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Nghiên cứu tổng hợp vật liệu tự lành trên cơ sở copolymer của 4 vinyl pyridine và các monomer khác

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[2] Chandra, M. and S. Roy. "Plastics Technology Handbook–Marcel Dekker," Inc, New York, vol. pp. 1997 Sách, tạp chí
Tiêu đề: Plastics Technology Handbook–Marcel Dekker
[3] Eason, R., Pulsed laser deposition of thin films: applications-led growth of functional materials. 2007: John Wiley & Sons Sách, tạp chí
Tiêu đề: Pulsed laser deposition of thin films: applications-led growth of functional materials
[4] Burattini, S., B.W. Greenland, D. Chappell, H.M. Colquhoun, and W. Hayes. "Healable polymeric materials: a tutorial review," Chemical Society Reviews, vol. 39, pp. 1973-1985, 2010 Sách, tạp chí
Tiêu đề: Healable polymeric materials: a tutorial review
[6] Bergman, S.D. and F. Wudl. "Mendable polymers," Journal of Materials Chemistry, vol. 18, pp. 41-62, 2008 Sách, tạp chí
Tiêu đề: Mendable polymers
[7] Han, L., L. Yan, K. Wang, L. Fang, H. Zhang, Y. Tang, Y. Ding, L.-T. Weng, J. Xu, and J. Weng. "Tough, self-healable and tissue-adhesive hydrogel with tunable multifunctionality," NPG Asia Materials, vol. 9, pp. e372, 2017 Sách, tạp chí
Tiêu đề: Tough, self-healable and tissue-adhesive hydrogel with tunable multifunctionality
[8] Hager, M.D., S. Bode, C. Weber, and U.S. Schubert. "Shape memory polymers: past, present and future developments," Progress in Polymer Science, vol. 49, pp. 3-33, 2015 Sách, tạp chí
Tiêu đề: Shape memory polymers: past, present and future developments
[9] Zhao, Q., H.J. Qi, and T. Xie. "Recent progress in shape memory polymer: New behavior, enabling materials, and mechanistic understanding," Progress in Polymer Science, vol. 49, pp. 79-120, 2015 Sách, tạp chí
Tiêu đề: Recent progress in shape memory polymer: New behavior, enabling materials, and mechanistic understanding
[10] Pilate, F., A. Toncheva, P. Dubois, and J.-M. Raquez. "Shape-memory polymers for multiple applications in the materials world," European Polymer Journal, vol. 80, pp. 268-294, 2016 Sách, tạp chí
Tiêu đề: Shape-memory polymers for multiple applications in the materials world
[11] Lendlein, A. and T. Sauter. "Shape‐Memory Effect in Polymers," Macromolecular Chemistry and Physics, vol. 214, pp. 1175-1177, 2013 Sách, tạp chí
Tiêu đề: Shape‐Memory Effect in Polymers
[12] Rekondo, A., R. Martin, A.R. de Luzuriaga, G. Cabaủero, H.J. Grande, and I. Odriozola. "Catalyst-free room-temperature self-healing elastomers based on aromatic disulfide metathesis," Materials Horizons, vol. 1, pp. 237-240, 2014 Sách, tạp chí
Tiêu đề: Catalyst-free room-temperature self-healing elastomers based on aromatic disulfide metathesis
[13] Nguyen, L.-T.T., T.T. Truong, H.T. Nguyen, L. Le, V.Q. Nguyen, T. Van Le, and A.T. Luu. "Healable shape memory (thio) urethane thermosets," Polymer Chemistry, vol. 6, pp. 3143-3154, 2015 Sách, tạp chí
Tiêu đề: Healable shape memory (thio) urethane thermosets
[14] Liu, Y.-L. and T.-W. Chuo. "Self-healing polymers based on thermally reversible Diels–Alder chemistry," Polymer Chemistry, vol. 4, pp. 2194-2205, 2013 Sách, tạp chí
Tiêu đề: Self-healing polymers based on thermally reversible Diels–Alder chemistry
[15] Kim, S.M., H. Jeon, S.H. Shin, S.A. Park, J. Jegal, S.Y. Hwang, D.X. Oh, and J. Park. "Superior Toughness and Fast Self‐Healing at Room Temperature Engineered by Transparent Elastomers," Advanced Materials, vol. 30, pp.1705145, 2018 Sách, tạp chí
Tiêu đề: Superior Toughness and Fast Self‐Healing at Room Temperature Engineered by Transparent Elastomers
[16] Ying, H., Y. Zhang, and J. Cheng. "Dynamic urea bond for the design of reversible and self-healing polymers," Nature communications, vol. 5, pp.3218, 2014 Sách, tạp chí
Tiêu đề: Dynamic urea bond for the design of reversible and self-healing polymers
[17] Zheng, P. and T.J. McCarthy. "A surprise from 1954: siloxane equilibration is a simple, robust, and obvious polymer self-healing mechanism," Journal of the American Chemical Society, vol. 134, pp. 2024-2027, 2012 Sách, tạp chí
Tiêu đề: A surprise from 1954: siloxane equilibration is a simple, robust, and obvious polymer self-healing mechanism
[18] Deng, G., C. Tang, F. Li, H. Jiang, and Y. Chen. "Covalent cross-linked polymer gels with reversible sol− gel transition and self-healing properties,"Macromolecules, vol. 43, pp. 1191-1194, 2010 Sách, tạp chí
Tiêu đề: Covalent cross-linked polymer gels with reversible sol− gel transition and self-healing properties
[19] Cordier, P., F. Tournilhac, C. Soulié-Ziakovic, and L. Leibler. "Self-healing and thermoreversible rubber from supramolecular assembly," Nature, vol.451, pp. 977, 2008 Sách, tạp chí
Tiêu đề: Self-healing and thermoreversible rubber from supramolecular assembly
[20] Das, A., A. Sallat, F. Böhme, M. Suckow, D. Basu, S. Wieòner, K.W. Stöckelhuber, B. Voit, and G. Heinrich. "Ionic modification turns commercial rubber into a self-healing material," ACS applied materials & interfaces, vol.7, pp. 20623-20630, 2015 Sách, tạp chí
Tiêu đề: Ionic modification turns commercial rubber into a self-healing material
[21] Burnworth, M., L. Tang, J.R. Kumpfer, A.J. Duncan, F.L. Beyer, G.L. Fiore, S.J. Rowan, and C. Weder. "Optically healable supramolecular polymers,"Nature, vol. 472, pp. 334, 2011 Sách, tạp chí
Tiêu đề: Optically healable supramolecular polymers
[22] Nakahata, M., Y. Takashima, H. Yamaguchi, and A. Harada. "Redox- responsive self-healing materials formed from host–guest polymers," Nature communications, vol. 2, pp. 511, 2011 Sách, tạp chí
Tiêu đề: Redox-responsive self-healing materials formed from host–guest polymers

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