Development of High-Performance Bioplastic Contributing to a Sustainable Society
Author:
Affiliation:
1. 北陸先端科学技術大学院大学
Publisher
Society of Fiber Science and Technology Japan
Subject
Industrial and Manufacturing Engineering,Polymers and Plastics,Materials Science (miscellaneous),Chemical Engineering (miscellaneous)
Link
https://www.jstage.jst.go.jp/article/fiber/78/4/78_156/_pdf
Reference20 articles.
1. Kaneko, T.; Thi, T. H.; Shi, D. J.; Akashi, M., Environmentally degradable, high-performance thermoplastics from phenolic phytomonomers. Nat Mater 2006, 5(12), 966-70.
2. Kaneko, T.; Kaneko, D.; Wang, S., High-performance lignin-mimetic polyesters. Plant Biotechnology 2010, 27(3), 243-250.
3. Chauzar, M.; Tateyama, S.; Ishikura, T.; Matsumoto, K.; Kaneko, D.; Ebitani, K.; Kaneko, T., Hydrotalcites Catalyze the Acidolysis Polymerization of Phenolic Acid to Create Highly Heat-Resistant Bioplastics. Advanced Functional Materials 2012, 22(16), 3438-3444.
4. Wang, S. Q.; Kaneko, D.; Okajima, M.; Yasaki, K.; Tateyama, S.; Kaneko, T., Hyperbranched polycoumarates with photofunctional multiple shape memory. Angew Chem Int Ed Engl 2013, 52(42), 11143-8.
5. Schmidt, G. M. J., 385. Topochemistry. Part III. The crystal chemistry of some trans-cinnamic acids. Journal of the Chemical Society(Resumed)1964, (0), 2014-2021.
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