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聚合物加工原理与设备科研团队介绍

来源:   时间:2024-03-15 

聚合物加工原理与设备科研团队介绍

聚合物加工原理与设备科研团队依托厦门市聚合物加工原理与应用重点实验室,团队负责人为李艳辉教授,团队成员包括赖桂文副教授,龚晓叁(副教授)、谢建达(博士讲师)、毛龙(副教授)、袁尧(副教授)、吴堃(讲师),团队近年来主持国家自然科学基金三项、省级、市厅级项目十余项,承担企业横向课题十余项,企业到账经费超过五百万元,发表学术论文67篇,SCI收录59篇,EI收录8篇;授权国家发明专利25项,转化7项;获福建省科技进步奖二等奖2项,吉林省自然科学三等奖1项,厦门市科技进步奖一等奖1项。

 

1. 团队成员简介

 

李艳辉,女,博士,19769月生,教授,吉林省第八批拔尖创新人才,厦门理工学院硕士生导师,长春理工大学材料学专业博士生导师。兼任厦门市聚合物加工原理与应用重点实验室主任。

近年来主要从事生物医用高分子设计与合成、基于高分子的基因/药物传输体系、高分子抗菌材料、高分子杂化光催化剂的研究等方面的研究工作,先后主持了国家自然科学基金项目、吉林省科技发展计划项目、吉林省教育厅科学技术研究规划重大和“十三五”科学技术项目、中国博士后科学基金等项目。现正主持国家自然科学基金面上项目、吉林省教育厅科学技术研究规划重大项目、吉林省科技发展计划面上项目等。近五年在Nature CommunicationsNano lettersNano TodayBiomaterialsJournal of Hazardous MaterialsJournal of Controlled Release等国内外SCI学术期刊发表论文60余篇,其中中科院I区论文10余篇;出版了学术专著3部。获吉林省科技进步二等奖1项,三等奖1项,其它省、市奖励3项。

 

 

 

赖桂文,男,硕士/在职博士,196612月出生,1987年获福州大学矿山机电专业学士学位,1992年获华侨大学机械制造及自动化专业硕士学位,2003年在职攻读华侨大学自动控制与检测专业博士学位。2004年获副教授职称。现任金沙9159游乐场材料加工系教师,聚合物成型及装备控制科研团队负责人。

近年来主要从事材料成型及控制工程专业的教学科研,在材料成型工艺及控制、自动控制与检测、智能检测设备、智能制造与装备领域进行研究与工程应用工作。在气密性测试技术、负压真空干燥技术、材料成型自动生产组装技术等方面承担了近300万元的校企横向研发课题,发表学术论文十篇,受理或授权国家发明专利4项。

 

 

 

龚晓叁,男,副教授,博士研究生,曾任材料加工系主任、高分子材料与工程系主任、模具中心主任、厦门市聚合物加工原理与应用重点实验室副主任。

近年来,主要从事轻合金体积成型和橡塑材料加工方面的研究工作,主持完成了20余项各级科研项目的研究;申请授权专利15项;已在国内外学术期刊发表论文20余篇。讲授《材料成型设备》、《高分子材料加工工艺与设备》、《橡胶工艺学》等课程。

 

 

 

 

 

谢建达,男,博士,19818月生,厦门理工学院高分子材料与工程系主任,硕士生导师。2003年获中国科学技术大学应用化学专业学士学位,2008年获中国科学技术大学高分子化学与物理专业博士学位。

近年来,主要从事聚合物纳米复合材料、工程塑料、热塑性弹性体等高性能高分子材料的设计、制备、性能与应用研究;先后主持或参与国家自然基金项目、福建省自然基金项目、省教育厅科研项目、校企产学研合作项目等课题10余项;在国内外著名期刊发表学术论文20余篇;授权发明专利19项;获福建省科技进步二等奖1项,厦门市科技进步奖一等奖1项,深圳市技术发明奖1项。

 

 

 

 

 

