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[学者专家] 四川大学化学学院汪秀丽

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发表于 2018-3-29 16:54:18 | 只看该作者 |只看大图 回帖奖励 |倒序浏览 |阅读模式
汪秀丽四川大学教授,博士生导师。1994年本科毕业于四川大学化学系,2003年获得四川大学材料学博士学位。2006年获教育部新世纪优秀人才资助,四川省学术与技术带头人后备人选,2011年获得四川省杰出青年基金,2011年受DAAD资助赴德累斯顿莱布尼茨聚合物研究所Leibniz-InstituteofPolymerResearch(IPF)做访问学者。在生物基聚合物尤其是淀粉、纤维素等生物大分子改性及功能化以及制备环境友好材料方面开展了一系列的研究工作,先后承担了国家“863”项目、国家科技支撑计划子课题,以及国家自然科学基金等项目。发表SCI收录论文90余篇,申请了37项国家发明专利,其中26项得到授权。获得国际技术发明二等奖(排名第五)1项,国家科技进步二等奖(排名第6)1项,四川省科技进步二等奖1项(排名第6),高校科技进步二等奖1项(排名第6)。


汪秀丽
职称与职务   教 授(博导)
专      业   高分子化学与物理
电      话  028-85410755
E-Mail  wangxiuli@scu.edu.cn
简  历
1990/09-1994/06,四川大学,化学,学士
1997/09-1999/06,四川大学,高分子化学与物理,硕士
1999/09-2003/06,四川大学,材料学,博士
2002/07-2004/06,四川大学,化学学院,讲师
2004/07-2009/06,四川大学,化学学院系,副研究员
2011/10-2011/12,德国德累斯顿莱布尼茨聚合物研究所 (Leibniz-Institute of Polymer Research, IPF),访问学者
2009/07-至今,四川大学,化学学院,教授
主要研究方向
无卤阻燃高分子材料
生物基与生物降解高分子材料
生物基高分子材料的功能化
主要工作业绩
  在环境友好无卤阻燃高分子材料以及生物基与生物降解高分子材料领域从事研究工作,先后承担了国家重点研发计划、国家“863”项目、国家科技支撑计划以及国家自然科学基金等项目。在Journal of Materials Chemistry A、Polymer Chemistry、Industrial & Engineering Chemistry Research、Carbohydrate Polymers、ACS Sustainable Chemistry & Engineering等杂志上先后发表SCI收录论文150余篇,H-index为34。申请中国发明专利61项,其中53项得到授权。主讲本科生《高分子科学导论》及《高分子物理》等课程。
获得的科技奖励
2015年:四川省科技进步奖(技术发明类)一等奖(第二完成人)
2012年:四川省自然科学一等奖(第三完成人)
2010年:国家技术发明二等奖(第五完成人)
2009年:高等学校科学研究优秀成果技术发明奖一等奖(第五完成人)
2007年:高等学校技术发明一等奖(第二完成人)
2001年:国家科技进步二等奖(第六完成人)
2000年:高校科技进步二等奖(第六完成人)
人才奖励
2016年:四川省青年科技创新团队带头人
2014年:四川省学术和技术带头人
2011年:四川省杰出青年基金获得者
2007年:教育部新世纪优秀人才培养计划
代表性成果 (获奖成果、专著、论文、专利)
近5年发表的SCI论文:
(1) Di-Di Xing, Yun-Wan Jia, De-Fu Li, Xiu-Li Wang,* and Yu-Zhong Wang*, Novel Multiblock Poly(ε-caprolactone) Copolyesters Containing D-Glucose Derivatives with Different Bicyclic Structures, ACS Sustainable Chem. Eng. 2017, 5, 7040-7051
(2) Wu-Cheng Nie, Hai-Chun Dang, Xiu-Li Wang*, Fei Song*, Yu-Zhong Wang, One-step enzymatic synthesis of poly(p-dioxanone-co-butylene-cosuccinate) copolyesters with well-defined structure and enhanced degradability, Polymer, 2017, 111, 107-114
(3) Yuan Cao, Xiu-Li Wang,* Wen-Qiang Zhang, Xue-Wu Yin, Yue-Quan Shi, and Yu-Zhong Wang*, Bi-DOPO Structure Flame Retardants with or without Reactive Group: Their Effects on Thermal Stability and Flammability of Unsaturated Polyester, Industrial & Engineering Chemistry Research, 2017, 56, 5913-5924
(4) Yan-Kui Luo, Fei Song,* Xiu-Li Wang* and Yu-Zhong Wang, Pure copper phosphate nanostructures with controlled growth: a versatile support for enzyme immobilization, CrystEngComm, 2017, 19, 2996–3002
