马愫倩,吉林大学教授/博导,国家博新计划获得者、吉林省优青、吉林大学唐匡青年学者。
先后主持国家自然科学基金项目1项、军委科技委基础加强子课题1项、国家博新计划项目1项、吉林省自然科学基金优秀青年基金1项等省部级项目9项。担任国际仿生工程学会青年委员、《Journal of Bionic Engineering》、《Advanced Bionics》等期刊青年编委,兼任吉林省增材制造学会理事,兼任辽宁材料实验室科研骨干。长期从事仿生柔性驱动材料、柔性电子皮肤、4D打印等研究工作,在Advanced Materials、Advanced Functional Materials、Advanced Fiber Materials、 Advanced Science、Nano Letters、Chemical Engineering Journal等国际权威期刊发表SCI论文52篇,他引2157次,H因子23。

一、招生意向
每年在仿生科学与工程专业招收硕士和博士研究生,欢迎材料、化学、机械、力学、计算机、生物医学工程等相关专业的优秀本科生和硕士生报考。
E-mail: masuqian@jlu.edu.cn
地址:长春市人民大街5988号,吉林大学南岭校区仿生楼
二、研究方向
1、软体机器人研究:主要从事柔性驱动材料(人工肌肉)设计制备及其在智能驱动领域的应用
2、智能传感研究:主要从事柔性传感器(电子皮肤)设计制备及其在应变、应力、人体肌电信号检测等领域的应用
3、4D打印研究:主要从事智能材料的4D打印制造技术,及其在变形、变构、变功能方面的应用
三、主要履历
2025.09-至今:吉林大学,工程仿生教育部重点实验室,教授
2020.09-2025.09:吉林大学,工程仿生教育部重点实验室,副教授
2018.06-2020.09:吉林大学,工程仿生教育部重点实验室,讲师/博士后
2016.09-2017.09:英国圣安德鲁斯大学,联合培养
2013.09-2018.06:吉林大学,化学学院,硕博连读(保送直博)
2009.09-2013.06:吉林大学,化学学院,本科
四、主要科研项目
[1] 国家自然科学基金,青年基金,基于仿生多孔电极的柔性智能驱动材料设计与性能研究,2022.01-2024.12,项目负责人
[2] 国家自然科学基金,“共融机器人”重大研究计划集成项目,2020.01-2024.12,子课题负责人
[3] 吉林省自然科学基金,优秀青年基金,2024.01-2026.12,项目负责人
[4] 吉林大学学科交叉青年创新团队,2025.01-2027.12,项目负责人
[5] 吉林省科技厅,青年成长科技计划项目,仿生4D打印柔性智能驱动器多模态变形的研究,2021.01-2022.12,项目负责人
[6] 吉林省教育厅,科学研究重点项目,基于三维编织的仿生肌肉材料高能量密度关键技术研究,2024.01-2025.12,项目负责人
[7] 吉林省教育厅,科学技术研究项目,电制动仿生柔性智能驱动器的制备和应用研究,2021.01-2022.12,项目负责人
[8] 吉林大学励新优秀青年教师培养计划,2021.01-2023.12,项目负责人
[9] 中国博士后科学基金会,面上项目,2018.11-2020.06,项目负责人
[10] 中国博士后科学基金会,博士后创新人才支持计划,2018.06-2020.06,项目负责人
五、近三年代表性论文
[1] Zirui Liu, Yifan Li, Yingqing Yu, Chang Liu, Sen Lin, Qiushi Wang, Yubo Wang, Jiandong Cui, Hao Zhang,* Suqian Ma,* Yunhong Liang,* Luquan Ren. Nature-inspired Design of Functional Materials: Learning from Living Organisms, Human Life, and Living Habitats. Advanced Fiber Materials, 2025, accepted. (IF=21.3)
[2] Chang Liu, Zirui Liu, Rilong Wu, Yulong Zhang, Xuliang Lu, Kaisheng Yang, Suqian Ma*, Yunhong Liang*, Luquan Ren. Novel 3D printed continuous fiber-reinforced composites: A strategy to realize spiral mode manipulating and support-free manufacturing. Additive Manufacturing, 2025, 111: 104975. (IF=11.1)
[3] Hao Zhang, Suqian Ma,* Zirui Liu, Yifan Li, Hui Xu, Lei Ren, Yunhong Liang,* and Luquan Ren. Efficient Electron Channels Based on Pt/Au Composite Electrode Enabling Enhanced Electromechanical Performance and Extended Lifetime of Interactive Ionic Actuators. Nano Letters, 2025, 25(24): 9581-9588. (IF=9.1)