毛龙,男,博士,19884月生,副教授,硕士生导师,厦门市聚合物加工原理与应用重点实验室副主任。2014年获湖南工业大学材料学硕士学位,20186月获湖南工业大学材料科学与工程专业博士学位。主要从事致力于层状黏土的结构设计和功能化,并将其应用于制备高性能可降解活性高分子包装材料,为实现复合高分子包装材料的高性能、绿色化和全降解性进行理论和实践探索。

近年来主持国家自然科学基金1、省自然科学基金2项、省中青年教师教育科研项目2项以及企业科研课题的研究工作,在国内外学术期刊上发表学术论文20余篇,其中以第一作者或通讯共发表SCIEI权威期刊收录20篇,申请国家发明专利20余项,其中第一发明人授权发明专利10余项。曾获2018年度中国包装行业科学技术奖二等奖,2015年度厦门理工学院宸鸿奖教金二等奖等。

 

 

 

袁尧,男,博士,预聘副教授,20196月获得中国科学技术大学安全科学与工程专业博士学位。博士期间作为主要研发人员参与国家重点基础研究发展计划(973)项目、“十二五”国家科技支撑计划及国家自然科学基金等基础研究项目。

近年来主要从事无卤阻燃剂制备、设计及改性;阻燃聚合物复合材料的制备及应用;聚氨酯材料的热解与燃烧、烟气毒性等研究。近年来主持多个省部级项目,如福建省自然科学基金青年基金项目,福建省中青年教师教育科研项目,为功能化高分子材料的制备、性能测试及机理分析奠定了实验基础和理论依据。近5年,以第一作者或通讯共发表SCI收录论文10余篇,Top期刊7篇,获授权发明专利3项,参加2次国际学术会议并作口头报告,2020年获得福建省第九批国内引进高层次人才(C类),2022年获厦门市高层次引进人才(C类)。

 

 

 

 

吴堃,男,博士,讲师,1989年生。2011年本科毕业于厦门大学金沙9159游乐场,2016年博士毕业于复旦大学高分子科学系。毕业后曾就职于中船重工725研究所厦门双瑞船舶涂料有限公司。2021年进入金沙9159游乐场(中国)有限公司-环球百科。近年来研究工作主要集中于:(1)有机抗菌(卤胺、天然抗菌生物大分子)材料制备及抗菌性能研究;(2)前驱体对通用塑料、纤维的接枝、共混等改性;(3)添加剂多功能化及其对材料微观结构的影响;(4)防污涂层的设计与性能研究。

 

 

 

 

 

2. 主要研究方向

[1] 智能检测设备与仪器的研制及应用

[2] 橡塑加工与成型模具设计

[3] 高性能高分子材料设计与制备

[4] 活性高分子包装材料的设计与制备

[5] 阻燃高分子材料的设计与制备

[6] 抗菌高分子材料的设计与合成

 

近年来团队代表性科研成果

1. 主持政府科研项目

[1] 李艳辉国家自然科学基金面上项目(52173115):用于抗菌治疗的纳米光敏剂的构建与研究2022.01-2025.1258万元,主持

[2] 李艳辉,国家自然科学基金面上项目52073278):具有可控解离性能的多功能纳米颗粒的构建及联合抗肿瘤治疗研究2021.01-2024.1211.6万,第二单位项目负责人

[3] 毛龙,国家自然科学基金青年科学基金项目(52103098):贻贝仿生构建活性包装内涂层及其性能调控机制研究,2022.01-2024.12,主持

[4] 毛龙福建省自然科学基金青年创新项目2021J05265贻贝仿生法构建可降解复合活性包装材料及其性能调控研究,2021.11-2024.11,主持

[5] 袁尧,福建省自然科学基金青年创新项目(2021J05266基于异氰脲酸酯环/二氧化锰纳米层协同阻燃硬质聚氨酯泡沫的设计与性能研究, 2021.11-2024.11,主持;

[6] 毛龙,湖南省自然科学基金青年基金(2019JJ50132基于仿生学原理构建高阻隔、高韧聚乳酸纳米复合材料,2019.01-2021.12,主持

[7] 赖桂文,厦门市科技计划项目(3502Z20193061):气密性测试技术,2019年,主持

[8] 赖桂文,厦门市科技计划项目(3502Z20083032):智能绝缘防护设备测试仪的研发,2008年,主持;

