Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session B58: Stick, Slip, and Interfacial Dynamics in Soft Systems
11:15 AM–2:15 PM,
Monday, March 5, 2018
LACC
Room: Petree Hall C
Sponsoring
Unit:
GSOFT
Chair: Justin Burton, Emory Univ
Abstract ID: BAPS.2018.MAR.B58.4
Abstract: B58.00004 : Interfacial slip and flows in nanotubes
1:03 PM–1:39 PM
Presenter:
Lyderic Bocquet
(Physics Department, Ecole Normale Superieure and CNRS)
Author:
Lyderic Bocquet
(Physics Department, Ecole Normale Superieure and CNRS)
In this presentation I will review the main physical mechanisms underlying hydrodynamic slippage, as well as the various experimental results obtained in this domain. I will in particular discuss our recent experimental efforts to measure the transport and permeability of individual nanotubes [2,3]. Our experiments reveal diameter-dependent surface slippage in carbon nanotubes, with giant flow enhancements in the smallest tubes [3]. In contrast, their boron-nitride analogues, which have the same crystalinity as CNT, but are electronically different, exhibit no slippage. This points to a hitherto not appreciated link between hydrodynamic flow and the electronic structure of the confining material.
[1] « Flows in one-dimensional and two-dimensional carbon nanochannels: Fast and curious», M. Majumder, A. Siria, L. Bocquet, MRS Bulletin, April 2017.
[2] « Giant osmotic energy conversion measured in a single transmembrane boron-nitride nanotube », A. Siria, P. Poncharal, A.-L. Biance, R. Fulcrand, X. Blase, S. Purcell, and L. Bocquet, Nature 494, 455-458 (2013).
[3] «Massive radius-dependent flow slippage in single carbon nanotubes », E. Secchi, S. Marbach, A. Niguès, D. Stein, A. Siria and L. Bocquet, Nature 537 210 (2016).
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.B58.4
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