(5) Gui-Cheng Liu, Wen-Qiang Zhang, Xiu-Li Wang*, Yu-Zhong Wang, Synthesis and performances of poly(butylene-succinate) withenhanced viscosity and crystallization rate via introducing a small amount of diacetylene groups, Chinese Chemical Letters, 2017, 28, 354–357
(6) Teng Fu, De-Ming Guo, Jia-Ning Wu, Xiao-Lin Wang, Xiu-Li Wang*, Li Chen and Yu-Zhong Wang*,   Inherent flame retardation   of semi-aromatic polyesters via binding small-molecule free radicals and charring, Polymer Chemistry, 2016, 7: 1584–1592
(7) Rong-Tao Duan, Qiu-Xia He, Xue Dong, De-Fu Li, Xiu-Li Wang,* and Yu-Zhong Wang*, Renewable Sugar-Based Diols with Different Rigid Structure: Comparable Investigation on Improving Poly(butylene succinate) Performance, ACS Sustainable Chem. Eng., 2016, 4, 350?362
(8) Zhu, Meng-meng; Song, Fei; Nie, Wu-cheng; Wang, Xiu-li; Wang*, Yu-zhong, A facile chemoenzymatic synthesis of amphiphilic miktoarm star copolymers from a sugar core and their potential for anticancer drug delivery, Polymer, 2016, 93, 159-166
(9) Qiu-Xia He, Liang Tang, Teng Fu, Yue-Quan Shi, Xiu-Li Wang* and Yu-Zhong Wang*, Novel phosphorus-containing halogen-free ionic liquids: effect of sulfonate anion size on physical properties, biocompatibility, and flame retardancy, RSC Advances, 2016, 6, 52485–52494
(10)Gui-Cheng Liu, Wen-Qiang Zhang, Shui-Lian Zhou, Xiu-Li Wang*and Yu-Zhong Wang*, Improving crystallization and processability of PBS via slight cross-linking, RSC Advances, 2016, 6, 68942–68951
(11) Wen-Qiang Zhang, Xiu-Li Wang,* Gui-Cheng Liu, Li Chen and Yu-Zhong Wang, Thermal transition behaviors, solubility, and mechanical properties of wholly aromatic para-,meta-poly(ether-amide)s: effect on numbers of para-aryl ether linkages, RSC Advances, 2016, 6, 84284–84293
(12) 段荣涛,董雪,李德福,汪秀丽?,王玉忠, 含异山梨醇的全生物基PBS 嵌段共聚酯的制备及性能, 高分子学报, 2016,1,70-77
(13) Mao-qin Li, Fei Song,* Li Chen, Xiu-li Wang,* and Yu-zhong Wang, Flexible Material Based on Poly(lactic acid) and Liquid Crystal with Multishape Memory Effects, ACS Sustainable Chem. Eng. 2016, 4, 3820?3829
(14) Yi Zhang, Yan-Peng Ni, Ming-Xin He, Xiu-Li Wang*, Li Chen, Yu-Zhong Wang, Phosphorus-containing copolyesters: The effect of ionic group and its analogous phosphorus heterocycles on their flame-retardant and anti-dripping performances, Polymer, 2015, 60: 50-61
(15) Hai-Bo Zhao, Xiao-Lin Wang , Yue Guan, Xiu-Li Wang*, Li Chen,Yu-Zhong Wang*, Block self-cross-linkable poly(ethylene terephthalate) copolyester via solid-state polymerization: Crystallization, cross-linking, and flame retardance, Polymer, 2015, 70: 68-76
(16) De-Ming Guo, Teng Fu, Chao Ruan, Xiu-Li Wang*, Li Chen, Yu-Zhong Wang*, A new approach to improving flame retardancy, smoke suppressionand anti-dripping of PET: Via arylene-ether units rearrangement reactions at high temperature, Polymer, 2015, 77:21-23