[9] 赖桂文,厦门市科技计划厦门(2022CXY04029):多工位气密性测试技术的研发,研究经费:10万元,2022,主持;

[10] 毛龙,福建省教育厅中青年教师教育科研项目(科技类)(JT180420层状粘土/聚乳酸纳米复合材料的结构调控及其阻隔机理研究,2019.01-2020.12,主持

[11] 吴堃,福建省中青年教师教育科研项目(JAT2103362022.12-2025.12,主持;

[12] 赖桂文,福建省教育厅KJ类科研项目(JK2010055):多功能智能型高压无功补偿系统的研发,2010年,主持;

[13] 谢建达,福建省教育厅项目(JAT200483):静电纺超支化聚苯甲酸酯纳米纤维的制备及驻极性能研究,研究经费:1万元,起止时间:2020.11-2023.10

[14] 谢建达,福建省教育厅项目(JAT170403):三维多孔纳米纤维成型调控机制及其四环素吸附机理研究,研究经费:1万元,起止时间:2017.6-2020.5,主持;

 

2. 承担企业横向课题项目

 

[1] 谢建达,校企产学研合作项目ZK-HX21060高性能RoHS阻燃V0~3级聚丙烯研究经费:50万,起止时间:2021.06-2023.12,主持;

[2] 谢建达,校企产学研合作项目:空气过滤半面罩模具与成型关键技术,研究经费:100万,起止时间:2020.9-2022.12,主持;

[3] 谢建达,校企产学研合作项目:驻极熔喷无纺布制备关键技术研发与产业化,研究经费:50万,起止时间:2020.9-2023.6,主持;

[4] 谢建达,校企产学研合作项目:空气过滤半面罩结构及材料关键技术研发与产业化,研究经费:20万,起止时间:2020.9-2021.12,主持;

[5] 谢建达,校企产学研合作项目:高性能电子冷却液,研究经费:10万,起止时间:2020.06-2027.06,主持;

[6] 赖桂文,校企产学研合作项目(HX15084):成型岛2025,研究经费:25万,2015,主持;

[7] 赖桂文,校企产学研合作项目(D2017140):气密性测试技术,研究经费:30万元,2017,主持;

[8] 赖桂文,校企产学研合作项目(HX18176):花洒水花智能检测技术及装置的研发,研究经费:30万元,2018,主持;

[9] 赖桂文,校企产学研合作项目(HX19007):高精度气密性测试技术的研发,研究经费:30万元,2019,主持;

[10] 赖桂文,校企产学研合作项目(HX19033):多型腔气密性测试技术的研发,研究经费:30万元,2019,主持;

[11] 赖桂文,校企产学研合作项目(HX19088):密闭性气密性测试技术的研发,研究经费:30万元,2019,主持;

[12] 赖桂文,校企产学研合作项目(ZK-HX201104):多模式气密性测试技术的研发,研究经费:45万元,2020,主持;

[13] 赖桂文,校企产学研合作项目(ZK-HX21038):多工位气密性测试技术的研发,研究经费:50万元,2021,主持;

[14] 赖桂文,校企产学研合作项目(ZK-HX22014):花洒试气检测系统的研发,研究经费:30万元,2022,主持;

[15] 袁尧校企产学研合作项目(ZZK-HX22070:一种阻燃多功能高分子材料研发,研究经费:52022,主持

 

3. 科研学术奖励

[1] 吉林省自然科学奖三等奖12022

[2] 吉林省自然科学奖等奖12021

[3] 福建省科技进步二等奖12019

[4] 中国包装行业科学技术奖二等奖12018

[5] 厦门市科技进步奖一等奖12018

[6] 深圳市技术发明奖12012

 

