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[专家学者] 湖南师范大学化学化工学院蒋柳云

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发表于 2017-9-3 07:19:51 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
蒋柳云
性  别:女
学历:博士
职称:教授
其他:硕士生导师

蒋柳云,女,2005年6月获四川大学无机化学专业硕士学位, 2008年6月获四川大学生物医学工程专业博士学位,2008年7月加入中国科学院成都有机化学研究所工作,2015年9月调入湖南师范大学化学化工学院任教。长期以来一直从事无机纳米粒子的制备与表面改性、与高分子材料的复合研究及其在生物医用材料领域的应用研究。已主持完成了国家自然科学基金、中科院西部之光人才培养项目、四川省杰出青年基金及横向项目等多项科研项目,现主持湖南省教育厅创新平台开放基金一项。至今以第一作者或通讯作者身份在Colloids and Surfaces B: Biointerfaces, Composites Science and Technology, Carbohydrate Polymers, Journal Material Science: Materials in Medecine等期刊上发表SCI论文20余篇,作为第一发明人,获授权国家发明专利2项。
联系方式:jlytxg@163.com.
近五年来发表论文如下:
(1)  Jiang Liuyun*, Jiang Lixin, Xiong Chengdong, Su Shengpei. Improving the degradation behavior and in vitro biological property of nanohydroxyapatite surface- grafted with the assist of citric acid. Colloids and Surfaces B: Biointerfaces, 2016 ,146: 228-234.
(2) Jiang Liuyun*, Jiang Lixin, Xiong Chengdong, Xu Lijuan, Li Ye. Effect of L-lysine-assisted surface-grafting for nano-hydroxyapatite on mechanical properties and in vitro bioactivity of Poly(lactide-co-glycolide). Journal of Biomaterials Applications.2016, 30:750-758.
(3) Ye Li, Liuyun Jiang*, Chengdong Xiong, wanjia Peng. Effect of Different Surface Treatment for Bamboo Fiber on the Crystallization Behavior and
     Mechanical Property of BambooFiber/Nanohydroxyapatite/Poly(lactic-co-glycolic) Composite. Industrial & Engineering Chemistry Research. 2015,54:12017-12024.
(4)Jiang Liuyun*, Xiong Chengdong, Jiang Lixin, Xu Lijuan. Effect of hydroxyapatite with different morphology on the crystallization behavior, mechanical property and in vitro degradation of hydroxyapatite/poly(lactic-co- glycolic) composite. Composites Science and Technology 2014, 93: 61–67.
(5) Xu Lijuan, Jiang Liuyun*, Xiong Chengdong, Jiang Lixin,Liye. Study on a novel double-layered composite membrane of Mg-substituted nano-hydroxyapatite/poly(L-lactide-co-ε-caprolactone): Effect of different L-lactide/ε-caprolactone ratios. Materials Science & Engineering A. 2014, 615: 361–366.
(6) L. X. Jiang, L. Y. Jiang*, L. J. Xu, C. T. Han, C. D. Xiong, Effect of a new surface-grafting method for nano-hydroxyapatite on the dispersion and the mechanical enhancement for poly(lactide-co-glycolide). Express Polymer Letters, 2014, 8:133–141.
(7) Xu Lijuan, Jiang Liuyun*, Xiong Chengdong, Jiang Lixin. Effect of different synthesis conditions on the microstructure, crystallinity and solubility of Mg-substituted hydroxyapatite nanopowder. Advanced Powder Technology, 2014,25:1142-1146.
(8) Liuyun Jiang*, Chengdong Xiong, Lixin Jiang, and Lijuan Xu. Study on the Effect of Annealing Treatment on Properties of Nano-hydroxyapatite/ Poly-lactic- co-glycolic Acid Composite. Polymer-Plastics Technology and Engineering. 2014, 53:1056-1061.
(9) Xu Lijuan, Jiang Liuyun*, Jiang Lixin, Xiong Chengdong.Synthesis of Mg-substituted hydroxyapatite nanopowders: Effect of two different magnesium scources. Materials letters 2013, 106: 246-249.
(10) Jiang Liuyun*, Xiong Chengdong, Jiang Lixin, Xu Lijuan. Degradation behavior of hydroxyapatite/poly(lactic-co-glycolic) acid nanocomposite in simulated body fluid. Materials Research Bulletin 2013, 48: 4186-4190.
(11)  Jiang Liuyun*, Xiong Chengdong, Jiang Lixin, Chen Dongliang, Li Qing. Effect of n-HA conent on the isothermal crystallization, morphology and mechanical property of n-HA/PLGA composites. Materials Research Bulletin 2013, 48:1233-1238.
(12) Jiang Liuyun*, Xiong Chengdong, Jiang Lixin, Xu Lijuan. Effect of different precipitation procedures on the properties of nano-hydroxyapatite/poly- lactic-co-glycolic acid composite. Polymer Composites 2013,34 :1158-1162.
(13) Jiang Liuyun*, Xiong Chengdong, Jiang Lixin, Xu Lijuan. Effect of HA with different grain size range on the crystallization behaviors and mechanical property of HA/PLGA composite. Thermochimica Acta 2013,565:52-57.
(14) 蒋立新, 蒋柳云*, 马驰, 韩崇涛, 徐莉娟, 熊成东. 新型改性的n-HA与PLGA复合材料的制备及性能研究,无机材料学报,2013, 28:751-756.
(15) Jiang Liuyun*, Xiong Chengdong, Chen Dongliang, Jiang Lixin, Pang xiubing. Effect of n-HA with different surface-modified on the properties of n-HA/PLGAcomposite. Applied Surface Science 2012, 259:72-78.

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