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Modulating material interfaces through biologically-inspired intermediates
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Modulating material interfaces through biologically-inspired intermediates

Melis Hazar, Robert L. Steward Jr., Chia-Jung Chang, Cynthia J. Orndoff, Yukai Zeng, Mon-Shu Ho, Philip R. LeducChao-Min Cheng
Applied Physics Letters, 卷.99(23), 233701
12/2011

摘要

Physics and Astronomy (miscellaneous)
This letter describes the control of molecular filament organization through biologically inspired intermediates, enabling us to obtain large-area regular nanopatterns. We first studied cultured single filamentous actins on an unmodified glass surface (hydrophilic surface) and introduced myosin-II to modify the control. We then utilized an inorganic salt crystallization approach on the response of these two proteins, actin filament and myosin-II, to analyze the resultant spatially localized patterns. Through the utilization of myosin-II and the salt crystallization approach, we were able to induce the filament orientation of 63° while without myosin-II, we induced an orientation of 90. © 2011 American Institute of Physics.

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