4. 授权国家发明专利

[1] 赖桂文蔡勇斌,等. 气密性测试装置及此气密性测试装置的控制方法,授权专利号:ZL201711137580.9

[2] 谢建达,刘跃军. 纳米无卤阻燃热塑性聚氨酯弹性体及其制备方法,授权专利号:ZL201510703457.3

[3] 谢建达,刘跃军, 宋晓辉, . 黄义彬; 纳米杂化阻燃剂及其制备方法授权专利号:ZL201510701740.2

[4] 谢建达,刘跃军. 纳米杂化阻燃聚酰胺6及其制备方法授权专利号:ZL201510701738.5

[5] 谢建达,张厚安. 自粘型透明耐温保护膜前驱物保护膜及其制备,授权专利号:ZL201510657367.5

[6] 谢建达,邢家思,吴晓舜.一种驻极纳米纤维高效过滤材料及其制备方法,授权专利号: ZL2020101304353

[7] 谢建达刘跃军,等. 一种纳米复合纤维膜及其制备方法,授权专利号:ZL2018105508530

[8] 毛龙,刘跃军,等. 一种高阻隔性纳米粒子增强聚丁二酸丁二醇酯复合薄膜制备方法及产品,授权专利号:ZL201611019234.6

[9] 毛龙,刘跃军,等. 高阻隔性增强聚己内酯复合薄膜及其制备方法,授权专利号:ZL201610515632.0

[10] 毛龙,刘跃军,等. 一种高阻隔性增韧聚乳酸薄膜及其制备方法,授权专利号:ZL201710578905.0

[11] 毛龙,吴慧青,刘跃军,等. 一种增韧耐增塑剂迁移聚氯乙烯材料及其制备方法、应用,授权专利号:ZL201710130322.1

[12] 毛龙,刘跃军,等. 一种抗老化耐迁移增塑聚氯乙烯材料及其制备方法、应用,授权专利号:ZL201710130323.6

[13] 毛龙,刘跃军. 抗熔滴膨胀阻燃聚丁二酸丁二醇酯及其制备方法,授权专利号:ZL201510815148.5

[14] 毛龙,刘跃军,等. 一种聚乳酸抗菌薄膜及其制备方法,授权专利号:ZL201711175637.4

[15] 毛龙,刘跃军,等. 一种聚吡咯/银表面改性层状粘土-聚己内酯抗菌纳米复合薄膜的制备方法,授权专利号ZL201910311978.2

[16] 毛龙,刘跃军,等. 一种聚乳酸-聚吡咯/银复合抗菌薄膜及其制备方法,授权专利号ZL 201811231183.2

[17] 毛龙,刘跃军,等. 一种聚吡咯-聚己内酯抗菌纳米复合薄膜的制备方法,授权专利号ZL 201910311862.9

[18] 毛龙,刘跃军,等.一种聚己内酯抗菌纳米复合薄膜的制备方法,授权专利号ZL 201910311846.X

[19] 毛龙,刘跃军. 一种抗菌阻燃聚己内酯薄膜及其制备方法,授权专利号:ZL201910596318.3

[20] 毛龙,吴慧青,等. 一种表面改性镍铝水滑石/聚乙烯醇纳米复合薄膜及其制备方法,授权专利号:ZL202010181090.4

[21] 胡伟兆,袁尧,宋磊,胡源.一种超支化阻燃聚醚多元醇及其制备方法.专利号:201710059354

 

5. 代表性学术论文

[1] Shang Ludan , Li Wenlong , Wang Xinna, Ma Lijuan, Li Ling, Duan Qian*, Li Yanhui*, Preparation of magnetic Fe3O4@PDA/CuS core-shell nanocomposite as a green photocatalyst. Synthetic Metals. 2023, 292, 117230

[2] Wenlong Li, Ludan Shang, Dafei You, Hao Li, Han Wang, Lijuan Ma, Xinna Wang, Yanwei Li*, Yanhui Li*. Fabrication of Fe3O4@Ti-PDA nanoparticles with enhanced photocatalytic activities for degradation of organic dye[J]. Journal of Physics and Chemistry of Solids, 2023, 172: 111047.

[3] Liu Chong, Li Ling, Guo Zhaopei, Lin lin, Li Yanhui*, Tian Huayu*. PLG-g-mPEG Mediated Multifunctional Nanoparticles for Photoacoustic Imaging Guided Combined Chemo/Photothermal Antitumor Therapy[J]. Chinese Journal of Polymer Science, 2022: 1-9.

