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李战雄-ku平台官网入口


个人简介

197012月出生,教授、博士生导师,国家精细化工产业联盟专家,《有机硅材料》编委。20017月于北京理工大学获得材料学博士学位;20018~20039月在中国科学院上海有机化学研究所博士后研究;201510~201610月英国曼彻斯特大学访问学者。20039月进入苏州大学工作至今。在纺织用特种功能材料研究领域发表论文160余篇,申请国家发明专利48份,其中已获授权32份,成果转化10项。迄今作为主持人完成国防科工委军品配套科研项目子项目3项,主持完成国家自然科学基金面上项目2项。


研究方向及主讲课程

主要研究方向:纺织用特种功能材料制备及应用

主讲本科生课程:  《高分子化学与物理》,《纤维化学与物理》

主讲硕士研究生课程:《有机合成》

主讲博士研究生课程:《有机合成与分析》


荣誉及主要获奖情况  

荣誉:


近五年主持的科研项目

1.北化集团科技创新专项,“有机硅聚合物型键合剂研制”,20219~20238

2.国家自然科学基金面上项目,“含硫(vi)长杂链替代长碳链全氟烷基的基础研究”(no. 51673137),20171~202012

3.国防科工委“十二五”军品配套科研项目子项目,高性能xxxx研制, 20166~202012

4.国家自然科学基金面上项目,“桥基可诱导短氟烷基侧链定向的含氟聚硅氧烷结构与表面性能关系研究”(no. 51273140),20131~201612

5. 防灾减灾国家重点实验室开放课题,基于sio2纳米晶须化的剪切增稠液体及耐久性抗穿刺柔性装甲应用机理(dpmeikf 201305),201312~201512


近五年发表的代表性论文

[1] fanxiang, yakunzong, miqiang chenzhanxiong li*. preparation of super-hydrophobic cotton fabrics with thecontrolled roughing surface by carbene polymerization grafting. progress in organic coatings2022163106635

[2] kexin liu, you wu,yanni xi, zhanxiong li*. cotton fiber modifying via n-phenyl anhydride in-situring-opening polymerization with controllable surface morphology and itswettability. progress in organic coatings202216210656510.1016/j.porgcoat.2021.106565

[3] faqiang wang, xueting wang, yanni xi, kexin liu, zhanxiong li*. electrostatic spinning based on aqueous polyurethane block modified polycaprolactone and its hydrophilic study. macromolecular materials and engineering.2021:(10.1002/mame.202100573

[4] wulong li, yanni xi, zhanxiong li*. anisotropic overgrowth of metal heterostructures regulated by a hydrophobic grafting layer towards self-cleaning and oil/water separation applications. surface & coatings technology. 2021427:127814:(

[5] wulong li, faqiang wang, zhanxiong li*. a novel strategy for fabricating robust superhydrophobic and superoleophilic metal mesh via diazonium chemistry. colloids and surfaces a: physicochemical and engineering aspects2021630127570

[6]yanni xi, kexin liu, faqiang wang, jinping guan, zhanxiong li*. construction of hollow hierarchical micro-nanostructure surface on polyester via in-situ chlorosilane polymerization and its’ superhydrophobicity. polymer2021233124189

[7] lizhanxiong  *. coaxial electrospun biomimetic copolymer fibres for application in diffusion magnetic resonance imaging. bioinspiration & biomimetics,202116 046016https://doi.org/10.1088/1748-3190/abedcf

[8]wulong li, xueting wang, you wu, mingqiang chen, zhanxiong li*. one-step spontaneous grafting via diazonium chemistry for the fabrication of robust bionic multifunctional superhydrophobic fabric. surface and coating technology, 2021,407126802https://doi.org/10.1016/j.surfcoat.2020.126802

[9] yanni xi, yi sun,zhanxiong li*. a facile fabrication of polysiloxane micro/nanostructure with controllable morphology and super-hydrophobicity. polymer, 2021,213:123317 (doi10.1016/j.polymer.2020.123317)

[10] kexin liu, lei chen,zhanxiong li*. preparation of tetrafluoro-λ6-sulfanyl bridged-bonding perfluoroalkyl styrene and its emulsion co-polymerization with acrylate monomers for cotton fabrics. journal of applied polymer science. 2021;138:e49687.doi:10.1002/app.49687

