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Stable, Microfabricated Thin Layer Chromatography Plates Without Volume Distortion on Patterned, Carbon and Al₂O₃-primed Carbon Nanotube Forests

David S Jensen, Supriya S Kanyal, Vipul Gupta, Michael A Vail, Andrew E Dadson, Mark Engelhard, Richard Vanfleet, Robert C Davis, Matthew R Linford

J Chromatogr A. 2012 Sep 28;1257:195-203.

PMID: 22926056

Abstract:

Some of us recently described the fabrication of thin layer chromatography (TLC) plates from patterned carbon nanotube (CNT) forests via direct infiltration/coating of the CNTs by low pressure chemical vapor deposition (LPCVD) of silicon from SiH₄, followed by high temperature oxidation of the CNTs and Si. Herein we present an improved microfabrication process for the preparation of these TLC plates. First, a few nanometers of carbon and/or a thin film of Al₂O₃ is deposited on the CNTs. This method of priming the CNTs for subsequent depositions appears to be new. X-ray photoelectron spectroscopy confirms the presence of additional oxygen after carbon deposition. After priming, the plates are coated by rapid, conformal deposition of an inorganic material that does not require subsequent oxidation, i.e., by a fast pseudo atomic layer deposition (ψ-ALD) of SiO₂ from trimethylaluminum and tris(tert-butoxy)silanol. Unlike devices described previously, faithful reproduction of the features in the masks is still observed after oxidation. A bonded, amino phase on the resulting plates shows fast, highly efficient separations of fluorescent dyes (plate heights in the range of 1.6-7.7 μm). Extensive characterization of the new materials by TEM, SEM, EDAX, DRIFT, and XPS is reported. A substantially lower process temperature for the removal of the CNT scaffold is possible as a result of the already oxidized materials used.

Chemicals Related in the Paper:

Catalog Number Product Name Structure CAS Number Price
AP18166433 Tris(tert-butoxy)silanol Tris(tert-butoxy)silanol 18166-43-3 Price
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