课题组网站:
https://magroup.xjtu.edu.cn/
http://gr.xjtu.edu.cn/web/msewma/home
研究领域或方向
l 有机光电子材料(太阳能电池)
l 有机神经形态材料
l 柔性智能传感器及集成器件
l 同步辐射及中子技术发展(共振软X射线散射)
工作经历
l 2015.3- 西安交通大学材料学院,教授
l 2014.7-2015.2 香港科技大学化学系,助理教授
l 西交大-港科大可持续发展研究院,研究员
l 2011.9-2014.7 美国北卡州立大学物理系博士后
l 2010.9-2011.9 巴黎高等师范学院, 博士后
科研项目
l 国家重点研发计划课题(2024-2029)
l 基金委重点国际(地区)合作研究项目(2025-2029)等
学术成果
马伟,西安交通大学教授、博士生导师,材料学院副院长,入选国家级领军人才项目(2020)、国家级青年人才项目(2015)、陕西省科技创新团队负责人(2019)。长期从事有机光电子材料、有机神经形态材料、柔性智能传感器及集成器件、柔性非易失性存储器和大科学装置同步辐射X射线散射技术开发等方面的研究。近年以来以第一/通讯作者在Nat. Mater., Nat. Electron., Nat. Energy, Adv. Mater.等著名期刊和影响因子大于15的期刊发表研究论文100余篇,SCI引用总数4万余次,H因子109。获得陕西省自然科学一等奖(排名第一),中国侨界贡献奖,强国青年科学家提名奖,国际先进材料协会科学家奖,连续八年入选科睿唯安全球高被引科学家(2018-2025)。任中国材料研究学会青年工作委员会理事,《中国化学》青年编委、InfoMat期刊编委。团队研究成果被美国桑迪亚国家实验室、美国劳伦斯伯克利国家实验室等评价为“在发展具有生物神经网络的感知和学习多功能模拟电路中价值巨大”“在脑机接口领域具备良好的应用前景。”
代表性论文:
1.An organic electrochemical transistor for multi-modal sensing, memory and processing
Shijie Wang, Xi Chen, Chao Zhao, Yuxin Kong, Baojun Lin, Yongyi Wu, Zhaozhao Bi, Ziyi Xuan, Tao Li, Yuxiang Li, Wei Zhang, En Ma, Zhongrui Wang * and Wei Ma*, Nature Electronics, 2023. DOI: 10.1038/s41928-023-00950-y
2.A high-frequency artificial nerve based on homogeneously integrated organic electrochemical transistors.
Shijie Wang, Yichang Wang, Xinmei Cai, Bingjun Wang*, Chao Zhao *, Guangjiu Pan, Constantin Harder, Yusuf Bulut, Beichen Zhang, Sen Zhang, Yuxin Kong, Kexin Huang, Bomin Xie, Peter Müller-Buschbaum, Stephan V. Roth, Lin Yang, Yuxiang Li, Yong Han, Gang Bao and Wei Ma*, Nat. Electron., 2025. DOI: 10.1038/s41928-025-01357-7
3.Making weak dopants strong
Han Yan, Wei Ma*, Nature materials, 2019,18(12), 1269-1270
4.Organic electrochemical transistors for integrated sensing–memory–computing hardware towards intelligent Internet of Bodies.
Bingjun Wang, Shijie Wang, Chao Zhao, Xi Chen, Zhongrui Wang, and Wei Ma*, Nat. Rev. Electr. Eng., 2025. DOI: 10.1038/s44287-025-00234-x
5.Light-insensitive organic solar-powered amplifiers.
Qiang Wu, Shijie Wang, Wei Gao, Zeng Chen, Jun Tao, Xinyue Song, Sen Yan, Haiming Zhu, Ke Zhou, Long Jiang*, Xiaomin Xu*, Alex K.-Y. Jen*, and Wei Ma*, Nat. Commun., 2025. DOI: 10.1038/s41467-025-65640-z
6.Efficient organic solar cells processed from hydrocarbon solvents
Jingbo Zhao, Yunke Li, Guofang Yang, Kui Jiang, Haoran Lin, Harald Ade, Wei Ma*, He Yan*, Nature Energy, 2016, DOI: 10.1038/nenergy.2015.27
7.Aggregation and morphology control enablesmultiple cases of high-efficiency polymer solar cells
Yuhang Liu, Jingbo Zhao,Zhengke Li , Cheng Mu, Wei Ma*,Huawei Hu, Kui Jiang, Haoran Lin, HaraldAde*, and He Yan*, Nature Communication, 2014,
8.Flexible Organic Solar Cells: From Material Design and Morphology Optimization to Practical Applications
Qiang Wu, Hairui Bai, Tengfei Li, Qunping Fan*, and Wei Ma*, Advanced Materials, 2025, e15878
9.Nonhalogenated Dual-Slot-Die Processing Enables High-Efficiency Organic Solar Cells
Jingwei Xue, Heng Zhao, Baojun Lin, Yilin Wang, Qinglian Zhu, Guanyu Lu, Baohua Wu, Zhaozhao Bi, Xiaobo Zhou, Chao Zhao, Guanghao Lu, Ke Zhou*, and Wei Ma*, Advanced Materials, 2022. DOI: 10.1002/adma.202202659
10.Kinetics Manipulation Enables High-Performance Thick Ternary Organic Solar Cells via R2R-Compatible Slot-Die Coating
Heng Zhao, Baojun Lin, Jingwei Xue, Naveed Hafiz Bilal, Chao Zhao, Xiaobo Zhou, Ke Zhou, Hongbo Wu, Yuhang Cai, Daqin Yun, Zheng Tang, Wei Ma*, Advanced Materials, 2022.DOI:10.1002/adma.202105114