Literature DB >> 20590127

Ion transport in nanofluidic funnels.

John M Perry1, Kaimeng Zhou, Zachary D Harms, Stephen C Jacobson.   

Abstract

We report fabrication of nanofluidic channels with asymmetric features (e.g., funnels) that were cast in high modulus poly(dimethylsiloxane) and had well-defined geometries and dimensions. Masters used to cast the funnels were written in the negative tone resist SU-8 by electron beam lithography. Replicated funnels had taper angles of 5, 10, and 20 degrees and were 80 nm wide at the tip, 1 microm wide at the base, and 120 nm deep. The planar format permitted easy coupling of the funnels to microfluidic channels and simultaneous electrical and optical characterization of ion transport. All three designs rectified ion current, and the 5 degrees funnel exhibited the highest rectification ratio. Fluorescence measurements at the funnel base showed that an anionic probe was enriched and depleted in the high and low conductance states, respectively.

Entities:  

Year:  2010        PMID: 20590127     DOI: 10.1021/nn100692z

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  15 in total

1.  Field-effect reconfigurable nanofluidic ionic diodes.

Authors:  Weihua Guan; Rong Fan; Mark A Reed
Journal:  Nat Commun       Date:  2011-10-18       Impact factor: 14.919

2.  Resistive amplitude fingerprints during translocation of linear molecules through charged solid-state nanopores.

Authors:  Sebastian Sensale; Ceming Wang; Hsueh-Chia Chang
Journal:  J Chem Phys       Date:  2020-07-21       Impact factor: 3.488

3.  Review article: Fabrication of nanofluidic devices.

Authors:  Chuanhua Duan; Wei Wang; Quan Xie
Journal:  Biomicrofluidics       Date:  2013-03-13       Impact factor: 2.800

4.  AC Electroosmotic Pumping in Nanofluidic Funnels.

Authors:  Andrew R Kneller; Daniel G Haywood; Stephen C Jacobson
Journal:  Anal Chem       Date:  2016-06-10       Impact factor: 6.986

5.  Nanofluidic devices with two pores in series for resistive-pulse sensing of single virus capsids.

Authors:  Zachary D Harms; Klaus B Mogensen; Pedro S Nunes; Kaimeng Zhou; Brett W Hildenbrand; Indranil Mitra; Zhenning Tan; Adam Zlotnick; Jörg P Kutter; Stephen C Jacobson
Journal:  Anal Chem       Date:  2011-11-11       Impact factor: 6.986

6.  Thermally modulated biomolecule transport through nanoconfined channels.

Authors:  Lei Liu; Lizhong Zhu
Journal:  Nanoscale Res Lett       Date:  2015-04-25       Impact factor: 4.703

Review 7.  Fundamental studies of nanofluidics: nanopores, nanochannels, and nanopipets.

Authors:  Daniel G Haywood; Anumita Saha-Shah; Lane A Baker; Stephen C Jacobson
Journal:  Anal Chem       Date:  2014-12-03       Impact factor: 6.986

8.  Electroosmotic flow in nanofluidic channels.

Authors:  Daniel G Haywood; Zachary D Harms; Stephen C Jacobson
Journal:  Anal Chem       Date:  2014-11-03       Impact factor: 6.986

9.  Fabrication of Ultranarrow Nanochannels with Ultrasmall Nanocomponents in Glass Substrates.

Authors:  Hiroki Kamai; Yan Xu
Journal:  Micromachines (Basel)       Date:  2021-06-30       Impact factor: 2.891

10.  Fabrication of nanochannels with ladder nanostructure at the bottom using AFM nanoscratching method.

Authors:  Yongda Yan; Yanquan Geng; Zhenjiang Hu; Xuesen Zhao; Bowen Yu; Qi Zhang
Journal:  Nanoscale Res Lett       Date:  2014-05-06       Impact factor: 4.703

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