吴献章副教授
基本信息:
职称:副教授,硕士生导师,湖南省“三尖”人才(荷尖-湖湘青年英才),湖南省青年骨干教师培养对象,长沙市杰出创新青年人才。
邮箱:xianzhangwu_js@163.com
地址:永利yl23411官网永利yl23411官网(逸夫楼)424室
研究方向:生物质三维/凝胶功能材料,木材涂层,生物质高分子涂层研究开发。
个人简介:
吴献章,博士,硕士生导师。 担任Advanced Materials, Advanced Functional Materials, ACS nano, Chemical Engineering Journal, ACS Applied Materials & Interfaces等多个国际刊物审稿人。
学习工作经历:
2023.12 -至今,永利yl23411官网,材料科学与工程学院,副教授。
2020.09 -至2023.12,永利yl23411官网,材料科学与工程学院,讲师。
2017.09 -2020.07,中国科学院兰州化学物理研究所,固体润滑国家重点实验室,材料学,博士;
2014.09 -2017.07,湖南大学,化学化工学院,化学工程,硕士;
2010.09 -2014.07,吉首大学,化学化工学院,应用化学,学士。
主持科研项目
[1] 国家自然科学基金青年基金项目:基于交联键稳定性设计的低温快速自修复聚氨酯超分子构筑及柔性应变传感应用,52103247,2022/01-2024/12,主持。
[2] 湖南省重点研发项目子课题:液晶显示用 UV 光学胶研制,2024/01-2027/12,主持。
[3] 湖南省自然科学基金青年基金项目,2022JJ40877,低温环境下聚氨酯超分子的自修复能力和力学性能优化设计,2022/01-2024/12,主持。
[4] 湖南省教育厅优秀青年基金:高结晶度纳米纤维素强化抗冻/抗热聚氨酯有机凝胶的构筑及智能涂层应用,21B0264,2022/01-2024/12,主持。
[5] 中国科学院兰州化学物理研究所固体润滑国家重点实验室开放课题:宽温域聚氨酯润滑有机凝胶的构筑及润滑涂层应用,LSL-2203,2023/01-2025/12,主持。
[6] 永利yl23411官网引进人才科研启动基金项目:高结晶度纳米纤维素对自愈合聚合物力学和导电性能的强化研究及机制,2020/09-2023/08,主持。
[7] 国防科工局基础科研项目:XXX柔性应变传技术JCKY2019130C105,2020/01-2023/12,300万,参加。
奖励与荣誉情况:
1、2024湖南省“三尖”人才(荷尖-湖湘青年英才);
2、2024湖南省青年骨干教师培养对象;
3、2023长沙市杰出创新青年人才;
4、2020 年度 中国科学院“院长奖”;
5、2020 年度 中国科学院“优秀毕业生”;
6、2019-2020 学年获中国科学院博士研究生“国家奖学金”;
7、2018-2019 学年获中国科学院“三好学生”;
8、2019-2020年度中国科学院博士研究生“一等奖学金”。
科研情况
以第一作者或通讯作者先后在Advanced Functional Materials, Nano Research, Chemical Engineering Journal, Composite Part B, ACS Applied Materials & Interfaces, , Journal of Materials Chemistry C, Journal of Colloid and Interface Science等国外高水平期刊发表论文30余篇,撰写英文专著2章;获授权专利6项。
代表性学术成果:
[1] Houji Yang, Lingling Tan, Jie Yan, Jianshan Chen, Xianzhang Wu*. Solvent-Induced Dynamic Bond Regulation for Constructing Adaptive Lubricating Hydrogels with Switchable Tribological Performance and Environmental Adaptability. Advanced Functional Materials. 2024, 2411384.
[2] Jingkun Hou#, Xianzhang Wu# (共同一作), Zhihan Li,Yu Liao, Lei Li, Sha Luo, Yiqiang Wu, Yan Qing*. Aligned Bamboo Fiber-Induced Crystallinity Mitigation of Lightweight Polymer Composite Enables Ultrahigh Strength and Unprecedented Toughness. Advanced Functional Materials. 2024, 2314559.