[4] Wang Han, Chen Xinyu, Sun Tiantian, Li Yanwei*, Lv Xiaoling, Li Yanhui*, Wang Hengguo*. Cobalt Nanoparticles Embedded into Nitrogen-doped Graphene with Abundant Macropores as a Bifunctional Electrocatalyst for Rechargeable Zinc-air Batteries[J]. Chemistry–An Asian Journal, 2022, 17(15): e202200390.

[5] Zhang Hongxu, Ma Jing, Liu Chong, Li Ling, Xu Caina, Li Yanwei*, Li Yanhui*. Antibacterial activity of guanidinium-based ionic covalent organic framework anchoring Ag nanoparticles[J]. Journal of Hazardous Materials, 2022, 435: 128965.

[6] Li Longwen, Chi Lin, Zhang Hongxu, Wu Shuming, Wang Han, Luo Zhimin, Li Yanwei*, Li Yanhui*. Fabrication of Ti-PDA nanoparticles with enhanced absorption and photocatalytic activities for hexavalent chromium Cr (VI) removal[J]. Applied Surface Science, 2022, 580: 152168.

[7] Huapan Fang, Zhaopei Guo, Jie Chen, Lin Lin, Yingying Hu, Yanhui Li*, Huayu Tian*, Xuesi Chen. Combination of epigenetic regulation with gene therapy-mediated immune checkpoint blockade induces anti-tumour effects and immune response in vivo[J]. Nature Communications, 2021, 12(1): 1-19.

[8] Zhang Yufeng, Wang Dianwei, Liu Feng, Sheng Shu, Zhang Hongxu, Li Wenlong, Li Yanhui*, Tian Huayu*. Enhancing the drug sensitivity of antibiotics on drug-resistant bacteria via the photothermal effect of FeTGNPs. Journal of Controlled Release. 2022, 341: 51-59.

[9] Xue Zhang, Zhenjun Si, Yanbing Wang, Yanhui Li*, Caina Xu*, Huayu Tian*. Polymerization and coordination synergistically constructed photothermal agents for macrophages-mediated tumor targeting diagnosis and therapy. Biomaterials. 2021, 264: 120382.

[10] Feng Liu, Shu Sheng, Dan Shao, Yongqiang Xiao, Yiling Zhong, Jie Zhou, Chai Hoon Quek, Yanbing Wang, Zhiming Hu, Heshi Liu, Yanhui Li,* Huayu Tian,* Kam W. Leong,* Xuesi Chen. A Cationic Metal-Organic Framework to Scavenge Cell-Free DNA for Severe Sepsis Management. Nano Letters. 2021, 21, 6: 2461-2469.

[11] Yuanji Feng, Jiayan Wu, Jie Chen, Lin Lin,Sijia Zhang, Zhiyu Yang, Pingjie Sun, Yanhui Li*, Huayu Tian*, Xuesi Chen. Targeting dual gene delivery nanoparticles overcomes immune checkpoint blockade induced adaptive resistance and regulates tumor microenvironment for improved tumor immunotherapy. Nano Today. 2021, 38: 101194.

[12] Kai Hao, Zhaopei Guo, Lin Lin, Pingjie Sun, Yanhui Li*, Huayu Tian*, Xuesi Chen. Covalent organic framework nanoparticles for anti-tumor gene therapy. Science China Chemistry. 2021, 64(7): 1235-1241.

[13] Chong Liu, Zhaopei Guo, Huimin Feng, Lin Lin, Yuan Cui*,Yanhui Li*, Huayu Tian*. Synthesis of copolymers polyethyleneimine-co-polyphenylalanine as gene and drug co-delivery carrier. Macromolecular Bioscience. 2021, 21(5): 2100033.

[14] Yufeng Zhang, Jing Ma, Dianwei Wang, Caina Xu, Shu Sheng, Jianfeng Cheng, Changjiang Bao, Yanhui Li*, Huayu Tian*. Fe-TCPP@CS nanoparticles as photodynamic and photothermal agents for efficient antimicrobial therapy. Biomaterials science. 2020, 8, 6526–6532.

