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      Progress in Photo-Responsive Polypeptide Derived Nano-Assemblies

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          Abstract

          Stimuli-responsive polymeric materials have attracted significant attention in a variety of high-value-added and industrial applications during the past decade. Among various stimuli, light is of particular interest as a stimulus because of its unique advantages, such as precisely spatiotemporal control, mild conditions, ease of use, and tunability. In recent years, a lot of effort towards the synthesis of a biocompatible and biodegradable polypeptide has resulted in many examples of photo-responsive nanoparticles. Depending on the specific photochemistry, those polypeptide derived nano-assemblies are capable of crosslinking, disassembling, or morphing into other shapes upon light irradiation. In this review, we aim to assess the current state of photo-responsive polypeptide based nanomaterials. Firstly, those ‘smart’ nanomaterials will be categorized by their photo-triggered events (i.e., crosslinking, degradation, and isomerization), which are inherently governed by photo-sensitive functionalities, including O-nitrobenzyl, coumarin, azobenzene, cinnamyl, and spiropyran. In addition, the properties and applications of those polypeptide nanomaterials will be highlighted as well. Finally, the current challenges and future directions of this subject will be evaluated.

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          Most cited references95

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          Atom Transfer Radical Polymerization (ATRP): Current Status and Future Perspectives

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            50th Anniversary Perspective: RAFT Polymerization—A User Guide

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              Light-Controlled Radical Polymerization: Mechanisms, Methods, and Applications.

              The use of light to mediate controlled radical polymerization has emerged as a powerful strategy for rational polymer synthesis and advanced materials fabrication. This review provides a comprehensive survey of photocontrolled, living radical polymerizations (photo-CRPs). From the perspective of mechanism, all known photo-CRPs are divided into either (1) intramolecular photochemical processes or (2) photoredox processes. Within these mechanistic regimes, a large number of methods are summarized and further classified into subcategories based on the specific reagents, catalysts, etc., involved. To provide a clear understanding of each subcategory, reaction mechanisms are discussed. In addition, applications of photo-CRP reported so far, which include surface fabrication, particle preparation, photoresponsive gel design, and continuous flow technology, are summarized. We hope this review will not only provide informative knowledge to researchers in this field but also stimulate new ideas and applications to further advance photocontrolled reactions.
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                Author and article information

                Journal
                Micromachines (Basel)
                Micromachines (Basel)
                micromachines
                Micromachines
                MDPI
                2072-666X
                13 June 2018
                June 2018
                : 9
                : 6
                : 296
                Affiliations
                [1 ]Department of Chemistry, University of Florida, Gainesville, FL 32611, USA; yanglulucia@ 123456chem.ufl.edu
                [2 ]Department of Chemistry, Southern Methodist University, Dallas, TX 75275, USA; houliangt@ 123456smu.edu
                Author notes
                [* ]Correspondence: chrisun@ 123456ufl.edu ; Tel.: +1-352-281-4799
                Article
                micromachines-09-00296
                10.3390/mi9060296
                6187351
                30424229
                4aa6cbb8-910a-4c9b-94fd-ece5a604694f
                © 2018 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 25 May 2018
                : 11 June 2018
                Categories
                Review

                stimuli-responsive polymers,synthetic polypeptide,photo-sensitive,self-assembly,morphological transformation

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