4.8 Article

Reversible Thermosensitive Biodegradable Polymeric Actuators Based on Confined Crystallization

期刊

NANO LETTERS
卷 15, 期 3, 页码 1786-1790

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nl5045023

关键词

Reversible actuators; thermoresponsive; polycaprolactone; confined crystallization; stimuli-responsive

资金

  1. DFG [1068/1-3]
  2. University of Jordan
  3. Leibniz-Institut fur Polymerforschung, Dresden (IPF)

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We discovered a new and unexpected effect:of reversible actuation of ultrathin semicrystalline polymer films.. The principle was demonstrated on the example of thin polycaprolactone-gelatin bilayer films. These films ate unfolded at room temperature, fold at temperature above polycaprolactone melting point, and unfold again at room temperature. The actuation is based on reversible Switching of the structure of the hydrophobic polymer (polycaprolactorie) upon melting and crystallization. We hypothesize that the origin Of this unexpected behavior is the Orientation of polycaprolactone chains parallel to the surface of the film, which is retained even after melting and crystallization of the polymer or the crystallization memory affect. In this way, the crystallization generates a directed force, which causes;bending Of the film. We used this effect for the design of of fully biodegradable thermoresponsive polymeric actuators, which are highly desirable for bionano-technological applications Such as reversible encapsulation of cells and design of swimmers.

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