世博娱乐

师资队伍

教师名录

谢少雄

工程力学系

电子邮件:[email protected]
通讯地址:上海市东川路800号木兰船建大楼A区
个人主页://shijiebet.net/teachers/15313.html

        上海交通大学世博娱乐长聘教轨副教授,洪堡学者,JSPS学者。本硕博毕业于四川大学固体力学与土木工程专业,美国University of Washington联合培养博士。先后工作于中国核动力研究设计院、日本Kyushu University(JSPS研究员)、德国University of Erlangen-Nuremberg(洪堡研究员)以及德国亥姆赫兹国家研究中心(客座科学家),目前主要从事多功能压电铁电材料的可控合成、疲劳断裂、实验固体力学、智能器件等研究工作。在AFM、JMPS、PRL、Acta Mater.等顶级刊物发表多篇论文,担任Nano-Micro Lett., eScience, J. Mater. Sci. Technol.等多家国际刊物青年编委、Mater. Lett.等多家国际刊物客座编辑以及AFM等30余家国际期刊独立审稿人。

欢迎博士后/博士/硕士/本科生加入压电铁电力学*PFMech课题组(Open Positions)

We are currently seeking applications for postdoctoral, PhD, and undergraduate/graduate research positions.

课题组每年招募博士后、博士生、硕士生以及联合培养学生若干,热忱欢迎力学、物理、材料、电子、生物等相关领域人员邮件咨询!

另外,也热忱欢迎力学、土木、船舶海洋、交通运输等相关专业本科生加入课题组从事PRP、大创等科研实践项目。



        从事新型智能压电铁电材料及实验固体力学交叉基础科学研究,聚焦“压电铁电材料可控制备、多场耦合复杂环境多尺度力学机理、先进电子元器件应用技术”三大核心内容开展研究:

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1. 压电铁电材料可控制备及传感、制动、能量收集与储能应用

Piezoelectric and ferroelectric materials for sensors, actuators, energy harvesting, and energy storage applications.

2. 力学调谐压电铁电材料及新物性探索

Mechanically-tuned piezo-ferroelectrics

3. 力电疲劳及断裂增韧

Fatigue and toughening

4. 微纳尺度多场耦合力学

Micro/nano-scale multi-field coupling mechanics


博士后/博士/硕士/本科招生(Open Positions)

We are currently seeking applications for postdoctoral, PhD, and undergraduate/graduate research positions.

每年计划招聘博士后(1-2名),热忱欢迎力学、材料、物理、电子、生物等相关领域科研人员邮件联系与合作!

每年计划招收博士生(1-2名)、硕士生(1-2名)以及联合培养学生若干,热忱欢迎力学、材料、物理、电子等相关专业学生邮件咨询与报考!

每年计划招收本科生(1-2名),热忱欢迎力学、土木、交通运输、海洋船舶等相关专业学生邮件咨询与加入!



1. Nano-Micro Lett.eScienceJ. Mater. Sci. Technol.、Adv. Powder Mater.等学术期刊青年编委

2. Mater. Lett.等学术期刊客座编辑

3. Adv. Funct. Mater.、Mater. Today Phys.、Theor. Appl. Fract. Mech.、ACS Appl. Mater. Interfaces等30余家学术期刊独立审稿人


2024 - High-throughput development of two dimensional halide perovskite antiferroelectrics,德国洪堡基金会,主持

2021 - Bismuth titanate based high temperature piezoceramics: Domain structure and polarization dynamics,日本学术振兴会,主持

2021 - 基于应力调控的钛酸铋基压电陶瓷畴结构动力学演变机理研究,国家自然科学基金青年项目,主持

2019 - 微结构敏感超高周疲劳机理与超低速裂纹扩展研究,国家自然科学基金重点项目,参与

2016 - 复杂载荷-环境下超长寿命疲劳振动加速综合实验系统研制,国家自然科学基金重大科研仪器研制项目,参与






一、10篇代表性论文:

1. Shaoxiong Xie*, Qian Xu, Qiang Chen, Jianguo Zhu, Qingyuan Wang, Realizing super-high piezoelectricity and excellent fatigue resistance in domain-engineered bismuth titanate ferroelectrics, Advanced Functional Materials, 2024, 2312645 (Q1)