[4] Bioinspired Flexible Epidermal Electronics with Superior Gas Permeability and Unidirectional Water Transport Capability. Yingqing Yu, Shengli Wang, Jianan Wu, Suqian Ma,* Yunhong Liang, Lei Ren,* and Luquan Ren. Nano Letters, 2025, 25(10): 3817-3825. (IF=9.1)
[5] Yifan Li,# Suqian Ma,# Zirui Liu, Hao Zhang, Hui Xu, and Yunhong Liang*. Isopropanol Modified Hydrocarbon-Based Polymer: Toward an Environmentally Friendly Large-Deformation Soft Actuator. Nano Letters, 2025, 25(8): 3113-3121. (IF=9.1)
[6] Qiushi Wang, Cong Li, Xianke Li, Hao Wu, Zhaohua Lin, Changyi Liu, Shunbo Wang,* Suqian Ma,* Yunhong Liang*. Bioinspired fabrication of 3D-printed composites based on multiscale and interfacial architecture of conch shells. Acta Biomaterialia, 2025, 202: 352-364. (IF=9.6)
[7] Jiandong Cui, Yan Xia, Yingqing Yu, Hong Xu, Nan Zhang, Zhiwei Tuo, Zirui Liu*, Zhaohua Lin, Suqian Ma*, Yunhong Liang*, Luquan Ren. Preparation and Application of Nature-inspired High-performance Mechanical Materials. Acta Biomaterialia, 2025, 195: 1-41. (IF=9.6)
[8] Sen Lin#, Suqian Ma#, Yunhong Liang*, et al. A humidity-driven film with fast response and continuous rolling locomotion. Chemical Engineering Journal, 2024, 495, 153294. (IF=15.1)
[9] Hao Zhang, Suqian Ma*, Chuhan Xu, et al. Soft Actuator with Biomass Porous Electrode: A Strategy for Lowering Voltage and Enhancing Durability. Nano Letters, 2024, 24, 16, 5066−5074. (IF=9.2)
[10] Hao Zhang, Zhaohua Lin, Yong Hu; Suqian Ma*, et al. Low-Voltage Driven Ionic Polymer-Metal Composite Actuators: Structures, Materials, and Applications. Advanced Science, 2023, 10, 2206135. (IF=17.521)
[11] Chunbao Liu, Hui Xu, Yunhong Liang,* Suqian Ma,* et al. High water content electrically driven artificial muscles with large and stable deformation for soft robots. Chemical Engineering Journal, 2023, 472, 144700. (IF=15.1)
[12] Boya Chen, Zhihui Qian,* Suqian Ma,* Yunhong Liang, Lei Ren,* Luquan Ren, et al. Gas-permeable and stretchable on-skin electronics based on a gradient porous elastomer and self-assembled silver nanowires. Chemical Engineering Journal, 2023, 463, 142350. (IF=15.1)
[14] Meng Wang, Zhaohua Lin, Suqian Ma,* et al. Composite Flexible Sensor Based on Bionic Microstructure to Simultaneously Monitor Pressure and Strain. Advanced Healthcare Materials, 2023, 12, 27, 2301005. (IF=10)
[15] Meng Wang, Hao Zhang, Han Wu, Suqian Ma*, et al. Bioinspired flexible piezoresistive sensor for high-sensitivity detection of broad pressure range. Bio-Design and Manufacturing, 2023, 6, 243-254. (IF=7.9)