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Fabrication of stimulus-responsive polymeric nanostructures by proximal probes

Publication ,  Journal Article
Ahn, SJ; Lee, WK; Zauscher, S
Published in: Materials Research Society Symposium - Proceedings
July 28, 2003

The triggered control of interfacial properties on the nanometer scale holds significant promise for actuation in bio-nanotechnology applications where polymeric actuators may manipulate the transport, separation, and detection of biomolecules. To fabricate patterned, stimulus-responsive polymer brushes we have developed several methods that combine surface initiated polymerization (SIP) with dip-pen nanolithography (DPN). Surface-confined, stimulus-responsive polymer brush nanopatterns were fabricated by amplification of DPN patterned, self-assembled monolayers of 16-mercaptohexadecanoic acid on gold surfaces by SIP of N-isopropylacrylamide (NIPAAm). While free radical polymerization yielded only short polymer brushes (DP<50), atom transfer free radical polymerization (ATRP) produced thick, uniform polymer brushes. For free radical polymerization the thickness of the polymer brush layer is a function of the lateral feature size and the initiator density and is maximal at pattern boundaries.

Duke Scholars

Published In

Materials Research Society Symposium - Proceedings

ISSN

0272-9172

Publication Date

July 28, 2003

Volume

735

Start / End Page

111 / 116
 

Citation

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Ahn, S. J., Lee, W. K., & Zauscher, S. (2003). Fabrication of stimulus-responsive polymeric nanostructures by proximal probes. Materials Research Society Symposium - Proceedings, 735, 111–116.
Ahn, S. J., W. K. Lee, and S. Zauscher. “Fabrication of stimulus-responsive polymeric nanostructures by proximal probes.” Materials Research Society Symposium - Proceedings 735 (July 28, 2003): 111–16.
Ahn SJ, Lee WK, Zauscher S. Fabrication of stimulus-responsive polymeric nanostructures by proximal probes. Materials Research Society Symposium - Proceedings. 2003 Jul 28;735:111–6.
Ahn, S. J., et al. “Fabrication of stimulus-responsive polymeric nanostructures by proximal probes.” Materials Research Society Symposium - Proceedings, vol. 735, July 2003, pp. 111–16.
Ahn SJ, Lee WK, Zauscher S. Fabrication of stimulus-responsive polymeric nanostructures by proximal probes. Materials Research Society Symposium - Proceedings. 2003 Jul 28;735:111–116.

Published In

Materials Research Society Symposium - Proceedings

ISSN

0272-9172

Publication Date

July 28, 2003

Volume

735

Start / End Page

111 / 116