[11] qun liu, you wu, zhanxiong li*. facile preparation of super-hydrophobic fabrics composed of fibres with microporous or microspherical coatings using the static breath figure method. progress in organic coatings. 2020149: 105938https://doi.org/10.1016/j.porgcoat.2020.105938

[12] guangtao chang, lei chen, zhanxiong li*. preparation of tetrafluoro-λ6-sulfanyl bridged-bonding perfluoroalkyl phenylethyltrichlorosilane and its application on fabric finishing. material research express. 2020,7(7):075305(https://doi.org/10.1088/2053-1591/aba559)

[13] wulong li, zhanxiong li*. a highly stretchable and biodegradable superamphiphobic fluorinated polycaprolactone nanofibrous membrane for antifouling. progress in organic coatings2020,147:105776https://doi.org/10.1016/j.porgcoat.2020.105776

[14] faqiang wang, lei chen, dong xuzhanxiong li*. synthesis of novel tetrafluoro-λ6-sulfanyl bridged fluoroalkyltrichlorosilanes and the property of the self-assembled monolayers (sams). chemical papers, 202074:4125-4133https://doi.org/ 10.1007/s11696-020-01233-y

[15] yakun zong, lei wang, yi sun, zhanxiong li*. preparation of novel side-chain fluoroalkyl polyether oligomers with terminal acrylate for emulsion copolymerization and application on cotton fabric finishing. chemical papers20197310:2563-2574doi: 10.1007/s11696-019-00810-0

[16] mingqiang chen, lin wu, zhanxiong li*. synthesis of fluoroalkylsilane coupling agents and their self-assembled monolayers. chemical papers20197310:2551-2562https://doi.org/10.1007/s11696-019-00809-7

[17] you wu, anqi liu, wulong li, zhanxiong li*. synthesis of carborane acrylate and flame retardant modification on silk fabric via graft copolymerization with phosphate acrylate. fire and materials, 201943880-891https://doi.org/10.1002/fam.2748

[18] xueting wang, yanhua yuan, lei chen, zhanxiong li*. synthesis of branched gem-bisfluoroalkylsilane with short-chain perfluoroalkyl moieties and its self-assembled monolayers. materials research express, 20196086417https://doi.org/10.1088/2053-1591/ab1bc1

[19] yi sun, dejin tong, zhanxiong li*. ceramization of carborane-poss and coating on carbon fiber via precursor infiltration-pyrolysis (pip) method. fibers and polymers2019, 2081564-1576. (https://doi.org/10.1007/s12221-019-8898-8)

[20] wulong li, haipeng wang, zhanxiong li*. hierarchical structure microspheres of pcl block copolymers via electro-spraying as coatings for fabric with mechanical durability and self-cleaning ability. polymers for advanced technologies2019302321-2330.https://doi.org/ 10.1002/pat.4660

[21] qun liu, haipeng wang, lei chen, wulong li, yakun zong, yi sun, zhanxiong li*. enzymatic degradation of fluorinated poly(ɛ-caprolactone) (pcl) block copolymer films with improved hydrophobicity. polymer degradation and stability2019,165:27-34.https://doi.org/10.1016/j.polymdegradstab.2019.04.018

[22] wulong li, haipeng wang, zhanxiong li*. preparation of golf ball-shaped microspheres with fluorinated polycaprolactone via single-solvent electrospraying for superhydrophobic coatings. progress in organic coatings, 2019,131:276-284.( https://doi.org/ )

[23] yakun zong, dejin tong, zhanxiong li*. synthesis, pyrolysis of a novel carborane ceramic precursor and coating on carbon fiber. high performance polymer, 2019, 31(9-10)1085-1100.https://doi.org/10.1177/095400831882305

[24] lei chen, yanhua yuan, zhanxiong li*. preparation of fluoropolymer with gem-bis-fluoroalkylated side-chain and its′ application on cotton fabric finishing. canadian journal of chemistry, 2019, 97(2): 147-153.https://doi.org/10.1139/cjc-2017-0761

[25] dejin tong, haipeng wang , lei chen, lei wang, zhanxiong li*. a novel carborane-containing ceramic precusor: synthesis, characterization and ceramic conversion mechanism. high performance polymers, 2019,31(6)694-706https://doi.org/10.1177/0954008318788389

