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个人简介

郑司雨,2015年于华东理工大学材料学院获学士学位,2020年于浙江大学高分子系获博士学位,师从郑强教授和吴子良教授。2021年7月加入浙江工业大学材料科学与工程学院杨晋涛教授课题组,任副研究员。长期从事高韧性、多功能水凝胶及其3D打印的研究,致力于通过分子结构及凝胶网络设计、开发新型高韧性/可3D打印的水凝胶材料,并研究其在生物医用、可穿戴电子器件等工程领域的应用潜力。迄今已发表SCI论文27篇,其中以第一/通讯作者身份在Adv. Funct. Mater., Chem. Mater., Chem. Eng. J, Macromolecules, ACS Appl. Mater. Interfaces, Acta Biomater.等国际高水平期刊上发表论文共计14篇,参与专著编写2部,申请国家发明专利10项,其中已授权2项。

一作/通讯作者论文:

[1] Si Yu Zheng, Hongyao Ding, Jin Qian, Jun Yin, Yihu Song, Zi Liang Wu*, Qiang Zheng*. Metal-coordination complexes mediated physical hydrogels with high toughness, stick-slip tearing behavior, and good processability. Macromolecules 2016, 49, 9637–9646. (ESI Highly Cited Paper)

[2] +Si Yu Zheng, +Yangyang Shen, Fengbo Zhu, Jun Yin*, Jin Qian*, Jianzhong Fu, Zi Liang Wu*, Qiang Zheng. Programmed deformations of 3D-printed tough physical hydrogels with high response speed and large output force. Advanced Functional Materials 2018, 28, 1803366.

[3] Si Yu Zheng*, Shihua Mao, Jingfeng Yuan, Shuaibing Wang, Xiaomin He, Xin Ning Zhang, Cong Du, Dong Zhang, Zi Liang Wu, Jintao Yang*. Molecularly engineered zwitterionic hydrogels with high toughness and self-healing capacity for soft electronics applications. Chemistry of Materials 2021, 33, 8418–8429.

[4] Si Yu Zheng, Chang Liu, Lan Jiang, Ji Lin, Jin Qian, Koichi Mayumi*, Zi Liang Wu*, Kohzo Ito*, Qiang Zheng. Slide-ring cross-links mediated tough supramolecular hydrogels with superior self-recoverability. Macromolecules 2019, 52, 6748–6755.

[5] Si Yu Zheng, Hai Chao Yu, Canhui Yang*, Wei Hong, Fengbo Zhu, Jin Qian, Zi Liang Wu*, Qiang Zheng*. Fracture of tough and stiff metallosupramolecular hydrogels. Materials Today Physics 2020, 13, 100202.

[6] +Si Yu Zheng, +Chen Yu Li, Miao Du, Jun Yin, Jin Qian, Zi Liang Wu*, Qiang Zheng. Programmable deformations of biomimetic composite hydrogels embedded with printed fibers. ACS Applied Materials & Interfaces 2020, 12, 57497–57504.

[7] +Si Yu Zheng*, +Yifeng Ni, Jiahui Zhou, Yucong Gu, Yiting Wang, Jingfeng Yuan, Xiaoyu Wang, Dong Zhang*, Shanqiu Liu, Jintao Yang*. Photo-Switchable Supramolecular Comb-Like Polymer Brush Based on Host-Guest Recognition for Antimicrobial Smart Surface. Journal of Materials Chemistry B 2022, 10, 3039–3047. (JMCB Hot Paper)

[8] Si Yu Zheng, Ye Tian, Xin Ning Zhang, Miao Du, Yihu Song, Zi Liang Wu*, Qiang Zheng. Spin-coating-assisted fabrication of ultrathin physical hydrogel films with high toughness and fast response. Soft Matter 2018, 14, 5888–5897.

[9] +Shuaibing Wang, +Dong Zhang*, Xiaomin He, Jingfeng Yuan, Wenbin Que, Yongrui Yang, Iryna Protsak, Xinxin Huang, Chang Zhang, Tingxi Lu, Preeti Pal, Shanqiu Liu, Si Yu Zheng*, Jintao Yang*. Polyzwitterionic Double-Network Ionogel Electrolytes for Supercapacitors with Cryogenic-Effective Stability. Chemical Engineering Journal 2022, 438, 135607.

[10] Xiaomin He, Shuaibing Wang, Jiahui Zhou, Dong Zhang*, Yaoting Xue, Xuxu Yang, Lingbin Che, Danyang Li, Shengwei Xiao, Shanqiu Liu, Si Yu Zheng*, Jintao Yang*. Versatile and Simple Strategy for Preparing Bilayer Hydrogels with Janus Characteristics. ACS Applied Materials & Interfaces 2022, 14, 4579–4587.

[11] +Yifeng Ni, +Dong Zhang*, +Shuguang Wang, Jingfeng Yuan, Lingbin Che*, Dongyong Sha, Md Fauzul Kabir, Si Yu Zheng*, Jun Tan*, Jintao Yang*. Ionic Interaction-Driven Switchable Bactericidal Surfaces. Acta Biomaterialia 2022, 142, 124–135.

[12] +Ji Lin, +Si Yu Zheng, Rui Xiao*, Jun Yin, Zi Liang Wu*, Qiang Zheng, Jin Qian*. Constitutive behaviors of tough physical hydrogels with dynamic metal-coordinated bonds. Journal of the Mechanics and Physics of Solids 2020, 139, 103935.

[13] +Jingfeng Yuan, +Dong Zhang*, Xiaomin He, Yifeng Ni, Lingbin Che, Jiang Wu*, Baoyi Wu, Yang Wang, Shuguang Wang, Dongyong Sha, Si Yu Zheng*, Jintao Yang*. Cationic peptide-based salt-responsive antibacterial hydrogel dressings for wound healing. International Journal of Biological Macromolecules 2021, 190, 754–762.

[14] Lingtao Fang, Jian Hu, Chuan Wei Zhang, Jialun Wei, Hai Chao Yu, Si Yu Zheng*, Zi Liang Wu*, Qiang Zheng. Facile synthesis of tough metallosupramolecular hydrogels by using phosphates as temporary ligands of ferric ions to avoid inhibition of polymerization. Journal of Polymer Science 2022, 10.1002/pol.20210897.