人员队伍详细资料

水涛

发布时间:2025年12月30日 04时50分

基本信息

姓名:水涛

职称:副研究员/博导、硕导

职务:专任教师

通讯方式:tshui@seu.edu.cn

办公地点:材料A楼609

个人简介

水涛,任欢迎公海来到赌船710功能材料系副主任、副研究员、博士生导师。主要从事木质纤维素、蛋白质等生物质原料的全组分重构及材料化转变,研究聚焦于生物质的结构价值开发与仿生结构设计,结合水凝胶、纳米自组装等技术进行复合功能材料构建。现有研究方向包括木质纤维素基储能材料、天然蛋白交联改性策略、生物质基水凝胶的仿生设计与结构强化,并探索其在二次电池及生物医学领域中的应用。截至目前,以通讯或第一作者身份在Nature Communications、Chemical Reviews、Energy & Environmental Science、Advanced Materials、Materials Today、Matter等期刊发表论文21篇,获授权专利1项,主持国家自然科学基金青年项目1项、国家重点研发计划子课题1项、省级青年项目1项,个人H-index为18。

教育及工作经历

2022.12-至今       欢迎来到公海7108线路,欢迎公海来到赌船710,副研究员

2020.08-2022.09    加拿大阿尔伯塔大学,化学及材料工程,欢迎公海来到赌船710怎么进入

2016.09-2020.07    加拿大阿尔伯塔大学,生物资源及食品工程,博士

2014.09-2016.08    加拿大西安大略大学,化学及生物化学工程,硕士

2010.09-2014.06    华东理工大学,高分子材料与工程,学士


研究方向

1、纤维素转化及储能材料研发

2、天然蛋白交联改性及材料转化研究

3、仿生水凝胶的设计开发及生物应用


科研项目

1. 中国国家自然科学基金委员会, 国家自然科学基金青年项目, 2024-2027, 在研, 主持。

2. 江苏省科技厅, 江苏省科技计划青年项目, 2024-2027, 在研, 主持。

3. 中国国家科技部, 国家重点研发计划, 2024-2027, 在研, 子课题负责人。

4. 加拿大自然和科学研究协会, Oil Sands CRD, Removing water from diluted bitumen in naphthenic froth treatment and the underlying interfacial science, 2020- 2025, 在研, 参与。

5. 加拿大自然和科学研究协会, Probing Bubble-Bitumen-Mineral Interaction Mechanisms in Bitumen Liberation and Extraction from Oil Sands by Quantitative Force Measurement, 2020-2023, 结题, 参与。

6. 加拿大阿尔伯塔省发明部, Development of A Cheap and Renewable Binder for Torrefied Wood Pellets, 2016-2020, 结题, 参与。

论文发表(一作及通讯作者)

1.Xinguantong Zhou; Haoyu Zhang; An Li; Cheng Wang; Ming Yin; Wei Zhang; Zijie Wang*; Jing Bai*; ZhengMing Sun*; Tao Shui*;Biomass-Derived Hydrogels for Load-Bearing Connective Tissue Repair: integrative Reinforcement, Bio-Functional Design, and Emerging Pathways toward Clinical Translation. Advanced Healthcare Materials, 2026, Accepted.

2. Sheng Zhao1; Tao Shui1; Wenkang Wang; Haoyu Zhang; Changjiang Li; Cong Guo*; Wei Zhang*; ZhengMing Sun*; A unified framework to tailor multifunctional ionogel electrolytes for flexible energy storage. Matter, 2026, 102825.

3. Huan Xia1; Tao Shui1; Xiaotian Wan; Yixi Chen; Fengyi Wang; Chunyang Miao; Xin Cao; Bingyige Pan; Zihe Pan *; Qian Xie; Ye Chen; Wei Zhang *; ZhengMing Sun *; Microphase-Separated Hydrogel Electrolytes with Selective Ion Transportation Pathways for Flexible Zinc-Ion Batteries, Advanced Materials, 2025, e18881.

4. Qian, Xie; Yurong, You; Dingshuo, Qiao; Huan, Xia; Hanning, Zhang; Song-Zhu, Kure-Chu; Tomasz, Wejrzanowski; Tao, Shui *; Wei, Zhang *; ZhengMing, Sun *.Machine Learning-Assisted Kinetic Matching Model for Rational Electrode Design in Aqueous Zinc-Ion Batteries, Nature Communications, 2026, 17, 1233.

5. Zhang, Haoyu; Hu, Jingbo; Jing Shiqing; Huang, Haizhi; Wang, Wenkang; Xu, Gang; Ye, Wenjie; Zhang, Yuan; Tang, Zhengzhong*; Zhang, Wei*; Shui, Tao *. An Emerging Armor in Passive Thermal Defense for Power Lithium-Ion Batteries: Recent Advances in Aerogels, Chemical Engineering Journal, 2025, 524, 169362.

6. Shui, Tao; Li, Xuanlan; Li, Zhanku; Yan, Jingchong; Zhang, Weidong; Wang, Zhicai; Lei, Zhiping; Ren, Shibiao; Shui, Hengfu *; Hydrogenation of lignite-derived ethanol solubles into potential jet fuels over a novel in-situ reduced NiMo/Al-LDH catalyst, Journal of Analytic and Applied Pyrolysis, 2025, 192, 107299.