[3] Ruiheng Han (2021级本科生) , Fan Zeng, Qingqing Xia , Xiangchao Pang, Xianzhang Wu*. Zwitterionic cellulose nanofibers-based hydrogels with high toughness, ionic conductivity, and healable capability in cryogenic environments. Carbohydrate Polymers, 2024, 340 :122271.
[4] Xunxiang Hu, Lingling Tan, Xianzhang Wu*, and Jinqing Wang ,Interlayer engineering in 3D graphene skeleton realizing tunable electronic properties at a highly controllable level for piezoresistive sensors, Nano Research, 2023, 16: 8512–8521.
[5] Xunxiang Hu, Yulian Tang, Lingling, Tan, Fa Zeng, Xianzhang Wu*, Multi-scalemicrostructural construction in ultralight graphene aerogels enables super elasticity and unprecedented durability for impact protection materials. Journal of Colloid and Interface Science, 2024, 673,333-345.
[6] Houji Yang, Jie Yan, Ruiheng Han, Xianzhang Wu*, Shengrong Yang, Stretchable conductive hydrogel with super resistance-strain stability and ultrahigh durability enabled by specificity crosslinking strategy for high-performance flexible electronics, Chemical Engineering Journal, 2023, 465: 142828.
[7] Xiu He (2020级本科生), Zhide Li, Fan Zeng, Xunxiang Hu, Xinyue Zhang, Yuan Zhu, Xianzhang Wu*, Jinqing Wang*, Unraveling the role of ionic bonding interactions in electronic properties of graphene composite aerogels to enhance piezoresistive performance, Composites Part B, 2023, 258: 110695.
[8] Wenjing Li, Tairan Zhao, Yuan Zhu, Xianzhang Wu*, Lubricating organohydrogel with ultrahigh durability and super-weatherability enabled by molecular chains aligned strategy for drag-reduction coating, Chemical Engineering Journal, 2023, 454: 140057.
[9] Wei Yan , Tian Tian , Min Li , Yijun Zong , Youwei Liao, Yan Yang *, Xianzhang Wu *. Depleting conjugated C- C bonds in tung oil/Eucommia rubber composite film: Fundamentally improve the flexibility and crack resistance for high-performance protective coating. Industrial Crops & Products, 2023,191: 115943.
[10] Xianzhang Wu, Pi W J, Hu X X, He X, Zhu Y*, et al. Heat- and freeze-tolerant organohydrogel with enhanced ionic conductivity over a wide temperature range for highly mechanoresponsive smart paint. Journal of Colloid and Interface Science, 2022, 608: 2158-2168.
[11] Xianzhang Wu*, Yuan Zhu, Zhangpeng Li, Jinqing Wang* and Shengrong Yang, Ultralight GO-hybridized CNTs aerogels with enhanced electronic and mechanical properties for piezoresistive sensor. ACS Applied Materials & Interfaces, 2021, 13: 26352-26361.
[12] Xianzhang Wu, Rong Luo, Zhangpeng Li*, Jinqing Wang*, Shengrong Yang, Subzero temperature readily self-Healing polymers based on rationally designingmolecular network and crosslinking bond. Chemical Engineering Journal, 2020, 398: 125593.
[13] Xianzhang Wu, Jinqing Wang*, Jingxia Huang, and Shengrong Yang*, Robust, stretchable, and self-healable supramolecular elastomers synergistically cross-linked by hydrogen bonds and coordination bonds. ACS Applied Materials & Interfaces, 2019, 11: 7387-7396.
[14] Xianzhang Wu, Zhangpeng Li, Honggang Wang*, Jingxia Huang, Jinqing Wang* and Shengrong Yang, Stretchable and self-healable electrical sensors with fingertip-like perception capability for surface texture discerning and biosignal monitoring, Journal of Materials Chemistry C, 2019, 7(29): 9008-9017.
