王思恒

点击数:   更新日期: 2025-10-07


 

王思恒 讲师

 

:男

电子邮箱sihengwang@bjfu.edu.cn

办公电话

研究方向:生物质资源化学与利用、纤维素功能材料、高性能凝胶材料

详细资料

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教育/工作经历

2025.09−至今,北京林业大学,材料科学与技术学院,讲师

2018.09−2025.06,中国林业科学研究院,林产化学加工工程,博士,导师:宋湛谦院士

2014.09−2018.07,江西农业大学,林产化工,学士

2023.04−2025.04,加拿大不列颠哥伦比亚大学(UBC),木材科学,联合培养博士,导师:姜锋副教授

主讲课程

本科生课程:无

研究生课程:无

 

科研工作及成果

研究方向聚焦生物质资源化学与利用,主要开展纤维素材料(水/离子凝胶、薄膜、泡沫等)的多尺度构建、功能化及其高附加值应用研究。相关工作发表学术论文20余篇,其中以第一作者(含同等贡献)在Nature Communications2篇)、Advanced MaterialsACS NanoThe Innovation MaterialsAggregateResearch等国际学术期刊发表论文14篇,包含中科院一区论文10篇。论文总被引1300余次(Google Scholar),单篇最高引用336次,3篇入选ESI高被引论文,h指数为16,曾获2023年江苏省科协自然科学百篇优秀学术成果论文奖。参与国家自然科学基金重大项目、江苏省地区基金项目及企业合作项目多项,曾于2022年获国家留学基金委(CSC)公派留学资格。(ORCIDhttps://orcid.org/0000-0003-1326-0656

奖励及荣誉称号

2025年,北京市优秀毕业生

2024年,中国林科院林化所优秀研究生

2023年,江苏省自然科学百篇优秀学术成果论文

2022年,国家建设高水平大学公派研究生项目奖学金

学术/社会兼职

1)学术兼职:担任Carbohydrate PolymersInternational Journal of Biological MacromoleculesJournal of Fluorescence等国际学术期刊审稿人。

2)社会兼职:

 

学术成果展示(不超30个)

1.        Siheng Wang, Huayu Liu, Zhengyang Yu, Xinle Ren, Qi Hua, Mahyar Panahi-Sarmad, Pu Yang, Chuhang Liu, Scott Renneckar, He Liu*, and Feng Jiang*. Cellulose-mediated ionic liquid crystallization enables tough-stiff switchable ionogels. Nature Communications (2025). (Proofing) (DOI: 10.1038/s41467-025-64061-2)

2.        Siheng Wang#, Le Yu#, Shanshan Wang, Lei Zhang, Lu Chen, Xu Xu, Zhanqian Song, He Liu*, and Chaoji Chen*. Strong, tough, ionic conductive, and freezing-tolerant all-natural hydrogel enabled by cellulose-bentonite coordination interactions. Nature Communications 13, 3408 (2022). 10.1038/s41467-022-30224-8

3.        Siheng Wang, Zhengyang Yu, Xia Sun, Mahyar Panahi‐Sarmad, Pu Yang, Penghui Zhu, Yeling Zhu, He Liu*, and Feng Jiang*. A universal strategy to mitigate microphase separation via cellulose nanocrystal hydration in fabricating strong, tough, and fatigue-resistant hydrogels. Advanced Materials 37, 2416916 (2024). 10.1002/adma.202416916

4.        Siheng Wang#, Le Yu#, Xiangzheng Jia#, Lei Zhang, He Liu*, Enlai Gao*, and Chaoji Chen*. Cellulose nanofibril-guided orienting response of supramolecular network enables superstretchable, robust, and antifatigue hydrogel. The Innovation Materials 2, 100092 (2024). 10.59717/j.xinn-mater.2024.100092

5.        Siheng Wang, Lei Zhang, Zhuomin Wang, Zhanqian Song, He Liu*, Ziqi Tian*, and Xu Xu*. Humidity‐adaptive, mechanically robust, and recyclable bioplastic films amplified by nanoconfined assembly. Aggregate 5, e643 (2024). 10.1002/agt2.643

6.        Siheng Wang, Zhuomin Wang, Lei Zhang, Zhanqian Song, He Liu*, Ziqi Tian*, and Xu Xu*. Sweat-adaptive adhesive hydrogel electronics enabled by dynamic hydrogen bond networks. Chemical Engineering Journal 492, 152290 (2024). 10.1016/j.cej.2024.152290

7.        Lei Zhang#, Siheng Wang#, Zhuomin Wang, Zeyu Liu, Xu Xu, He Liu*, Dan Wang*, and Ziqi Tian*.  Temperature-mediated phase separation enables strong yet reversible mechanical and adhesive hydrogels. ACS Nano 17, 13948-13960 (2023). 10.1021/acsnano.3c03910

8.        Lu Chen#, Siheng Wang#, Shanshan Wang, Chang Chen, Luhe Qi, Le Yu, Ziyang Lu, Jing Huang, Junqing Chen, Zhen Wang, Xiao-Wen Shi, Zhanqian Song, He Liu*, and Chaoji Chen*. Scalable production of biodegradable, recyclable, sustainable cellulose-mineral foams via coordination interaction assisted ambient drying. ACS Nano 16, 16414-16425 (2022). 10.1021/acsnano.2c05635

9.        Zhuomin Wang#, Siheng Wang#, Lei Zhang, He Liu*, and Xu Xu*. Highly strong, tough, and cryogenically adaptive hydrogel ionic conductors via coordination interactions. Research 7, 0298 (2024). 10.34133/research.0298

10.    Penghao Sun#, Siheng Wang#, Zhen Huang, Lei Zhang, Fuhao Dong, Xu Xu*, and He Liu*. Water-resistant, strong, degradable and recyclable rosin-grafted cellulose composite paper. Green Chemistry 24, 7519-7530 (2022). 10.1039/d2gc02372e

11.    Shibo Wang#, Siheng Wang#, Minggui Shen, Xu Xu*, He Liu*, Dan Wang*, Hongxiao Wang, and Shibin Shang. Biobased phosphorus siloxane-containing polyurethane foam with flame-retardant and smoke-suppressant performances. ACS Sustainable Chemistry & Engineering 9, 8623-8634 (2021). 10.1021/acssuschemeng.1c02273

12.    Zhaoshuang Li#, Siheng Wang#, Xinxin Yang, He Liu*, Yu Shan, Xu Xu, Shibin Shang, and Zhanqian Song*. Antimicrobial and antifouling coating constructed using rosin acid-based quaternary ammonium salt and N-vinylpyrrolidone via RAFT polymerization. Applied Surface Science 530, 147193 (2020). 10.1016/j.apsusc.2020.147193

13.    王思恒, 杨欣欣, 刘鹤, 商士斌, 宋湛谦*. 导电水凝胶的制备及应用研究进展. 化工进展, 2021, 40(5): 2646-2664. 10.16085/j.issn.1000-6613.2020-1196

14.    王思恒, 杨欣欣, 黄旭娟, 刘鹤, 商士斌, 宋湛谦*. 抗冻水凝胶的制备及其在柔性电子领域的应用. 精细化工, 2021, 38(6): 1081-1091.

15.    刘鹤, 王思恒, 杨欣欣, 商士斌, 宋湛谦. 一种高强度纤维素/膨润土复水凝胶的制备方法.(专利号ZL201911196521.8;授权公告号CN110862559B

#表示同等贡献,*表示通讯作者