(17) De-Ming Guo, Xiang-Quan Chen, Liang Tang, Jia-Ning Wu, Teng Fu, Xiao-Lin Wang, Xiu-Li Wang*, Li Chen, Yu-Zhong Wang*, PET-based copolyesters with bisphenol A or bisphenol F structural units: Their distinct differences in pyrolysis behaviours and flame retardant performances, Polymer Degradation and Stability, 2015, 120: 158-168
(18) Fei Song*, Chen Xu, Wen-Yi Bao, Xiu-Li Wang*,Yu-Zhong Wang, Bamboo (Neosinocalamus affinis)-based thin film, a novel biomassmaterial with high performances, Carbohydrate Polymers, 2015, 119, 167–172
(19) Hai-Chun Dang, Yan-Kui Luo, Chen Xu, Fei Song,* Xiu-Li Wang,* and Yu-Zhong Wang, Contribution of Hemispheric CaCO3 To Improving Crystalline, Physical Properties and Biocompatibility of Poly(p?dioxanone), Industrial & Engineering Chemistry Research, 2015, 54, 6269-6281
(20) Ye He, Jian-Jie Li, Yan-Kui Luo, Fei Song,* Xiu-Li Wang* and Yu-Zhong Wang, Coating Novozyme435 with an ionic liquid: morethan just a coating for the efficient ring-opening polymerization of d-valerolactone, RSC Advances 2015, 5, 68276-68282
(21) Gong-Peng Lin, Ling Lin, Xiu-Li Wang,* Li Chen,* and Yu-Zhong Wang, PBT/PC Blends Compatibilized and Toughened via Copolymers inSitu Formed by MgO-Catalyzed Transesterification, Industrial & Engineering Chemistry Research 2015, 54, 1282?1291
(22)Jun-Bo Zhang, Xiu-Li Wang*, Qiu-Xia He, Hai-Bo Zhao, Yu-Zhong Wang*, A novel phosphorus-containing poly(1,4-cyclohexylenedimethylene terephthalate) copolyester: synthesis, thermal stability, flammability and pyrolysis behavior, Polymer Degradation and Stability, 2014,108:12-22
(23)Ming-Jun Chen, Chun-Rong Chen, Yi Tan, Jian-Qian Huang, Xiu-Li Wang*, Li Chen, Yu-Zhong Wang  *, Inherent Flame-Retardant Flexible Polyurethane Foam with Low Content of Phosphorus-Containing Cross-Linking Agent  , Industrial & Engineering Chemistry Research, 2014, 53(3), 1160-1171
(24) Song F*, Shi WT, Dong XT, Han X, Wang XL*, Chen SC, Wang YZ, Fennel-like nanoaggregates based on polysaccharide derivatives and their application in drug delivery, Colloids Surf B: Biointerfaces 2014, 113: 501-504
(25)Ming-Jun Chen, Ying-Jun Xu, Wen-Hui Rao, Jian-qian Huang, Xiu-Li Wang*, Li Chen, and Yu-Zhong Wang*, Influence of Valence and Structure of Phosphorus-Containing Melamine Salts on the Decomposition and Fire Behaviors of Flexible Polyurethane Foams, Industrial & Engineering Chemistry Research, 2014, 53, 8773-8783