[15] Jing Ma, Jingpeng Zhang, Lin Chi, Chong Liu, Yanhui Li*, Huayu Tian*. Preparation of poly(glutamic acid) shielding micelles self-assembled from polylysine-b-polyphenylalanine for gene and drug codelivery. Chinese Chemical Letters. 2020, 31(6): 1427-1431.

[16] Yanwei Li, Xue Zhang, Jingpeng Zhang, JingMa, LinChi, Nannan Qiu, Yanhui Li*. Synthesis of a biodegradable branched copolymer mPEG-b-PLGA-g-OCol and its pH-sensitive micelle. Materials Science and Engineering: C. 2020, 108: 110455.

[17] Liu Feng, Lin Lin, Sheng Shu , Xu Caina, Wang Yanbing, Zhang Ying, Wang Dianwei, Wu Jiayan, Li Yanhui*, Tian Huayu*, Chen Xuesi. A glutathione-depleting chemodynamic therapy agent with photothermal and photoacoustic properties for tumor theranostics. Nanoscale. 2020, 12, 1349–1355.

[18] Dianwei Wang, Zhe Zhang, Lin Lin, Feng Liu, Yanbing Wang, Zhaopei Guo, Yanhui Li*, Huayu Tian*, Xuesi Chen. Porphyrin-based covalent organic framework nanoparticles for photoacoustic imaging-guided photodynamic and photothermal combination cancer therapy. Biomaterials. 2019, 223: 119459.

[19] Zhichao Dai, Dongni Li, Lin Chi, Yanwei Li, Bo Gao, Nannan Qiu, Qian Duan, Yanhui Li*. Preparation of porphyrin sensitized three layers magnetic nanocomposite Fe3O4@SiO2@TiO2 as an efficient photocatalyst. Materials Letters. 2019, 241: 239-242.

[20] Yanwei Li, Qian Duan*, Hengguo Wang, Bo Gao, Nannan Qiu, Yanhui Li*. Construction of two-dimensional porphyrin-based fully conjugated microporous polymers as highly efficient photocatalysts. Journal of Photochemistry and Photobiology A: Chemistry. 2018, 356, 370-378.

[21] Chang Xu, Xiuwen Guan, Lin Lin, Qing Wang, Bo Gao, Shuhua Zhang,* Yanhui Li,* Huayu Tian*. pH-Responsive Natural Polymeric Gene Delivery Shielding System Based on Dynamic Covalent Chemistry. ACS Biomaterials Science & Engineering. 2018, 4: 193-199.

[22] Yanhui Li*, Xue Zhang, Jingpeng Zhang, Xin Mu, Qian Duan, Tinghong Wang, Huayu Tian*. Synthesis and characterization of a hyperbranched grafting copolymer PEI-g-PLeu for gene and drug co-delivery. Journal of Materials Science: Materials in Medicine. 2018, 29(5):47.

[23] Yanhui Li, Dehai Zhao, Yanwei Li, Yongzhe Liu, Qian Duan*, Toyoji Kakuchi. Synthesis of water-soluble and thermoresponsive phthalocyanine ended block copolymers as potential photosensitizer. Dyes & Pigments. 2017,142:88-99.

[24] YunFei Han, Qian Duan, Yanhui Li*, Jian Tian*. In vitro and in vivo investigation of chitosan–polylysine polymeric nanoparticles for ovalbumin and CpG co-delivery[J]. Rsc Advances. 2017, 7(63):39962-39969.

[25] Yao Yuan, Bin Yu, Wei Wang*, The influence of poorly-/well-dispersed organo-montmorillonite on interfacial compatibility, fire retardancy and smoke suppression of polypropylene/intumescent flame retardant composite system, Journal of Colloid and Interface Science. 2022, 622367-377.

[26] W. Liang, B. Yu, W. Wang, Y. Xiao, Yao Yuan*, A triazine-based hyperbranched char-forming agent for efficient intumescent flame retardant Poly (lactic acid) composites, Composites Communications, (2022) 101225.