[26] qun liu, zhanxiong li*. terminal silanization of perfluoropolyether, polydimethylsiloxane, their blocking polymer and the self-assembled films on plasma-treated silicon surfaces. chemical papers, 2019,73:105-117https://doi.org/ 10.1007/s11696-018-0547-y

[27] lei chen, li dai, zhanxiong li*. modification of silk fabric with 4-nonafluorobutyl-4’-azobenzene by controlled grafting polymerization via atrp and its’ reversible hydrophobicity-hydrophilicity response. materials research express,20185(8):085313https://doi.org/10.1088/2053-1591/aad48f

[28] haipeng wangwulong li, zhanxiong li*. a facile strategy for preparing of pcl/peg block copolymer microspheres via eletrospraying and coating on cotton fabrics. macromolecular materials and engineering2018303, 1800164(https://doi.org/10.1002/mame.201800164)

[29] haipeng wang, wulong li, zhanxiong li*. preparation of fluorinated pcl porous microspheres and super-hydrophobic coating on fabric via electrospraying. nanoscale20181018857-18868.https://doi.org/10.1039/c8nr05793a

[30]lei wang, lei chen, zhanxiong li*. end-blocked silanizationof side-chainfluoroalkyl polyether and its′surface properties. australian journal of chemistry,201871:855-862https://doi.org/10.1071/ch18126

[31] fenglei zhou*zhanxiong lijulie e. goughpenny l. hubbard cristinaccegeoff j.m. parker*. axon mimicking hydrophilic hollow polycaprolactone microfibres for diffusion magnetic resonance imaging. materials and design,2018, 137: 394-403https://doi.org/10.1016/j.matdes.2017.10.047 0

[32] 袁艳华,张锦盼,朱玉赢,孙弋,钱小康,李战雄*. 短氟碳链拒水拒油整理剂合成及织物整理应用. 印染,2016111-5

[33] 文少卿,王蕾,王卫,李战雄*. aba型含氟聚丙烯酸酯-聚醚嵌段共聚物合成及其表面活性研究[j]. 印染助剂,2016335):6-10

[34] 王卫,文少卿,李战雄*. 一种硅氧烷基甲基丙烯酸酯及共聚物乳液的制备与整理应用. 印染助剂,2016337):18-21


授权发明专利

[1] 吴优,李战雄,王雪婷,陈明强. 一种聚氨基酸接枝改性拒水织物及其制备方法. 专利号:202011043939.8

[2]李战雄,西艳妮,刘可心,孙弋. 防油防污自清洁功能性复合柔性材料及其制备方法. 专利号:202010444560.1

[3]李战雄,袁艳华. 一种全氟烷基聚烯酸酯防水剂、制备方法及应用,专利号: 201610414212.3

[4] 李战雄,刘安琪. 一种含硫长杂链全氟烷基烯酸酯及其制备方法,专利号: 201610414213.8

[5] 王海朋,李战雄. 一种亲水性聚(ω-己内酯)及其制备方法,专利号:201610260974.2

[6] 李战雄,王蕾,童德进. 王海朋. 一种含氟烷基共聚醚的制备方法,专利号: 201810691568.0

[7] 李战雄,戴礼. 一种含氟聚醚二元醇的制备方法. 专利号: 201810691514.4

[8]李战雄,刘群,戴礼. 一种智能型织物及其制备方法,专利号: 201710254844.2

[9]李战雄,陈蕾,戴礼. 一种亲疏水性智能化真丝织物及其制备方法,专利号: 201710284282.6

[10] 李战雄,王蕾,王海朋. 一种含氟聚氨酯的制备方法,专利号:201910305665.6

[11]李战雄,王蕾,王海朋. 童德进. 一种含氟聚氨酯及其制备方法与应用,专利号: 201611173215.9

[12]李战雄,孙弋,纵亚坤. 有机硅压敏胶粘剂及其制备方法, 专利号:201810206386.x

[13]李战雄,戴礼,孙弋. 一种表面亲疏性可转换的智能型织物整理剂及其制备方法,专利号: 201710254855.0

[14]李战雄,李武龙,王海朋. 一种疏水型聚己内酯及其制备方法,专利号: 201810356614.1

[15] 李战雄,刘群,李武龙. 一种超亲水高分子微球及其制备方法与由其制备的超亲水织物,专利号: 201810475629.x


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联系电话:0512-67164993   e-mail: lizhanxiong@suda.edu.cn



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