(1)Crystallinity and Reinforcement in Poly-L-Lactic Acid Scaffold Induced by Carbon Nanotubes, Advances in Polymer Technology, Volume 2019, Article ID 8625325, 10 pages. (一作,JCR三区) (2)Surface-Modified Graphene Oxide with Compatible Interface Enhances Poly-L-Lactic Acid Bone Scaffold,Journal of Nanomaterials,Volume 2020, Article ID 5634096, 11 pages.(一作,高被引) (3)A co-dispersion nanosystem of graphene oxide @silicon-doped hydroxyapatite to improve scaffold properties,Materials and Design 199 (2021) 109399.(一作,TOP期刊,高被引) (4)Polydopamine-decorated black phosphorous to enhance stability in polymer scaffold, Nanotechnology 32 (2021) 455701. (一作,JCR三区) (5)Silver-decorated black phosphorus: a synergistic antibacterial strategy. Nanotechnology, 2022, https://doi.org/10.1088/1361-6528/ac5aee.(第一通讯,JCR三区) 【专著】 (1)骨植入物的结构制备和性能调控(英文版);王国勇,帅词俊,邓芳著;中南大学出版社;ISB:978-7-5487-4704-8。 【专利】 (1)帅词俊;冯佩;彭淑平;王国勇;叶恒云;一种镁/左旋聚乳酸复合骨支架的制备方法, 2018-06-29,中国, ZL201810695516.0 (2)帅词俊;冯佩;彭淑平;王国勇;叶恒云;一种利用多巴胺修饰氧化石墨烯制备GO-PDA/PHBV复合骨支架的方法, 2018-06-29,中国, ZL201810692561.0 |