[15] Xianzhang Wu, Xiaohong Liu, Jinqing Wang*, Jingxia Huang, and Shengrong Yang*, Reducing structural defects and oxygen-containing functional groups in GO- hybridized CNTs aerogels: Simultaneously improve the electrical and mechanical properties to enhance pressure sensitivity, ACS Applied Materials & Interfaces, 2018, 10:39009-39017.
[16] Xianzhang Wu, Xiaohong Liu, Jinqing Wang*, Jingxia Huang, and Shengrong Yang*, Room temperature rapid self-healing polymer via rationally designing molecular chain and crosslinking bond. Journal of Colloid and Interface Science,2020, 559:152-161.
[17] Xianzhang Wu, Kaiming Hou, Jingxia Huang, Jinqing Wang* and Shengrong Yang, Graphene-based cellular materials with extremely low density and high pressure sensitivity based on self-assembled graphene oxide liquid crystals, Journal of Materials Chemistry C, 2018, 6: 8717-8725.
[18] Xianzhang Wu, Yutang Liu, Ran Liu, Longlu Wang, Yanbing Lu, Xinnian Xia, Hydroxyalkylation of phenol to bisphenol F over heteropolyacid catalysts: The effect of catalyst acid strength on isomer distribution and kinetics. Journal of Colloid and Interface Science, 2016,481: 75-81.
专著
撰写英文专著《Functional Tactile Sensors》中的《Self-healing tactile sensors》章节;Elsevier出版,ISBN: 978-0-12-820912-7;《Application of small-angle X-ray scattering technology in polymer characterization》Elsevier出版,ISBN: 956-0-17-206512-9;
申请专利
1. 吴献章; 胡训祥; 杨厚基; 曾凡; 韩瑞恒;一种高拉伸性高褶皱氧化石墨烯纸的制备方法,
发明专利,授权号:ZL 2022 1 0777749.1.
2.王金清;吴献章;杨生荣;一种三维石墨烯/碳纳米管气凝胶及其制备方法和应用、柔性传感器,发明专利,申请号:ZL202111370127.7.
3. 王金清;吴献章;杨生荣;一种低温自愈合聚合物弹性体的制备方法, 发明专 利,申请号:ZL 201910750413.4.
4. 王金清;吴献章;杨生荣;一种室温快速自愈合聚合物弹性体的制备方法及其应用, 发明专利,申请号: ZL201910164793.3.
5. 王金清;吴献章;杨生荣;一种三维石墨烯/碳纳米管弹性体及其在柔性压阻式传感器中的应用,发明专利,申请号:ZL201910164793.3.
6. 王金清;吴献章;杨生荣;一种双物理交联自愈合聚合物及其在电子皮肤中的应用,发明专利,ZL201811370127.7.
学生指导
1. 杨厚基, 研究生“国家奖学金”,指导老师;
2. 胡训祥, 2023年“克明食品”研究生学术文化节创新成果展一等奖,指导老师;
3. 湖南省第十五届大学生化工设计创新作品竞赛初赛“一等奖”,第一指导教师;
4. 湖南省第十四届大学生化工设计创新作品竞赛初赛“特等奖”,第一指导教师;
5. 湖南省第十四届大学生化工设计创新作品竞赛决赛“二等奖”,第一指导教师;
6. 第十届“挑战杯”湖南大学生创业计划竞赛,银奖,第二指导教师;
7. 第八届湖南省“互联网+”大学生创新创业大赛,三等奖,第二指导教师;
8. 湖南省大学生创新创业训练计划项目,生物质三维石墨烯材料的构筑及应用,2022.07-2023.12,第一指导教师;
9. 韩瑞恒,2021级本科生,直博至中国科学院大学;
10. 何绣,2020级本科生,保研至中南大学;
11. 皮文建,2021级本科生,考研至北京理工大学。