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黄杰

2022年05月06日 14:50 点击:

姓名:黄杰

性别:

政治面貌:中共党员

最高学历:博士

职称:讲师

导师情况:


教育经历:

2017.09-2021.09    博士研究生    化学,理学博士    上海交通大学化学化工学院

2013.09-2016.06    硕士研究生    材料学,工学硕士    湖南工业大学包装与材料工程学院

2009.09-2013.06    本科    高分子材料与工程,工学学士    湖南工业大学包装与材料工程学院


工作经历:

2021.11-今    包装工程系    包装与材料工程学院    湖南工业大学

2016.07-2017.08    薄膜产品事业部    时代新材    中车集团


人才头衔:


社会兼职:


联系方式:

湖南工业大学包装与材料工程学院,崇材楼215

14374@hut.edu.cn


教学科研简介:

长期致力于酶生物燃料电池和聚酰亚胺的理论研究与应用开发,参与多项国家、省市级项目及企业项目;在Chemical Engineering Journal和Biosensors and Bioelectronics等国内外知名期刊发表学术论文13篇;申请发明专利20多项(授权10项);荣获湖南省自然科学奖1项(4/6)。


研究方向:

1.基于酶纳米胶囊的酶生物燃料电池构建及自供能生物传感研究

2.聚酰亚胺的设计合成以及其复合材料的结构设计、性能调控及机理研究


代表性学术论文:

1. Jie Huang, Yuxuan Zhang, Xiaohui Deng, Jixiang Li, Shuo Huang, Xin Jin, Xinyuan Zhu. Enzyme self-encapsulated enzyme within in-situ grown polypyrrole for high-performance enzymatic biofuel cell. Chemical Engineering Journal, 2021, 429, 132148. 

2. JieHuang, Yuxuan Zhang, Fei Ding, Dong Chen, Yiwen Wang, Xin Jin, Xinyuan Zhu. Rational design of electroactive redox enzyme nanocapsules for high-performance biosensors and enzymatic biofuel cell. Biosensors and Bioelectronics, 2021, 174, 112805 

3. Jie Huang, Yuxuan Zhang, Jixiang Li, Xiaohui Deng, Peng Zhao, Xin Jin, Xinyuan Zhu. Rational optimization of tethers binding length between the redox groups and the polymer backbone in electroactive redox enzyme nanocapsules for high-performance enzymatic biofuel cell. ACS Applied Energy Materials, 2021, 4, 5034–5042 

4. Jie Huang, Peng Zhao, Xin Jin, Yiwen Wang, Haotian Yuana and Xinyuan Zhu. Enzymatic biofuel cells based on protein engineering: recent advances and future prospects. Biomaterials Science, 2020, 8(19): 5230-5240 

5. Yuxuan Zhang, Jie Huang, Jun Zhang, Xinyuan Zhu, Gangsheng Tong. Synthesis and self-assembly of photo-responsive polypeptoid-based copolymers containing azobenzene side-chains. Polymer Chemistry, 2021, 12: 1823-1829 

6. Yiwu Liu, Jie Huang, JingHua Tan, Yi Zeng, JunJie Liu, Hailiang Zhang, Yong Pei, XianWei Xiang, YueJun Liu. Intrinsic high-barrier polyimide with low free volume derived from a novel diamine monomer containing rigid planar moiety. Polymer, 2017, 114: 289-297 

7. Yiwu Liu, Jie Huang, JinHua Tan, Yi Zeng, Qian Ding, Hailiang Zhang, YueJun Liu, XianWei Xiang. Barrier and thermal properties of polyimide derived from a diamine monomer containing rigid planar moiety. Polymer International, 2017, 66(8): 1214-1222 

8. Yi-Wu Liu, Jie Huang, Jinghua Tan, Yi Zeng, Qian Ding, XianWei Xiang, Yue-Jun Liu, Hai liang Zhang. Synthesis and Characterization of Intrinsic High-barrier Polyimide Derived from a Novel Diamine Monomer Containing Rigid Planar Moiety. Journal of Polymer Science, Part A: Polymer Chemistry. 2017, 55(14): 2373-2382 

9. Jinghua Tan, Jie Huang, Yiwu Liu, Qian Ding, Yi Zeng, Hailiang Zhang, Yuejun Liu, Xianwei Xiang. Novel high-barrier polyimide containing rigid planar dibenzofuran moiety in main chain. High Performance Polymers. 2018, 30(5): 539-548 

10. Yiwu Liu, Fengyun Xie, Jie Huang, Jinghua Tan*, Chengliang Chen, Linbing Jiang, Wei Sun and Hailiang Zhang. The Effect of Molecular Isomerism on the Barrier Properties of Polyimides: Perspectives from Experiments and Simulations. Polymers, 2021, 13(11): 1749 

11. Yi Zeng, Yiwu Liu, Jinghua Tan, Jie Huang, Junjie Liu, Ao Tang, Chengliang Chen, Hong Chen. Structure-Gas Barrier Property Relationship in a Novel Polyimide Containing Naphthalene and Amide Groups: Evaluation by Experiments and Simulations. Materials. 2021, 14(6): 1402.

12. Shuo Huang, Linlin Zhang, Miaomiao Xu, Chao Li, Hongliang Fu, Jie Huang, Xin Jin, Sheng Liang, Hui Wang. Co-Delivery of 131I and Prima-1 by Self-Assembled CD44-Targeted Nanoparticles for Anaplastic Thyroid Carcinoma Theranostics. Advanced Healthcare Materials, 2020, 10(3), 2001029 

13. Shuo Huang, Yan Wu, Chao Li, Li Xu, Jie Huang, Yu Huang, Weiwei Cheng, Bai Xue, Linlin Zhang, Sheng Liang, Xin Jin, Xinyuan Zhu, Shuqiang Xiong, Yue Su and Hui Wang. Tailoring morphologies of mesoporous polydopamine nanoparticles to deliver high-loading radioiodine for anaplastic thyroid carcinoma imaging and therapy[J]. Nanoscale, 2021, 13(35): 15021-15030. 


授权专利:

1. 一种含咔唑结构的具有高平面性二胺单体及其合成方法和应用,2018/11/27,中国,ZL201510562720.1

2. 一种含咔唑结构的聚酰亚胺及其制备方法和应用,2018/9/4,中国,ZL201610003831.3

3. 一种含咔唑结构的聚酰亚胺纳米复合材料及其制备方法和应用,中国,2018/6/25,ZL201610016428.4

4. 一种含菲结构的超支化聚酰亚胺及其制备方法和用途,2021/1/8,中国,ZL201810859513.6

5. 一种高耐热超支化聚酰亚胺及其制备方法和应用,2021/3/23,中国,ZL201810859388.9

6. 一种含芴或芴酮结构的具有高平面性二胺单体及其合成方法和应用,2018/11/9,中国,ZL201610016572.8

7. 一种含芴或芴酮结构的聚酰亚胺及其制备方法和应用,2018/3/9,中国,ZL201610018040.8

8. 一种含咔唑结构的新型超支化聚酰亚胺及其制备方法和用途,2018/3/30,中国,ZL201610126003.9

9. 具有高平面性的含萘结构功能二胺单体及其合成方法和应用,2017/3/29,中国,ZL201510095103.5

10. 一种含萘结构的聚酰亚胺纳米复合材料及其制备方法和应用,2018/3/27,中国,ZL201610015861.6


更新时间: 2022.5


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