学校主页
师资队伍    


当前位置: 网站首页 师资队伍 正文
王力
阅读次数: 添加时间:2025/07/16 发布:







王力,博士,副教授,硕士生导师

邮箱: wangl_scme@njtech.edu.cn; 1260524832@qq.com

参考链接:https://www.x-mol.com/groups/wang_xiaohui;https://orcid.org/0000-0003-3202-1888


教育与工作经历:

2025.04 – 至今:南京工业大学,化学与分子工程学院,副教授

2022.09 – 2024.12:南方科技大学,生物医学工程系,博士后

2017.09 – 2022.06:华东师范大学,生命科学学院,博士(硕博连读)

2013.09 – 2017.06:中国药科大学,药物化学专业,本科


研究方向:

(1)离子凝胶基神经形态器件(人工突触和神经元)的开发和类脑信息处理应用

(2)纳米纤维素、壳聚糖等生物质基复合材料的开发及功能应用


主持项目:

(1)国家自然科学基金青年科学基金项目(22402076),异质水凝胶界面诱导电势弛豫实现离子人工突触,2025.01 – 2027.12,在研

(2)中国博士后科学基金第73批面上资助(2023M731513),结构化水凝胶用于零功耗离子基神经形态传感,2023.06 – 2024.12,结题


代表性论文:

[1] Wang L#, Tian Y#, Chang Y, Chen L, Zhang Q*, Cellulose nanofiber-arose air barrier enabling closed-cell foams prepared via oven-drying. Caborhydrate Polymers, 351, 123096 (2025).

[2] Zhang H#, Wang S#, Wang L*, Li S, Liu H, Zhu X, Chen Y, Xu G, Zhang M, Liu Q*, Wang R*, Xiao K*, Bio-inspired retina by regulating ion-confined transport in hydrogels. Advanced Materials, 37, 2500809 (2025).

[3] Chen Y, Xia J, Qu Y, Zhang H, Mei T, Zhu X, Xu G, Li D, Wang L*, Liu Q*, Xiao K*, Ephaptic coupling in ultralow-power ion-gel nanofiber artificial synapses for enhanced working memory. Advanced Materials, 37, 2419013 (2025).

[4] Wu J, Zhang L, Chang W, Zhang H, Mei T, Wang L*, Zhang M*, Xiao K*, A biomimetic ionic hydrogel synapse for self-powered tactile-visual fusion perception. Advanced Functional Materials, 2500048 (2025). (https://doi.org/10.1002/adfm.202500048)

[5] Wang L, Wang S, Xu G, Qu Y, Zhang H, Liu W, Dai J, Wang T, Liu Z, Liu Q, Xiao K*, Ionic potential relaxation effect in a hydrogel enabling synapse-like information processing. ACS Nano, 18, 2970429714 (2024).

[6] Wang L, Zhao W, Zhao Y, Li W, Wang G*, Zhang Q*, Enzymatically-mineralized double-network hydrogels with ultrahigh mechanical strength, toughness, and stiffness. Theranostics, 13, 673684 (2023).

[7] Wang L#, Zhang C#, Zhao W, Li W, Wang G*, Zhou X*, Zhang Q*, Water-swellable cellulose nanofiber aerogel for control of hemorrhage from penetrating wounds. ACS Applied Bio Materials, 5, 48864895 (2022).

[8] Wang L, Wang Y, Zhao W, Lin K, Li W, Wang G*, Zhang Q*, Library screening to identify highly-effective autophagy inhibitors for improving photothermal cancer therapy. Nano Letters, 21, 94769484 (2021).

[9] Wang L#, Cui Q#, Pan S, Li Y, Jin Y, Yang H, Li T, Zhang Q*, Facile isolation of cellulose nanofibers from soybean residue. Carbohydrate Polymer Technologies and Applications, 2, 100172 (2021).


公开专利:

[1] 一种快速吸水自膨胀纳米纤维素材料及其制备方法和应用,2023-09-12,CN116731354A

[2] 一种制备羧甲基化纳米纤维素的方法,2022-07-08,CN114716574A。

[3] 一种表面羧基化纳米纤维素、药物制剂及其在治疗肥胖症的应用,2021-02-09,CN112336741A。

[4] 一种纤维素泡沫材料及其制备方法和应用,202410928190.7。

地址:南京浦口区浦珠南路30号 邮编:211880 电话:025-58139535、9536、9537 邮箱:chem@njtech.edu.cn

Copyright © 2019 南京工业大学化学与分子工程学院 All Rights Reserved.

总共访问: 今日访问: