A facile approach towards fabrication of multi-walled nanotubes embedded polyurethane high performance nanocomposite with efficient shape recovery
Author:
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Organic Chemistry,Polymers and Plastics
Link
https://link.springer.com/content/pdf/10.1007/s10965-021-02631-w.pdf
Reference37 articles.
1. Yu Z, Li Y, Feng Z, Zhang Z, Li P, Chen Y, Chen S, Li P, Yang Z (2019) Cu +- containing physically crosslinked chitosan hydrogels with shape memory. Exp Polym Lett 13:785–793
2. Nwokonkwo O (2020) Numerical Evaluation of an Indirect Heating Method for Self-Healing in a Glass Phase Shape Memory Fiber-Reinforced Polymers Using High Intensity Focused Ultrasound. Southern University and Agricultural and Mechanical College
3. Lendlein A, Langer R (2002) Biodegradable, elastic shape-memory polymers for potential biomedical applications. Sci 296:1673–1676
4. Sun L, Gao X, Wu D, Guo Q (2020) Advances in physiologically relevant actuation of shape memory polymers for biomedical applications. Polym Rev 1–39
5. Yoon J (2020) Design-to-fabrication with thermo-responsive shape memory polymer applications for building skins. Archit Sci Rev 1–15
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