[27] Yao Yuan, Wei Wang, Yongqian Shi, Lei Song, Chao Ma*, Yuan Hu*, The influence of highly dispersed Cu2O-anchored MoS2 hybrids on reducing smoke toxicity and fire hazards for rigid polyurethane foam, Journal of Hazardous Materials. 2019, 382, 121028.

[28] Yao Yuan, Yongqian Shi, Bin Yu, Jing Zhan, Yan Zhang, Lei Song, Chao Ma*, Yuan Hu*, Facile synthesis of aluminum branched oligo(phenylphosphonate) submicro-particles with enhanced flame retardance and smoke toxicity suppression for epoxy resin composites. Journal of Hazardous Materials. 2020, 381, 121233.

[29] Wei Wang, Yao Yuan, Bin Yu, Kim Meow Liew, Richard K.K. Yuen, Jiajia Liu, Yuan Hu*, Controlled self-template synthesis of manganese-based cuprous oxide nanoplates towards improved fire safety properties of epoxy composites. Journal of Hazardous Materials. 2020, 387, 122006.

[30] Yao Yuan, Wei Wang, Yi Xiao, Anthony Chun Yin Yuen, Long Mao, Haifeng Pan, Bin Yu*, Yuan Hu*, Surface modification of multi-scale cuprous oxide with tunable catalytic activity towards toxic fumes and smoke suppression of rigid polyurethane foam. Applied Surface Science. 2021

[31] Yao Yuan; Bin Yu; Yongqian Shi; Long Mao; Jianda Xie; Haifeng Pan; Yuejun Liu*; and Wei Wang*; Insight into Hyper-Branched Aluminum Phosphonate in Combination with Multiple Phosphorus Synergies for Fire-Safe Epoxy Resin Composites, Polymers, 2020, 12: 64-78.

[32] Yao Yuan, Bin Yu, Yongqian Shi, Chao Ma, Lei Song, Weizhao Hu*, Yuan Hu*, Highly efficient catalysts for reducing toxic gases generation of rigid polyurethane foam nanocomposites: A comparative investigation. Composites Part A: Applied Science and Manufacturing. 2018, 112: 142-154.

[33] Yao Yuan, Chao Ma, Yongqian Shi, Lei Song, Yuan Hu*, Weizhao Hu*, Highly-efficient reinforcement and flame retardancy of rigid polyurethane foam composites, Industrial & Engineering Chemistry Research. 2016, 55, 10813–10822.

[34] Yao Yuan, Chao Ma, Yongqian Shi, Lei Song, Yuan Hu*, Weizhao Hu*, Highly-efficient reinforcement and flame retardancy of rigid polyurethane foam with phosphorus-containing additive and nitrogen-containing compound, Materials Chemistry and Physics.

[35] Mao Long*, Bai Zeqing, Yao Jin, et al. Development of novel poly(lactic acid) active multilayer composite films by incorporating catechol-functionalized layered clay into chitosan/poly(vinyl alcohol) coatings[J]. Progress in organic coatings, 2022, 170: 107000

[36] Lei Yongzhen, Mao Long*, Yao Jin, et al. Improved mechanical, antibacterial and UV barrier properties of catechol-functionalized chitosan/polyvinyl alcohol biodegradable composites for active food packaging[J]. Carbohydrate Polymers, 2021,264:117997

[37] Lei Yongzhen, Mao Long*, et al. Development of catechol-functionalized chitosan/poly(vinyl alcohol) nanocomposite films incorporated with dual network coated layered clay for active packaging applications[J]. Journal of Applied Polymer Science, 2021, e5125110.1002/app.51251

[38] Lei Yongzhen, Mao Long*, Yao Jin*, et al. Efficient Gas Barrier and Antibacterial Properties of Poly(lactic acid) Nanocomposites: Functionalization with Phytic Acid–Cu(II) Loaded Layered Clay[J], Materials, 2020, 13(9), 2033

[39] Mao Long*, Xie Jianda, Wu Huiqing and Liu Yuejun*. Mussel-Inspired Approach to Constructing Dual Network Coated Layered Clay for Enhanced Barrier and Antibacterial Properties of Poly(vinyl alcohol) Nanocomposites[J], polymers, 2020, 12(9):2093

