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Hierarchically ordered nanopatterns for spatial control of biomolecules.


ABSTRACT: The development and study of a benchtop, high-throughput, and inexpensive fabrication strategy to obtain hierarchical patterns of biomolecules with sub-50 nm resolution is presented. A diblock copolymer of polystyrene-b-poly(ethylene oxide), PS-b-PEO, is synthesized with biotin capping the PEO block and 4-bromostyrene copolymerized within the polystyrene block at 5 wt %. These two handles allow thin films of the block copolymer to be postfunctionalized with biotinylated biomolecules of interest and to obtain micropatterns of nanoscale-ordered films via photolithography. The design of this single polymer further allows access to two distinct superficial nanopatterns (lines and dots), where the PEO cylinders are oriented parallel or perpendicular to the substrate. Moreover, we present a strategy to obtain hierarchical mixed morphologies: a thin-film coating of cylinders both parallel and perpendicular to the substrate can be obtained by tuning the solvent annealing and irradiation conditions.

SUBMITTER: Tran H 

PROVIDER: S-EPMC4246004 | biostudies-literature | 2014 Nov

REPOSITORIES: biostudies-literature

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Hierarchically ordered nanopatterns for spatial control of biomolecules.

Tran Helen H   Ronaldson Kacey K   Bailey Nevette A NA   Lynd Nathaniel A NA   Killops Kato L KL   Vunjak-Novakovic Gordana G   Campos Luis M LM  

ACS nano 20141106 11


The development and study of a benchtop, high-throughput, and inexpensive fabrication strategy to obtain hierarchical patterns of biomolecules with sub-50 nm resolution is presented. A diblock copolymer of polystyrene-b-poly(ethylene oxide), PS-b-PEO, is synthesized with biotin capping the PEO block and 4-bromostyrene copolymerized within the polystyrene block at 5 wt %. These two handles allow thin films of the block copolymer to be postfunctionalized with biotinylated biomolecules of interest  ...[more]

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