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何向楠职称: 讲师 硕士生导师 学科: 机械工程 教学部门: 办公地址: 河海大学常州校区58号楼310 通讯地址: 江苏省常州市金坛区 邮箱: 20241638@hhu.edu.cn |
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个人简介主要从事3D打印、柔性传感及软体机器人研究,截至目前,共发表学术论文20余篇,其中以第一作者在Nature Communications(高被引论文、主编推荐论文)、Additive Manufacturing、ACS Applied Materials & Interfaces(封面论文)、International Journal of Smart and Nano Materials、Advanced Materials Technologies、Soft Matter、Talanta等期刊发表论文7篇。申请发明专利7项,授权2项。论文总被引3100余次,单篇最高被引230余次。 邮箱:hexn@hhu.edu.cn 目前主持或参与了以下科研项目并承担相关研发任务: (1)基于灰度光固化3D打印的梯度离子凝胶可控构筑机理及传感性能研究(国家自然科学基金青年科学基金项目,主持) (2)自愈合3D打印离子凝胶动态交联机制及其水下传感性能研究(江苏省自然科学基金青年基金项目,主持) (3)跨介质自适应电子皮肤的设计及传感机理研究(常州市领军型创新人才引进培育项目基础研究创新类,主持) (4)光固化3D打印离子导电材料设计及其传感性能研究(中央高校业务费项目,主持) (5)离子电活性聚合物力电转换机制及共融机器人仿生皮肤构建(江苏省自然科学基金杰出青年基金项目,参与) (6)仿生人工肌纤维的驱动-感知协同机制及可穿戴康复研究(江苏省基础研究重点项目,参与) (7)极薄强韧陶瓷义齿微立体光固化增材制造技术与装备研究(科技部国家重点研发计划,参与) (8)基于多材料光固化4D打印的高力学性能形状记忆聚合物复合材料设计与工艺研究(国家自然科学基金面上项目,参与) 论文: [1]. Xiangnan He, Biao Zhang, Qingjiang Liu, Hao Chen, Jianxiang Cheng, Bingcong Jian, Hanlin Yin, Honggeng Li, Ke Duan, Jianwei Zhang, Qi Ge*. Highly conductive and stretchable nanostructured ionogels for 3D printing capacitive sensors with superior performance. Nature Communications, 2024, 15(1): 6431. (高被引论文) [2]. Xiangnan He, Rong Wang, Shunshun Qia, Jianxiang Cheng, Haitao Ye, Honggeng Li, Shuna Chen, Bingcong Jian, Qi Ge*. Vat photopolymerization 3D printing of polymer-derived SiOC ceramics with high precision and high strength. Additive Manufacturing, 2023, 78: 103889. [3]. Xiangnan He, Jianxiang Cheng, Zhenqing Li, Haitao Ye, Xinfeng Wei, Honggeng Li, Rong Wang, Yuan-Fang Zhang, Hui Ying Yang, Chuanfei Guo, Qi Ge*. Multimaterial three-dimensional printing of ultraviolet-curable ionic conductive elastomers with diverse polymers for multifunctional flexible electronics. ACS Applied Materials & Interfaces, 2023, 15(2): 3455-3466. (封面文章) [4]. Xiangnan He, Jianxiang Cheng, Zhenqing Li, Haitao Ye, Zechu Sun, Qingjiang Liu, Honggeng Li, Rong Wang, Qi Ge*. Stretchable ultraviolet curable ionic conductive elastomers for digital light processing based 3D printing. Advanced Materials Technologies, 2023, 8(13): 2202088. [5]. Xiangnan He, Jianxiang Cheng, Zechu Sun, Haitao Ye, Qingjiang Liu, Biao Zhang *, Qi Ge*. A volatile microemulsion method of preparing water-soluble photo-absorbers for 3D printing of high-resolution, high-water-content hydrogel structures. Soft Matter, 2023, 19(20): 3700-3710. [6]. Xiangnan He, Yaning Wang, Yue Wang, Zhangrun Xu*. Accurate quantitative detection of ell surface sialic acids with a background-free SERS probe. Talanta, 2020, 209: 120579. [7]. Zhenqing Li, Xiangnan He, Jianxiang Cheng, Honggeng Li, Yuan-Fang Zhang, Xiaojuan