[40] Mao Long, Liu Jing-yi, Zheng Si-jie, et al. Mussel-inspired nano-silver loaded layered double hydroxides embedded into a biodegradable polymer matrix for enhanced mechanical and gas barrier properties[J], RSC Advances, 2019, 9: 5834-5843

[41] Mao Long, zheng Si-jie; Liu Jing-yi, et al. Antibacterial and mechanical properties of mussel-inspired layered clay reinforced poly(lactic acid)-polypyrrole multilayer composite films[J], Nanoscience and Nanotechnology Letters, 2018, 10(12): 1625-1632

[42] Mao Long, Liu Yuejun*, et al. Enhanced mechanical and gas barrier properties of poly(ɛ-caprolactone) nanocomposites filled with tannic acid-Fe() functionalized high aspect ratio layered double hydroxides[J]. Materials Chemistry and Physics, 2018, 211:501-509

[43] Mao Long, Liu Yuejun*, et al. Poly(ε-caprolactone) filled with polydopamine-coated high aspect ratio layered double hydroxide: Simultaneous enhancement of mechanical and barrier properties[J], Applied Clay Science, 2017,150 :202-209SCI

[44] Mao Long, Liu Yuejun*, et al. Poly(ε-caprolactone) Nanocomposites with Layered Double Hydroxides Modified by in-situ Grafting Polymerization: Structure Characterization and Barrier Properties [J]. Journal of Applied Polymer Science. 2017, 134: 45320-45327.SCI

[45] Jianda Xie; Lihua Hu; Wenfang Shi*; Xiaoxu Deng; Zhuangqi Cao; Qishun Shen; Synthesis and nonlinear optical properties of hyperbranched polytriazole containing second-order nonlinear optical chromophore, Journal of Polymer Science Part B: Polymer Physics, 2008, 46: 1140-1148.

[46] Jianda Xie; Lihua Hu; Wenfang Shi*; Xiaoxu Deng; Zhuangqi Cao; Qishun Shen; Synthesis and Characterization of Hyperbranched Polytriazole via an “A2 + B3” Approach Based on Click Chemistry, Polymer International, 2008, 57: 965-974.

[47] Jianda Xie; Xiaoxu Deng; Zhuangqi Cao; Qishun Shen; Wenquan Zhang; Wenfang Shi*; Synthesis and second-order nonlinear optical properties of hyperbranched polymers containing pendant azobenzene chromophores, polymer, 2007, 48: 5988-5993.

[48] Wu, Kun; Li, J.; Chen, X.; Yao, J.; Shao, Z., Synthesis of novel multi-hydroxyl N-halamine precursors based on barbituric acid and their applications in antibacterial poly(ethylene terephthalate) (PET) materials. Journal of Materials Chemistry B 2020, 8 (37), 8695-8701.

[49] Wu, Kun; Zhao, Y.; Li, J.; Yao, J.; Chen, X.; Shao, Z., Crystallization, Mechanical, and Antimicrobial Properties of Diallyl Cyanuric Derivative-Grafted Polypropylene. Acs Omega 2021, 6 (19), 12794-12800.

[50] Mingming Zhou, Jianda Xie, Suting Yan, Xiaomei Jiang, Ting Ye, Weitai Wu*, Graphene@Poly(phenylboronic acid)s Microgels with Selectively Glucose-Responsive Volume Phase Transition Behavior at a Physiological pH, Macromolecules, 2014, 47(17): 6055-6066.

[51] Suting Yan, Jianda Xie, Qingshi Wu, Shiming Zhou, Anqi Qua, Weitai Wu*, Highly efficient solid polymer electrolytes using ion containing polymer microgels, Polymer Chemistry, 2015, 6, 1052-1055.

[52] Huiqing wu*; Jianda Xie; Long Mao; One-pot assembly tannic acid-titanium dual network coating for low-pressure nanofiltration membranes, Separation and Purification Technology, 2020, 233: 116051-116059.

 

 

 

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