7. Shui, Tao; Liang, Yaojia; Wejrzanowski, Tomasz; Liu, Jiacheng; Kure-Chu, Song-Zhu; Hihara, Takehiko; Zhang, Tengfei; Liang, Feifei; Sun, Chao; She, Wei *; Zhang, Wei *; Sun, Zheng Ming *; Electrolyte Evolution for Flexible Energy Storage Systems: From Liquid to Solid, from Rigid to Soft, and from Organic to Aqueous, Chemical Reviews, 2025, 125 (15), 7167-7222.

8. Wang, Wenkang; Zeng, Xiangbing; Wang, Xiaoqiang; Xiao, Peng; Tang, Zhenzhong; Jing, Shiqing; Zhang, Wei *; Shui, Tao*; Sun, Zhengming *; Textile-integrated wearable energy devices: advances in hydrogel fibers for aqueous flexible energy storage, Materials Today, 2025, 89, 440-476.

9. Zhang, Ruqian 1; Shui, Tao 1*; Li, An; Xia, Huan; Xu, Gang; Ji, Lingfeng; Lu, Chengjie *; Zhang, Wei *; Sun, Zhengming *; Novel in situ SEI fabrication on Zn anodes for ultra-high current density tolerance enabled by electrical excitation-conjugation of iminoacetonitriles, Energy & Environmental Science, 2025, 18 (2), 1011-1026.

10. Pan, Mingfei; Shui, Tao *; Zhao, Ziqian; Xiang, Li; Yan, Bin; Gu, Ning *; Zeng, Hongbo *; Engineered Janus hydrogels: biomimetic surface engineering and biomedical applications, National Science Review, 2024, 11 (10), nwae316.

11. Xie, Qian; Lu, Chengjie; Yi, Chengjie; Shui, Tao *; Moloto, Nosipho; Liu, Jiacheng; Kure-Chu, Song-Zhu; Hihara, Takehiko; Zhang, Wei *; Sun, Zhengming *; Interfacial integration of ultra-thin flexible electrochemical capacitors via vacuum filtration based on gelatinized fibrous membranes, Journal of Materials Chemistry A, 2024, 12 (41), 28056-28065.

12. Zhang, Hanning; Shui, Tao *; Moloto, Nosipho; Li, An; Zhang, Ruogu; Liu, Jiacheng; Kure-Chu, Song-Zhu; Hihara, Takehiko; Zhang, Wei *; Sun, Zhengming *; Dendrite-free zinc metal anode for long-life zinc-ion batteries enabled by an artificial hydrophobic-zincophilic coating, Journal of Colloid and Interfacial Science, 2025, 678, 1148-1157.

13. Zhang, Hanning 1; Shui, Tao1, *; Zhang, Wei *; Sun, ZhengMing *; Parallel zinc deposition enabled by diethylene triaminepentaacetic acid induced interfacial complex for dendrite-free zinc metal anode, Energy Storage Materials, 2024, 71, 103595.

14. Shui, Tao; Li, An; Chae, Michael; Xu, Chunbao Charles; Bressler, David C.; Valorization Strategies for Hazardous Proteinaceous Waste from Rendering Production —— Recent Advances in Specified Risk Materials (SRMs) Conversion, Journal of Hazardous Materials, 2023, 453: 131339.

15. Shui, Tao; Pan, Mingfei; Li, An; Fan, Hongbin; Wu Jianping; Liu, Qi; Zeng, Hongbo; Poly(vinyl Alcohol) (PVA)-Based Hydrogel Scaffold with Isotropic Ultratoughness Enabled by Dynamic Amine–Catechol Interactions, Chemistry of Materials, 2022, 34 (19): 8613-8628.

16. Shui, Tao; Pan, Mingfei; Lu, Yi; Zhang, Jiawen; Liu, Qingxia; Nikrityuk, Petr A.; Tang, Tian; Liu, Qi; Zeng, Hongbo; High-efficiency and durable removal of water-in-heavy oil emulsions enabled by delignified and carboxylated basswood with zwitterionic nanohydrogel coatings,Journal of Colloid and Interface Science, 2021, 612: 445-458.

17. Shui, Tao; Khatri, Vinay; Chae, Michael; Sokhansanj, Shahabaddine; Choi, Phillip; Bressler, David C.; Development of a torrefied wood pellet binder from the cross-linking between specified risk materials-derived peptides and epoxidized poly (vinyl alcohol), Renewable Energy, 2020,162: 71-80.

18. Shui, Tao; Chae, Michael; Bressler, David C.; Cross-Linking of Thermally Hydrolyzed Specified Risk Materials with Epoxidized Poly (Vinyl Alcohol) for Tackifier Applications, Coatings, 2020, 10(7): 0-630.

19. Shui, Tao; Adhikari, Birendra B.; Chae, Michael; Bressler, David C.; Evaluation of thermally hydrolyzed specified risk materials cross-linked with glutaraldehyde for tackifier applications, Progress in Organic Coatings, 2020, 140: 0-105535.

20. Shui, Tao; Feng, Shanghuan; Chen, Gang; Li, An; Yuan, Zhongshun; Shui, Hengfu; Kuboki, Takashi; Xu, Chunbao; Synthesis of sodium carboxymethyl cellulose using bleached crude cellulose fractionated from cornstalk, Biomass and Bioenergy, 2017, 105: 51-58.

21.Shui, Tao; Feng, Shanghuan; Yuan, Zhongshun; Kuboki, Takashi; Xu, Chunbao; Highly efficient organosolv fractionation of cornstalk into cellulose and lignin in organic acids, Bioresource Technology, 2016, 218: 953-961.

专利:

1. 一种具有陶瓷-聚合物双层结构的热防护气凝胶的制备方法及应用(公开审查)