Shi, Kai Yu, Hui Ying Yang, Qi Ge*. Hydrogel-elastomer-based stretchable strain sensorfabricated by a simple projection lithography method. International Journal of Smart and Nano Materials, 2021, 12(3): 256-268. (共同第一作者) [8]. Honggeng Li, Biao Zhang, Haitao Ye, Bingcong Jian, Xiangnan He, Jianxiang Cheng, Zechu Sun, Rong Wang, Zhe Chen, Ji Lin, Rui Xiao, Qingjiang Liu,Qi Ge*. Reconfigurable 4D printing via mechanically robust covalent adaptable network shape memory polymer. Science Advances, 2024, 10(20): eadl4387. [9]. Qi Ge*, Zhe Chen*, Jianxiang Cheng, Biao Zhang, Yuan-Fang Zhang, Honggeng Li,Xiangnan He, Chao Yuan, Ji Liu, Shlomo Magdassi, Shaoxing Qu. 3D printing of highly stretchable hydrogel with diverse UV curable polymers. Science Advances, 2021, 7(2): eaba4261. [10].Rong Wang, ChaoYuan, Jianxiang Cheng, Xiangnan He, Haitao Ye, Bingcong Jian, Honggeng Li, Jiaming Bai, Qi Ge*. Direct 4D printing of ceramics driven by hydrogel dehydration. Nature Communications, 2024, 15(1): 758. [11].Caicong Li, Jianxiang Cheng, Yunfeng He, Xiangnan He, Ziyi Xu, Qi Ge*, Canhui Yang*. Polyelectrolyte elastomer-based ionotronicsensors with multi-mode sensing capabilities via multi-material 3D printing. Nature Communications. 2023, 14(1): 4853. [12].Jianxiang Cheng, Rong Wang, Zechu Sun, Qingjiang Liu, Xiangnan He, Honggeng Li, Haitao Ye, Xingxin Yang, Xinfeng Wei, Zhenqing Li, Bingcong Jian, Weiwei Deng, Qi Ge*. Centrifugal multimaterial 3D printing of multifunctional heterogeneous objects. Nature Communications, 2022, 13(1): 7931. [13].Hanzheng Xing, Xiangnan He, Yujia Wang, Xuan Zhang, Lei Li, Yecheng Wang, Zekun Cheng, Hui Wu, Qi Ge*, Xiaoyan Li*. Strong, tough, fatigue-resistant and 3D-printable hydrogel composites reinforced by aramid nanofibers. Materials Today, 2023, 68: 84-95. [14].Liuchao Jin, Shouyi Yu, Jianxiang Cheng, Zhigang Liu, Kang Zhang, Sicong Zhou, Xiangnan He, Guoquan Xie, Mahdi Bodaghi, Qi Ge*, Wei-Hsin Liao*. Machine learning powered inverse design for strain fields of hierarchical architectures, Composites Part B, 2025, 299, 112372. 个人资料
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研究领域长期聚焦多功能3D打印与柔性电子交叉领域开展前沿性研究,研究方向主要为:1、多功能3D打印技术:主攻高精度、多材料一体化3D打印工艺与装备研发,突破传统打印技术局限,适配多品类功能材料的定制化成型制造需求;2、功能材料研发与应用:重点开展导电弹性体、智能水凝胶、形状记忆聚合物、陶瓷等特种功能材料的配方设计、性能优化与成型机理研究,挖掘材料多功能适配性与工程应用价值;3、柔性电子与智能感知:围绕柔性电子器件、智能仿生皮肤、机器人感知系统展开研究,依托先进3D打印技术实现功能材料与智能器件的一体化集成,推动先进制造技术在智能装备、柔性传感、仿生机器人等前沿领域的落地应用。 科研项目
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教学成果教学资源社会职务荣誉及奖励招生信息招收学术型硕士、专业型硕士,欢迎机械工程、力学、材料科学与工程及相关专业的同学报考! 主要研究方向 1. 多功能3D打印技术 2. 功能材料与智能结构 3. 柔性电子与机器人感知 不同专业背景,都能找到研究切入点
注重科研思维、实验技能与工程实践能力的培养,支持论文发表、专利申请、学术交流及硕博深造。欢迎对增材制造、智能材料与结构、柔性传感、机器人技术感兴趣,愿意探索跨学科问题的同学联系咨询。 联系邮箱:hexn@hhu.edu.cn |