Light-Activated Replication of Block Copolymer Fingerprint Patterns

A strategy to replicate fingerprint patterns formed by the self-assembly of lamella-forming block copolymer (BCP) was investigated. To accomplish this, liquid conformal layers were placed between the surfaces of a “master” BCP film and a transparent “replica” substrate that solidified and covalently...

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Published inMacromolecules Vol. 46; no. 11; pp. 4510 - 4519
Main Authors Janes, Dustin W, Thode, Christopher J, Willson, C. Grant, Nealey, Paul F, Ellison, Christopher J
Format Journal Article
LanguageEnglish
Published Washington, DC American Chemical Society 11.06.2013
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ISSN0024-9297
1520-5835
1520-5835
DOI10.1021/ma400065t

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Abstract A strategy to replicate fingerprint patterns formed by the self-assembly of lamella-forming block copolymer (BCP) was investigated. To accomplish this, liquid conformal layers were placed between the surfaces of a “master” BCP film and a transparent “replica” substrate that solidified and covalently bonded to the BCP upon exposure to light. The benzophenone-containing conformal layer enabled pattern replication over areas limited only by the size of the samples and exposure field. The replication step is light activated, occurs below the glass transition of the BCP, and takes less than 1 h. This demonstration used a poly(styrene-b-methyl methacrylate) BCP with a bulk domain periodicity of 42 nm, but it is possible that the chemistry may be generalized to many other BCPs. Control experiments conducted with alternative conformal layer compositions indicate that interfacial photosensitization of the BCP by excited benzophenone, followed by propagation to residual acrylate groups present in the conformal layer, is the primary mechanism by which pattern replication takes place.
AbstractList A strategy to replicate fingerprint patterns formed by the self-assembly of lamella-forming block copolymer (BCP) was investigated. To accomplish this, liquid conformal layers were placed between the surfaces of a “master” BCP film and a transparent “replica” substrate that solidified and covalently bonded to the BCP upon exposure to light. The benzophenone-containing conformal layer enabled pattern replication over areas limited only by the size of the samples and exposure field. The replication step is light activated, occurs below the glass transition of the BCP, and takes less than 1 h. This demonstration used a poly(styrene-b-methyl methacrylate) BCP with a bulk domain periodicity of 42 nm, but it is possible that the chemistry may be generalized to many other BCPs. Control experiments conducted with alternative conformal layer compositions indicate that interfacial photosensitization of the BCP by excited benzophenone, followed by propagation to residual acrylate groups present in the conformal layer, is the primary mechanism by which pattern replication takes place.
Author Willson, C. Grant
Thode, Christopher J
Ellison, Christopher J
Janes, Dustin W
Nealey, Paul F
AuthorAffiliation University of Chicago
The University of Texas at Austin
The University of WisconsinMadison
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  email: ellison@che.utexas.edu
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Issue 11
Keywords Acrylic acid ester
Fingerprint
Methacrylic acid esters
Mass copolymerization
Photochemical reaction
Experimental study
Methyl methacrylate copolymer
Chemical reaction kinetics
Chemical coupling
Thin film
Biomimetics
Domain structure
Diblock copolymer
Reaction mechanism
Simultaneous reaction
Spin-on coating
Interface reaction
Photochemical copolymerization
Styrene copolymer
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Snippet A strategy to replicate fingerprint patterns formed by the self-assembly of lamella-forming block copolymer (BCP) was investigated. To accomplish this, liquid...
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SubjectTerms Applied sciences
benzophenones
chemical bonding
composite polymers
Exact sciences and technology
glass transition
liquids
Organic polymers
periodicity
photosensitivity
Physicochemistry of polymers
Properties and characterization
Structure, morphology and analysis
Title Light-Activated Replication of Block Copolymer Fingerprint Patterns
URI http://dx.doi.org/10.1021/ma400065t
https://www.proquest.com/docview/2084068369
Volume 46
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