叶亚楠 特任教授


发布时间:2026-09-11


个人简介

叶亚楠,博士,中国科学技术大学特任教授、博士生导师,海外优青。硕士毕业于浙江大学高分子科学与工程学系,师从郑强教授;博士毕业于日本北海道大学生命科学院,师从龚剑萍教授。2025年入职中国科学技术大学核科学技术学院。

叶亚楠教授长期围绕同步辐射方法学开展软物质材料松弛动力学及强韧化机制研究,近年来围绕同步辐射表征、高分子凝胶结构机理、强韧化设计及功能化应用开展系统工作,在 PNAS、Advanced Functional Materials、Macromolecules、ACS Macro Letters 等国际期刊发表论文40余篇。

主持海外优青、国家青年、国家自然科学基金面上项目、国家军科委项目及中央引导地方等国家及省部级项目5项。

同步辐射方法学与软物质材料松弛动力学。

高分子凝胶网络结构、强韧化机制及大形变力学行为。

海洋防污吸附材料强韧化设计及海水提铀工程化应用。


教育经历

2014.092018.09,日本北海道大学,先端生命科学研究院,生命科学(生命融合科学)专业,博士研究生,导师:龚剑萍教授

2011.082014.03,浙江大学,高分子科学与工程学系,高分子材料专业,硕士研究生,导师:郑强教授

2006.092010.07,天津工业大学,材料科学与化学学院,材料科学与工程专业,本科


工作经历

2025.01至今,中国科学技术大学,特任教授

2022.052024.12,太原理工大学材料科学与工程学院,教授

2018.102019.03,日本北海道大学,博士后研究员


研究领域

1.  同步辐射解明铀全生命周期络合结构及其吸附材料强韧化机制

2.  高强韧网络结构和力学行为关系

3.  海洋防污吸附材料强韧化设计及海水提铀工程化验证


主持项目

1.  国家海外高层次人才引进计划青年项目,国家基金委,高分子材料流变、结构与性能,2023.01-2025.12,100万元,主持;

2.  山西浙大新材料与化工研究院研发项目,山西省科技厅,含动态键高强韧凝胶结构和大形变破坏机理,2023.09-2026.09,100万元,主持;


荣誉奖励

1.  IGP 2018 Publications Award,2018.02,日本;

2.  The Society of Polymer Science, Japan Annual Meeting Poster Award,2016.05,日本。


联系方式

地址:安徽省合肥市蜀山区合作化南路42号国家同步辐射实验室 230029

Email:yeyanan@ustc.edu.cn


近期代表性论文

[1] Xueyu Li, Kunpeng Cui, Yong Zheng, Ya Nan Ye, Chengtao Yu, Wenqi Yang, Tasuku Nakajima, Jian Ping Gong*. Role of hierarchy structure on the mechanical adaptation of self-healing hydrogels under cyclic stretching. Science Advances, 2023.

[2] Fengbo Zhu*, Shanhao Feng, Zequn Wang, Zhichao Zuo, Shilei Zhu, Wenwen Yu, Ya Nan Ye*, Meng An, Jin Qian, Zi Liang Wu, and Qiang Zheng*. Co-Ion Specific Effect Aided Phase Separation in Polyelectrolyte Hydrogels toward Extreme Strengthening and Toughening. Macromolecules, 2023, 56(15), 5881–5890.

[3] Shilei Zhu, Dongdong Yan, Lin Chen, Yan Wang, Fengbo Zhu, Yanan Ye*, Yong Zheng*, Wenwen Yu, and Qiang Zheng. Enhanced Rupture Force in a Cut-Dispersed Double-Network Hydrogel. Gels, 2023, 9(2), 158.

[4] Shilei Zhu, Yan Wang, Zhe Wang, Lin Chen, Fengbo Zhu, Yanan Ye*, Yong Zheng*, Wenwen Yu, and Qiang Zheng. Metal-Coordinated Dynamics and Viscoelastic Properties of Double-Network Hydrogels. Gels, 2023, 9(2), 145.

