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橡塑技术与装备(塑料)                            CHINA RUBBER/PLASTICS  TECHNOLOGY  AND EQUIPMENT (PLASTICS)

                 Colloids, 2009, 25(6):3323-6.                     behavior.[J]. Acs Applied Materials & Interfaces, 2014,
             [4]   Patrick J F, Robb M J, Sottos N R, et al. Polymers with   6(15):12 495.
                 autonomous life-cycle control.[J]. Nature, 2016, 540(7633):   [18]  Krogsgaard M, Behrens M A, Pedersen J S, et al. Self-
                 363.                                              He a l i ng Musse l -Inspi re d Mul t i - pH - Re sponsi ve
             [5]   Nakahata M,  Takashima  Y,  Yamaguchi H, et al. Redox-  Hydrogels[J]. Biomacromolecules, 2013, 14(2):297.
                 responsive self-healing materials formed  from  host–guest   [19]  Az e ve do S,  Am s C,  An de rse n  A, e t  a l . Bi oi nspi re d
                 polymers[J]. Nature Communications, 2011, 2(1):511.  Ultratough Hydrogel with Fast Recovery, Self-Healing,
             [ 6]  L i  G,  Z h a n g H, For t i n D, e t  a l .  Po l y (v i n yl  a l c oh ol ) -  Injectability and Cytocompatibility.[J]. Advanced Materials,
                 Pol y( e t hyl e ne  gl yc o l ) Dou bl e - Ne t wor k  Hyd rog e l :  A   2017, 29(28).
                 General  Approach to Shape Memory and Self-Healing   [20]  Xu H, Jin N, Ma  W, et al. Competition between Oxidation
                 Functionalities[J]. Langmuir the Acs Journal of Surfaces &   and Coordi na ti on in Cross - Li nki ng of Pol ystyrene
                 Colloids, 2015, 31(42):11 709~11 716.             Copolymer  Containing  Catechol  Groups[J].  Acs  Macro
              [7]  Schüssele  A C, Nübling F,  Yi  T, et al. Self - Healing   Letters, 2013, 1(4):457~460.
                 Rubbers Based on NBR Blends with Hyperbranched   [21]  Holten-Andersen N, Harrington M J, Birkedal H, et al. pH-
                 Polyethylenimines[J]. Macromolecular Materials &   induced mussel metal-ligand crosslinks yield self-healing
                 Engineering, 2012, 297(5):411~419.                polymer networks with near-covalent elastic moduli[J].
             [8]   Martín R, Rekondo A, Echeberria J, et al. Room temperature   Proceedings of the National Academy of Sciences, 2011,
                 self-healing power of silicone elastomers having silver   108(7):2 651~2 655.
                 nanoparticles as crosslinkers[J]. Chemical Communications,   [22]  Holten-Andersen, N. Metal-coordination: using one of
                 2012, 48(66):8 255~8 257.                         nature's tricks to control soft material mechanics[J]. Journal
             [9]   Shi Y,  Wang M, Ma C, et al. A Conductive Self-Healing   of Materials Chemistry B, 2014,2(17):2 467~2 472.
                                                               [23]  Loizou E, Weisser J T, Dundigalla A, et al. Structural effects
                 Hybrid Gel Enabled by Metal-Ligand Supramolecule and
                                                                   of crosslinking a biopolymer hydrogel derived from marine
                 Nanostructured Conductive Polymer.[J]. Nano Letters, 2015,
                 15(9):6 276.                                      mussel adhesive protein[J]. Macromolecular Bioscience,
                                                                   2006, 6(9):711~718.
             [10]  B u m  Ji n  Ki m ,  Do n g y e o p  X.  Oh ,  Sa n g si k  Ki m ,  e t  a l .
                                                               [24]  Ju Y, Cui J, Müllner M, et al. Engineering low-fouling and
                 Mussel-Mimetic Protein-Based  Adhesive Hydrogel[J].
                 Biomacromolecules, 2014, 15(5):1 579~85.          pH-degradable capsules through the assembly of metal-
             [11]  Rahman M  A, Penco M, Peroni I, et al. Self-repairing   phenolic networks[J]. Biomacromolecules, 2015, 16(3):807.
                                                               [25]  Guo, Yifei, Zhao, Yanna, Han, Meihua, et al. A codendrimer
                 systems based on ionomers and epoxidized natural rubber
                                                                   of PAMAM decorated with oligoethylene glycol dendrons:
                 blends.[J]. Acs Applied Materials & Interfaces, 2011, 3(12):   sy n t h e si s,  se l f - a sse m b l y,  a n d  a p p l i c a t i o n  a s a  d r u g
                 4 865~4 874.
                                                                   carrier[J]. Soft Matter, 2013, 9(43):10 306~10 313.
             [12]  Hohlbein  N, Shaaban  A,  Bras  A  R,  et  al. Self-healing
                                                               [26] Zhang S, Zhang Y, Bi G, et al. Mussel-inspired polydopamine
                 dynamic bond-based rubbers: understanding the mechanisms   biopolymer decorated with magnetic nanoparticles  for
                 in ionomeric elastomer model systems.[J]. Physical   multiple pollutants removal[J]. Journal of Hazardous
                 Chemistry Chemical Physics, 2015, 17(32):21 005~21 017.
                                                                   Materials, 2014, 270(8):27.
             [13]  Li C H,  Wang C, Keplinger C, et al. A highly stretchable   [27]  Bruce P, Lee, Shari, Konst. Novel hydrogel actuator
                 autonomous self-healing elastomer[J]. Nature Chemistry,   inspired by reversible mussel adhesive protein chemistry[J].
                 2016, 8(6):618.
                                                                   Advanced materials(Deerfield Beach, Fla.),2014,  26(21):
             [14]  Xu C, Ca o L , L i n B, e t  a l . De si gn of Se l f - He a l i ng
                                                                   3 415.
                 Supramolecular Rubbers by Introducing Ionic Cross-Links   [28]  Han Y, Wu X, Zhang X, et al. Self-Healing, Highly Sensitive
                 into Natural Rubber via a Controlled Vulcanization[J]. Acs
                                                                   Electronic Sensors Enabled by Metal–Ligand Coordination
                 Applied Materials & Interfaces, 2016, 8(27):17 728.
                                                                   and Hierarchical Structure Design[J]. Acs Applied Materials
             [15]  Xia NN,  Xiong  XM,  Wang  J,  et  al. A  seawater  triggered   & Interfaces, 2017, 9(23):20106.
                 dynamic coordinate bond and its application for underwater   [29]  Young Chan Choi, Ji Suk Choi, Yeon Jae Jung, et al. Human
                 self-healing and reclaiming of lipophilic polymer.[J]. Chem   gelatin tissue-adhesive hydrogels prepared by enzyme-
                 Sci. 2016, 7(4):2 736~2 742.                      mediated biosynthesis of DOPA and Fe  ion crosslinking[J].
                                                                                              3+
             [16]  Xia N N, Rong M Z, Zhang M Q. Stabilization of catechol–  Journal of Materials Chemistry B, 2013, 2(2):201~209.
                 boronic ester bonds for underwater self -healing and   [30]  Dr.  Bum  Jin  Kim,  Hogyun  Cheong,  Dr.  Byeong  Hee
                 recycling of lipophilic bulk polymer in wider pH range[J].   Hwang, et al. Innenrücktitelbild: Mussel-Inspired Protein
                 Journal of Materials Chemistry A, 2016, 4(37).    Nanoparticles Containing Iron(III)–DOPA Complexes for
             [17]  Sun P,  Wang J, Yao X, et al. Facile preparation of mussel-  pH-Responsive  Drug  Delivery  (Angew. Chem. 25/2015)[J].
                 inspired  polyurethane  hydrogel  and  its  rapid  curing   Angewandte Chemie, 2015, 127(25):7 451~7 451.


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