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      Shape-memory polymers and their composites: Stimulus methods and applications

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      Progress in Materials Science
      Elsevier BV

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          Photomechanics: directed bending of a polymer film by light.

          Polymer solutions and solids that contain light-sensitive molecules can undergo photo-contraction, whereby light energy is converted into mechanical energy. Here we show that a single film of a liquid-crystal network containing an azobenzene chromophore can be repeatedly and precisely bent along any chosen direction by using linearly polarized light. This striking photomechanical effect results from a photoselective volume contraction and may be useful in the development of high-speed actuators for microscale or nanoscale applications, for example in microrobots in medicine or optical microtweezers.
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            Nanoparticle polymer composites: where two small worlds meet.

            The mixing of polymers and nanoparticles is opening pathways for engineering flexible composites that exhibit advantageous electrical, optical, or mechanical properties. Recent advances reveal routes to exploit both enthalpic and entropic interactions so as to direct the spatial distribution of nanoparticles and thereby control the macroscopic performance of the material. For example, by tailoring the particle coating and size, researchers have created self-healing materials for improved sustainability and self-corralling rods for photovoltaic applications. A challenge for future studies is to create hierarchically structured composites in which each sublayer contributes a distinct function to yield a mechanically integrated, multifunctional material.
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              Stimuli-reponsive polymers and their bioconjugates

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                Author and article information

                Journal
                Progress in Materials Science
                Progress in Materials Science
                Elsevier BV
                00796425
                September 2011
                September 2011
                : 56
                : 7
                : 1077-1135
                Article
                10.1016/j.pmatsci.2011.03.001
                a47bcb6a-c1f7-4800-ab50-df92b6e76fc5
                © 2011

                http://www.elsevier.com/tdm/userlicense/1.0/

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