(26) Hai-Chun Dang, Wu-Cheng Nie, Xiu-Li Wang,* Wen-Tao Wang, Fei Song, and Yu-Zhong Wang*, Dandelion-like CaCO3 microspheres: ionic liquid assisted biomimetic synthesis and in situ fabrication of poly(ε-caprolactone)/CaCO3 composites with high performance, RSC Advances, 2014, 4(96), 53380-53386
(27) Zheng J, Song F*, Wang XL*, In-situ synthesis, characterization and antimicrobial activity of viscose fiber loaded with silver nanoparticles, Cellulose, 2014, 21, 3097
(28) Tong XZ, Song F*, Li MQ, Wang XL*, Chin IJ, Wang YZ, Fabrication of graphene/polylactide nanocomposites with improved properties, Composites Science and Technology 2013; 88: 33-8
(29)Zhang YR, Wang XL  *  , Zhao GM, Wang YZ  *  , Influence of oxidized starch on the properties of thermoplastic starch, Carbohydrate Polymers, 2013, 96: 358-364
(30)  Dong FX, Xu C, Tong XZ, Wang XL  *  , Song F, Wang YZ, Thermodynamics and kinetics of Novozym 435 catalyzedring-opening polymerization of 1,4-dioxan-2-on, Journal of Molecular Catalysis B: Enzymatic 2013, 96: 40-45
(31)  Lin GP, Chen L*, Wang XL*, Jian RK, Zhao B, Wang YZ  ,   Aluminum hydroxymethylphosphinate and melamine pyrophosphate:   synergistic   flame retardance and smoke suppression for glass fiber reinforced polyamide 6, Industrial & Engineering Chemistry Research, 2013, 52: 15613-15620
(32) Liang-Jie Li, Rong-Tao Duan, Jing-Bo Zhang, Xiu-Li Wang*, Li Chen, Yu-Zhong Wang*, Phosphorus-containing poly(ethylene terephthalate): solid-State polymerization and its sequential distribution, Industrial & Engineering Chemistry Research, 2013, 52(15), 5326-5333
(33)   Jing XK, Guo DM, Zhang JB, Zhai FY, Wang XL*, Chen L, Wang YZ*  , Thermal transition behavior, thermal stability, and flame retardancy of low-melting-temperature copolyester: comonomer effect, Industrial & Engineering Chemistry Research, 2013, 52, 4539-4546
(34) Xin-Ke Jing, Xiao-Shi Wang, De-Ming Guo Yi Zhang, Fei-Yu Zhai, Xiu-Li Wang*, Li Chen, Yu-Zhong Wang*, The high-temperature self-crosslinking contribution of azobenzene groups to the flame retardance and anti-dripping of copolyesters, Journal of Material Chemistry A, 2013, 1(32), 9264-9272

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沙发
发表于 2018-4-29 09:20:53 | 只看该作者
疏水矿化棉纤维的制备及其油水分离性能
袁雪 , 龙曼成 , 宋飞 , 汪秀丽 ,  王玉忠
四川大学化学学院 环保型高分子材料国家地方联合工程实验室 环境友好高分子材料教育部工程研究中心 成都 610064

通讯作者: 汪秀丽, xiuliwang1@163.com
基金项目: 国家自然科学基金(基金号51773134)和四川省青年科技创新研究团队计划(项目号2017TD0006)资助


摘要: stringUtils.convertMathHtml(通过交替浸渍法(ASP)在天然棉纤维表面进行仿生矿化均匀地制备了碳酸钙涂层,并使用硬脂酸钠进一步对棉纤维/碳酸钙复合物进行表面疏水改性,得到了具有良好疏水性能的棉纤维材料.FTIR结果显示,碳酸钙与棉纤维之间以氢键结合.改性后的疏水棉纤维具有优异的吸附选择性,能够实现油水分离.改性棉纤维对多种油类均具有良好的吸附能力,对二甲基硅油和氯仿循环吸附30次后,吸附保持率仍可达到80%以上,表现出良好的重复使用性能.该疏水矿化棉纤维具有环境友好,成本低廉,制备方法简单等优势,在油水污染物处理方面具有潜在应用价值.)



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