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  博士导师

林树东导师
  作者:    日期:2021-02-26     信息来源:   【字体: 】
 

    林树东,男,19807月生,中山大学高分子化学与物理专业博士毕业,中科院广州化学所研究员、中国科学院大学博士生导师。长期从事功能高分子和高分子复合材料基础理论、制备、应用和产业化研究,主要在聚合物的制备与改性、聚合物纳米材料、聚合物功能薄膜、金属基聚合物复合材料、uv固化有机硅新材料等新材料领域进行系统的探索和研究。先后主持或负责国家自然科学基金、广东省自然科学基金、广东省产学研协同创新重大专项、四川省科技合作研发重大项目、广州珠江科技新星专项、广州市科学研究专项、佛山市顺德区产学研项目等项目,至今已在国内外重要学术刊物上发布论文60多篇(被引用1000多次),申请专利25项,获授权专利10项。广东省知识产权专家库专家,广东省生物材料与临床应用协会委员,精细化工专业委员会青年学者工作员。    

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  代表性论文(第一或通讯作者)  

  [12] exploitation of acetalization process of poly (vinyl alcohol) for the formation on crosslinked poly (vinyl formal) foams. polymer engineering & science, 2020, doi: 10.1002/pen.25449 

  [11] thermo and light-responsive strategies of smart titanium-containing composite material surface for enhancing bacterially anti-adhesive property. chemical engineering journal, 2020, doi: 10.1002/aoc.5697 

  [10] controllable antibacterial and bacterially anti-adhesive material surface fabricated by a novel bio-inspired beetle-like macromolecule. international journal of biological macromolecules, 2020, 157, 553-560  

  [9] 无溶剂紫外光固化环氧聚硅氧烷涂料的制备与性能. 精细化工, 2020, doi: 10.13550/j.jxhg.20200052  

  [8] a novel nano-fibriform c- modified niobium pentoxide by using cellulose templates with highly visible-light photocatalytic performance. ceramics international, 2020, 46(9), 13210-13218 

  [7] an oxygen-tolerant photo-induced metal-free reversible addition-fragmentation chain transfer polymerization. journal of polymer science part a: polymer chemistry, 2018, 56(21), 2437–2444  

  [6] 芳纶纳米纤维增强聚乙烯醇复合膜的制备与性能. 精细化工, 2018, 35(8), 1288-1293  

  [5] understanding the mechanism for building woven fabrics with wettability ranging from superhydrophobic to superamphiphobic via an aqueous process. reactive and functional polymers, 2017, 119: 75-81  

  [4] dual-responsive crosslinked micelles of a multifunctional graft copolymer for drug delivery applications. journal of polymer science part a: polymer chemistry, 2017, 55, 1536–1546 

  [3] photothermo-chemotherapy of cancer employing drug leakage-free gold nanoshells. biomaterials, 2016, 78, 40-49  

  [2] ph-responsive nanoemulsions for controlled drug release. biomacromolecules, 2014, 15 , 968–977  

  [1] interlayer-crosslinked micelle with partially hydrated core showing reduction and ph dual sensitivity for pinpointed intracellular drug release. angew. chem. int. ed., 2011, 50(40), 9404-9408  



 
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