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GrzybowskiBartosz Andrzej

Grzybowski, Bartosz A.
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Generation of micrometer-sized patterns for microanalytical applications using a laser direct-write method and microcontact printing

Author(s)
Grzybowski, BAHaag, RBowden, NWhitesides, GM
Issued Date
1998-11
DOI
10.1021/ac9807621
URI
https://scholarworks.unist.ac.kr/handle/201301/33323
Fulltext
https://pubs.acs.org/doi/10.1021/ac9807621
Citation
ANALYTICAL CHEMISTRY, v.70, no.22, pp.4645 - 4652
Abstract
This paper describes a procedure that allows the rapid generation of elastomeric masters for microcontact printing (mu CP) and for a new variant of this technique: controlled sagging microcontact printing (CS mu CP). Using a low-power laser (10 mW) operating at 532 mm, the desired pattern is ablated in a thin poly(methyl methacrylate) film doped with a dye (rhodamine B base). Subsequent pattern transfer into poly(dimethylsiloxane) (PDMS) produces an elastomeric stamp for either mu CP or CS mu CP. Printing on the surface of gold gives patterns (wires or trenches) with feature sizes as small as 5 mu m (mu CP) and trenches (but not wires) as smalll as 1 mu m (CS mu CP). The ability of this technique to generate functional systems was demonstrated with an away of gold minielectrodes printed on a silicon wafer and an array of chemical microreactors molded in PDMS. The performance of the electrode array was characterized using cyclic voltammetry with Ru(III)-(NH3)(6)Cl-3, as the substrate. Microreactors were used as vessels to grow crystals of KNO3 with a narrow dispersion in sizes and with largest dimensions of similar to 15 mu m.
Publisher
AMER CHEMICAL SOC
ISSN
0003-2700
Keyword
SELF-ASSEMBLED MONOLAYERSSYSTEMSSILICONMICROCHIPABLATION

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