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徐家壮

  • 职 称: 副教授
  • 所属学科: 材料加工工程
  • 导师情况: 硕导
  • E-mail: jzxu@scu.edu.cn
  • 个人主页: http://www.ppescu.com/show-25-152-1.html
经理简介

徐家壮,男,1986年生,副教授。2009年毕业于澳门威利斯人88038高分子材料加工工程专业,获学士学位。同年,开始攻读澳门威利斯人88038材料加工工程专业硕士学位,并被推荐提前攻博。201210~20144月在美国哈佛大学附属麻省总医院Orhun K MuratogluEbru Oral研究小组参加留学基金委资助的联合联合培养博士生项目。20146月获工学博士学位并留校任教,任讲师。2016年晋升为副教授。讲授本科生专业课两门。主要从事流动诱导高分子结晶和生物医用高分子材料加工结构调控(如人工关节、人工骨、多孔支架)等研究工作。承担了国家自然科学基金面上项目、中国博士后基金面上资助(一等)等纵向项目8项;以第一作者或通讯作者在Macromolecules, Progress in Polymer ScienceSCI收录期刊发表论文35篇,SCI引用1000余次;申请发明专利4件。

教育经历:

2009/09-2014/07,澳门威利斯人88038,材料加工工程,博士

2012/10-2014/05,美国哈佛大学复数麻省总医院,国家公派联合培养博士

2005/09-2009/07,澳门威利斯人88038,高分子材料加工工程,硕士

工作经历:

2016/09-今澳门威利斯人88038,副教授

2016/06-今澳门威利斯人608cc高分子材料工程国家重点实验室,固定成员

2014/07-2016/08澳门威利斯人88038,讲师

研究领域:

1. 流动诱导高分子结晶及形态结构调控

2. 高性能生物医用材料(人工关节、人工骨、多孔支架)

3. 高导热高分子复合材料

联系方式:

通讯地址:四川省成都市一环路南一段高分子科学与工程学院,邮编610065

Emailjzxu@scu.edu.cn

个人主页:http://www.ppescu.com/show-25-152-1.html

 

代表性论文:

[1] Yue Ren, Zong-Yin Zhang, Ri-Tong Lan, Lu Xu, Ying Gao, BaisongZhao,* Jia-Zhuang Xu,* Rizwan M. Gul, Zhong-Ming Li. Enhanced oxidation stability of highly cross-linked ultrahigh molecular weight polyethylene by tea polyphenols for total joint implants. Materials Science & Engineering C 2019, 94, 211–219.

[2] Baisong Zhao, Haiping Xu, Ying Gao, Jia-Zhuang Xu,* Hua-Mo Yin, Ling Xu, Zhong-Ming Li, Xingrong Song*. Promoting osteoblast proliferation on polymer bone substitutes with bonelike structure by combining hydroxyapatite and bioactive glass. Materials Science & Engineering C 2019, 96, 1–9.

[3] Jia-Zhuang Xu, Yang Li, Yu-Ke Li, Yuan-Wei Chen, Ruyin Wang, Gang Liu, Shu-Ming, Liu, Hai-Wei Ni, Zhong-Ming Li*. Shear-induced stereocomplex cylindrites in polylactic acid racemic blends: Morphology control and interfacial performance. Polymer 2018, 140, 179-187.

[4] Yanfei Huang#, Jia-Zhuang Xu#, Thibaut Soulestin, Fabrice Domingues Dos Santos, Ruipeng Li, MasafumiFukuto, Jun Lei, Gan-Ji Zhong, Zhong-Ming Li, Yue Li,* Lei Zhu*. Can Relaxor Ferroelectric Behavior Be Realized for Poly(vinylidene fluoride-co-chlorotrifluoroethylene) [P(VDF?CTFE)] Random Copolymers by Inclusion of CTFE Units in PVDF Crystals? Macromolecules 2018, 51, 5460?5472.

[5] Yan-Fei Huang, Zhi-Guo Wang, Hua-Mo Yin, Jia-Zhuang Xu,*Yuanwei Chen, Jun Lei, Lei Zhu, Feng Gong, Zhong-Ming Li*. Highly Anisotropic, Thermally Conductive, and Mechanically Strong Polymer Composites with Nacre-like Structure for Thermal Management Applications. ACS Applied Nano Materials 2018, 1, 3312?3320.

[6] Jia-Zhuang Xu, Yue Ren, Hua-Mo Yin, Yan-Fei Huang, Wei Liu, BaisongZhao,* Rizwan M. Gul, Zhong-Ming Li*. Bone-like Polymeric Composites with a Combination of Bioactive Glass and Hydroxyapatite: Simultaneous Enhancement of Mechanical Performance and Bioactivity. ACS Biomaterials Science & Engineering 2018, 4, 4434?4442

[7] Yuan-Ying Liang,# Jia-Zhuang Xu*,#, Yang Li, Gan-Ji Zhong, Ruyin Wang, Zhong-Ming Li. Promoting Interfacial Transcrystallization in Polylactide/Ramie Fiber Composites by Utilizing Stereocomplex Crystals. ACS Sustainable Chemistry & Engineering 2017, 5, 7128-7136

[8] Yan-Fei Huang, Jia-Zhuang Xu*, Zheng-Chi Zhang, Ling Xu, Liang-Bin Li, Jun-Fang Li, Zhong-Ming Li*. Melt processing and structural manipulation of highly linear disentangled ultrahigh molecular weight polyethylene. Chemical Engineering Journal 2017, 315, 132-141

[9] Yang Li, Su Yang, Yu-Ke Li, Jia-Zhuang Xu*, Hai-Wei Ni, Zhi-Hong Su, Zhong-Ming Li*. Robust Interfacial Cylindrites of Polylactic Acid Modulated by an Intense Shear Flow Field. ACS Sustainable Chemistry & Engineering 2016, 4, 3558-3566

[10] Jia-Zhuang Xu, Zi-Jing Zhang, Huan Xu, Jing-Bin Chen, Rong Ran,* Zhong-Ming Li*, Highly enhanced crystallization kinetics of poly(L?lactic acid) by poly(ethylene glycol) grafted graphene oxide simultaneously as heterogeneous nucleation agent and chain mobility promoter, Macromolecules, 2015, 48(14): 4891?4900

[11] Ze-Pu Wang, Yan-Fei Huang, Jia-Zhuang Xu*, Ben Niu, Xiao-Liang Zhang, Gan-Ji Zhong,* Ling Xu,* Zhong-Ming Li, Injection-molded hydroxyapatite/polyethylene bone-analogue biocomposites via structure manipulation, Journal of Materials Chemistry B, 2015, 3: 7585-7594

 

 

 

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