[5] Wenying Liu, Kaijie Yang, Wenwen Yu*, Fengbo Zhu, Sitong Zhang, Yanan Ye*, Qiang Zheng*. Synergistically enhanced antibacterial and degradation performance of starch via biodegradable and multi-functional crosslinker. Industrial Crops and Products, 2022, 192, 116128.

[6] Kunpeng Cui, Chengtao Yu, Ya Nan Ye, Xueyu Li, and Jian Ping Gong*. Mechanism of Temperature-Induced Asymmetric Swelling and Shrinking Kinetics in Self-Healing Hydrogels. Proceedings of the National Academy of Sciences, 2022, 119(36), e2207422119.

[7] Ya Nan Ye#, Md Anamul Haque#, Akane Inoue, Yoshinori Katsuyama, Takayuki Kurokawa*, and Jian Ping Gong*. Flower-like Photonic Hydrogel with Superstructure Induced via Modulated Shear Field. ACS Macro Letters, 2021, 10(6), 708–713.

[8] Xueyu Li, Kunpeng Cui, Takayuki Kurokawa, Ya Nan Ye, Tao Lin Sun, Chengtao Yu, Costantino Creton, Jian Ping Gong*. Effect of Mesoscale Phase Contrast on Fatigue-Delaying Behavior of Self-Healing Hydrogels. Science Advances, 2021, 7(16), eabe8210.

[9] Ya Nan Ye, Kunpeng Cui*, Wei Hong, Xueyu Li, Chengtao Yu, Dominique Hourdet, Tasuku Nakajima, Takayuki Kurokawa, and Jian Ping Gong*. Molecular mechanism of abnormally large non-softening deformation in a tough hydrogel. Proceedings of the National Academy of Sciences, 2021, 118(14), 2014694118.

[10] Kunpeng Cui, Ya Nan Ye, Chengtao Yu, Xueyu Li, Takayuki Kurokawa, Jian Ping Gong*. Stress Relaxation and Underlying Structure Evolution in Tough and Self-Healing Hydrogels. ACS Macro Letters, 2020, 9(11), 1582–1589.

[11] Kunpeng Cui, Ya Nan Ye, Tao Lin Sun, Chengtao Yu, Xueyu Li, Takayuki Kurokawa, and Jian Ping Gong*. Phase Separation Behavior in Tough and Self-Healing Polyampholyte Hydrogels. Macromolecules, 2020, 53(13), 5116–5126.

[12] Ya Nan Ye, Kunpeng Cui*, Tsutomu Indei, Tasuku Nakajima, Dominique Hourdet, Takayuki Kurokawa, and Jian Ping Gong*. Relaxation Dynamics and Underlying Mechanism of a Thermally Reversible Gel from Symmetric Triblock Copolymer. Macromolecules, 2019, 52(22), 8651–8661.

[13] Kunpeng Cui, Ya Nan Ye, Tao Lin Sun, Liang Chen, Xueyu Li, Takayuki Kurokawa, Tasuku Nakajima, Takayuki Nonoyama, and Jian Ping Gong*. Effect of Structure Heterogeneity on Mechanical Performance of Physical Polyampholyte Hydrogels. Macromolecules, 2019, 52(19), 7369–7378.

[14] Hui Jie Zhang, Feng Luo, Yanan Ye, Tao Lin Sun, Takayuki Nonoyama, Takayuki Kurokawa, and Tasuku Nakajima*. Tough Triblock Copolymer Hydrogels with Different Micromorphologies for Medical and Sensory Materials. ACS Applied Polymer Materials, 2019, 1(8), 1948–1953.

[15] Ya Nan Ye, Martin Frauenlob, Lei Wang, Masumi Tsuda, Tao Lin Sun, Kunpeng Cui, Riku Takahashi, Hui Jie Zhang, Tasuku Nakajima*, Takayuki Nonoyama, Takayuki Kurokawa, Shinya Tanaka, Jian Ping Gong*. Tough and Self-Recoverable Thin Hydrogel Membranes for Biological Applications. Advanced Functional Materials, 2018, 28(31), 1801489.









上一篇:下一篇: