  Nanofluidics in two-dimensional layered materials: inspirations from nature.

Authors:  Jun Gao; Yaping Feng; Wei Guo; Lei Jiang
Journal:  Chem Soc Rev       Date:  2017-08-29       Impact factor: 54.564

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