2. Shaoxiong Xie, Yu Chen, Wenyuan Liu, Guozhan Xia, Boyuan Huang, Cong Liu, Qingyuan Wang, Jiangyu Li, Three-dimensional domain patterns in tetragonal-to-monoclinic Bi4Ti3O12 ceramics: nonlinear analysis and piezoresponse force microscopy imaging, Acta Materialia, 2020, 188: 228-240 (Q1)

3. Shaoxiong Xie*, Jikai Shi, Qian Xu, Qingyuan Wang, Jianguo Zhu, Yukio Sato, Qiang Chen, In-depth understanding of {110}-type domain walls in bismuth titanate ceramics, Scripta Materialia, 2022, 217 (Q1)

4. Shaoxiong Xie, Zhi Tan, Laiming Jiang, Rui Nie, Qian Xu, Yu Chen, Jianguo Zhu, Qingyuan Wang, Ferroelastic properties and compressive stress-strain response of bismuth titanate based ferroelectrics, Ceramics International, 2020, 46:1183-1188 (Q1)

5. Shaoxiong Xie, Jiageng Xu, Yu Chen, Zhi Tan, Rui Nie, Qingyuan Wang, Jianguo Zhu, Flexural fracture mechanisms and fatigue behaviors of Bi4Ti3O12 based high temperature piezoceramics sintered at different temperatures, Ceramics International, 2018, 44:16758-16765 (Q1)

6. Qian Xu, Shaoxiong Xie*, Fuchao Zhao, Lang Li, Yangyue Zhang, Jianguo Zhu, Qingyuan Wang, Fracture behaviors and crack propagation anisotropy in multi-ions modified bismuth titanate ferroelectrics, Journal of Alloys and Compounds, 2024, 1009 (Q1)

7. Qian Xu, Shaoxiong Xie*, Lang Li, Jie Xing, Qiang Chen, Jianguo Zhu, Qingyuan Wang, Tailoring hardness behaviors of BIT-based piezoceramics via doping and annealing strategies, Journal of the European Ceramic Society, 2023, 43(3): 916-927 (Q1)

8. Jiageng Xu, Shaoxiong Xie*, Qian Xu, Jie Xing, Qingyuan Wang, Jianguo Zhu, Significantly enhanced performance and conductivity mechanism in Nb/Mn co-doped CaBi4Ti4O15 ferroelectrics, Journal of Materiomics, 2024, 10 (3), 652-669 (Q1)

9. Shuai Chen, Ting Wang, Shaoxiong Xie*, Jiaju Leng, Qingfeng Zhu, Kai Li, Weiping Gong, Jianguo Zhu, Qingyuan Wang, High-entropy strategy for improved mechanical and energy storage properties in BaTiO3–BiFeO3-based ceramics, ACS Applied Materials & Interfaces, 2024, 16, 10: 12521 (Q1)

10. Jiageng Xu; Qingyuan Wang; Jianguo Zhu; Qian Xu; Yu Chen; Shaoxiong Xie*; Insights into deformation and fracture mechanisms of CaBi4Ti4O15 piezoceramics via doping and poling engineering, Journal of the American Ceramic Society, 2025, 109(1): e70264 (Q1)

二、专著:

1. Book: Fatigue of Materials and Structures Physics and Date Science,参与

2. Book: Ferroic Materials - Understanding, Development, and Utilization,参与




近五年授权发明专利:

1.  谢少雄,陈帅,王挺,王清远,一种铁酸铋钛酸钡基无铅储能弛豫铁电陶瓷材料及其制备方法和应用, ZL 202411764149.7

2.  谢少雄,邵柯,吴波,王清远,一种铌酸钾钠基无铅压电陶瓷材料及其制备方法和应用, ZL 202411764152.9

3.  谢少雄,陈帅,王挺,王清远,一种无铅高熵铁电陶瓷材料及其制备方法和应用, ZL 202410186437.2

4.  许嘉赓,谢少雄,王清远,一种小样品材料力电温多场耦合测试系统, ZL 202410748950.6

5.  许嘉赓,谢少雄,王清远,一种铋层状结构压电陶瓷材料及其制备方法和应用, ZL 202311061130.1


2025 – 中国发明协会发明成果二等奖

2024 – 国际学术刊物Exploration学术贡献奖

2024 – 国际学术刊物Microstructures杰出青年编委、最佳审稿奖





2024 – 德国洪堡学者人才计划

2021 – 日本JSPS学者人才计划

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