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宁波大学材料科学与化学工程学院导师教师师资介绍简介-许琳琼

本站小编 Free考研考试/2021-04-11


姓 名:许琳琼
联系地址:宁波市江北区风华路818号龙赛理科南楼
电子邮件:xulinqiong@nbu.edu.cn
个人基本信息:
博士,副教授,硕士生导师。2008年7月获安徽大学学士学位,2013年12月获华南理工大学博士学位。2014年2月至2017年7月华南理工大学博士后,先后任助理研究员、副研究员;2017年8月以“学术骨干”引进宁波大学,任副教授。
研究领域:
1)高分子微孔发泡材料的可控制备与功能化
2)界面太阳能海水淡化装置的设计及构建
3)MOFs材料的制备及其在污水处理中的应用
研究项目:
[1]国家自然科学基金青年科学基金,微孔发泡材料多峰泡孔结构与表面润湿性能调控及机理研究,**,2016.01–2018.12,20万元,主持
[2]广东省自然科学基金博士启动项目,多峰泡孔结构发泡材料的可控制备与表面润湿性能研究,2014A,2015.01–2018.01,10万元,主持
[3]中国博士后科学基金面上资助项目,微孔材料多峰泡孔结构的设计、调控和功能化应用,2014M562173,2014.07–2016.06,5万元,主持
[4]中国博士后科学基金面上资助,基于立构复合晶的高耐热聚乳酸微孔支架可控制备及机理,2018M632438,2018.03–2020.02,5万,主持
[5]2018年海曙区重大产业技术创新专项,汽车用新型轻质高强复合材料成型制造关键技术研发,201803A002,2017.01–2019.12,100万,主持
[6]宁波市自然科学基金,高耐热聚乳酸立构复合物微孔材料的可控制备及机理研究,2018A610036,2018.09–2020.09,5万,主持
[7]宁波市自然科学基金,基于微孔发泡材料的表面微流控器件可控构筑与应用研究,2019A610159,2019.01–2020.12,5万,主持
研究成果:
[1]JingjingZhao,Linqiong Xu(corresponding author), Yaozhuo Su, Hongwei Yu, Hui Liu, Shaoping Qian, Wenge Zheng, Yongqing Zhao, Zr-MOFs loaded on polyurethane foam by polydopamine for enhanced dye adsorption, Journal of Environmental Science, 2021, 101:177–188
[2]Xiang Lu, Hongwei Yu, LihuaZhang,Yongfeng Zheng,Linqiong Xu,Yongqing Zhao, Flexible ethylene propylene diene monomer/paraffin wax vulcanizate with simultaneously increased mechanical strength, thermal-energy storage, and shape-memory behavior, Energy and Fuels, 2020, 34: 9020–9029
[3]Linqiong Xu, Hanxion Huang, Tuning cell structure and expansion ratio of thick-walled biodegradable poly(lactic acid) foams prepared using supercritical CO2, Journal of Cellular Plastics, 2019, 56: 89–104.
[4]Linqiong Xu, Shaoping Qian, Wenge Zheng, Yongkang Bai, Yongqing Zhao.Formation mechanism and tuning for bimodal open-celled structure of cellulose acetate foams prepared by supercritical CO2Foaming and poly(ethylene glycol) leaching. Industrial & Engineering Chemistry Research, 2018, 57: 15690–15696.
[5]Linqiong Xu,Yongqing Zhao. Preparation, foaming and characterization of poly(l-lactic acid))/poly(d-lactic acid)-grafted graphite oxide blends. International Polymer Processing, 2018, 33: 127–134.
[6]Yaorui Ma, Shaoping Qian, Lang Hu, Jun Qian,Cesar A. Fontanillo Lopez,Linqiong Xu(corresponding author). Mechanical, thermal, and morphological properties of PLA biocomposites toughened with silylated bamboo cellulose nanowhiskers. Polymer Composites, 2019, 40: 3012–3019
[7]Shaoping Qian, Kuichuan Sheng, Kai Yu,Linqiong Xu, Fontanillo Lopez CA. Improved properties of PLA biocomposites toughened with bamboo cellulose nanowhiskers through silane modification. Journal of Materials Science, 2018, 53: 10920–10932.
[8]Shaoping Qian, Yingying Tao, Yiping Ruan, Fontanillo Lopez CA,Linqiong Xu.Ultrafine bamboo-char as a new reinforcement in poly(lactic acid)/bamboo particle biocomposites: The effects on mechanical, thermal, and morphological properties. Journal of Materials Research, 2018, 33: 3870–3879.
[9]Linqiong Xu,HanxiongHuang. Formation mechanism and tuning for bi-modal cell structure in polystyrene foams by synergistic effect of temperature rising and depressurization with supercritical CO2. Journal of Supercritical Fluids, 2016, 109: 177–185
[10]Linqiong Xu,Yongqing Zhao, RongyuanChen, BenhaoKang, XiagnfangPeng. Ethylene methyl acrylate copolymer toughened poly(lactic acid) blends: Phase morphologies, mechanical and rheological properties. International Polymer Processing, 2016, 3: 301–308
[11]Linqiong Xu, Hanxiong Huang. Foaming of poly(lactic acid) using supercritical carbon dioxide as a foaming agent: Influence of crystallinity and spherulite size on cell structure and expansion ratio. Industrial & Engineering Chemistry Research, 2014, 53: 2277–2286.
[12]Linqiong Xu, Hanxiong Huang. Zhaoke Chen, Xiongjun Wu. Effects of emulsion parameters on relaxation behaviors for immiscible polymer blends. Journal of Applied Polymer Science, 2014, 131: 39690.
[13]Linqiong Xu, Hanxiong Huang. Preparation of polystyrene foams with bi-modal cells. Acta Polymerica Sinica, 2013, 11: 1357–1362.
[14]Linqiong Xu, Hanxiong Huang. Relaxation behavior of poly(lactic acid)/poly(butylene succinate) blend and a new method for calculating its interfacial tension. Journal of Applied Polymer Science, 2012, 125: E272–E2772.

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