科研项目:
[1] 国家自然科学基金委员会,青年科学基金项目,2024-01至2026-12,30万元,在研,主持.
[2] bv1946伟德官网,引进人才科研启动基金目,2025-01至2027-12,10万元,在研,主持.
代表性论文:
[1] C. Ban; Z. Wang; S. Zhang; L. Shan; Q. Chen; Y. Cai; R. Huang; Dual-Mode Flexible In-Memory Tactile Sensory Device with CMOS Compatibility [J]. Advanced Electronic Materials, 2024, 2400532, 10.1002/aelm.202400532.
[2] C. Ban, L. Shan, G. Yang, J. Gao, L. Wu, Z. Wang, Y. Cai, R. Huang. Artificial VO2 Spiking Neurons with Protective Mechanism for Enhancing Resilience of Spiking Neural Network Against Adversarial Attacks. IEEE Silicon Nanoelectronics Workshop, 2024: 1-2, oral.
[3] C. BAN#, Y. YIN#, X. Luo, Z. Liu, K. Chen, M. Tang, X. Dong, D. Zhang, Z. Li, Y. Wu, J. LIU, W. HUANG. Light-/steam-driven polymeric crosslinking with porous multistructure pattern for ultrastable and fast-speed memory [J]. Science China Materials, 2023, 66: 2023-2031.
[4] C. BAN, Z. ZHANG#, C. SONG#, H. ZHANG, X. LUO, X. WANG, J. LIU, Z. LIU, W. HUANG. Robust Organic-Inorganic Heterosynapses with High PPF and Broad Photoperception [J]. Advanced Materials Technologies, 2022, 8(3): 2200870
[5] C. BAN#, X. MIN#, J. XU#, F. XIU, Y. NIE, Y. HU, H. ZHANG, M. EGINLIGIL, J. LIU, W. ZHANG, W. HUANG. An Artificial Olfactory Memory System for Monitoring and Recording of Volatile Organic Compounds [J]. Advanced Materials Technologies, 2021, 6(11): 2100366.
[6] C. BAN, X. WANG, Z. ZHOU, H. MAO, S. CHENG, Z. ZHANG, Z. LIU, H. LI, J. LIU, W. HUANG. A Universal Strategy for Stretchable Polymer Nonvolatile Memory via Tailoring Nanostructured Surfaces [J]. Scientific Reports, 2019, 9(1): 1-7.
[7] J. XU#, C. BAN#, F. XIU, Z. TIAN, W. JIANG, M. ZHANG, H. ZHANG, Z. ZHOU, J. LIU, W. HUANG. Multimode Visualization of Electronic Skin from Bioinspired Colorimetric Sensor [J]. ACS Applied Materials & Interfaces, 2021, 13(25): 30205-30212.
[8] X. WANG#, Z. ZHOU#,C. BAN#, Z. ZHANG, S. JU, X. HUANG, H. MAO, Q. CHANG, Y. YIN, M. SONG, S. CHENG, Y. DING, Z. LIU, R. LIN, L. XIE, F. MIAO, J. LIU, W. HUANG. Multifunctional Polymer Memory via Bi‐Interfacial Topography for Pressure Perception Recognition [J]. Advanced Science, 2020, 7(8): 1902864.
班超逸,男,预聘副教授,2022年6月毕业于南京工业大学柔性电子(未来技术)学院,导师为黄维院士。2022年8月至2024年8月在北京大学集成电路学院开展博士后研究工作,导师为蔡一茂教授。2024年9月加入伟德源自英国始于1946,聚焦于忆阻器及新型神经形态器件的研究与应用推广。已经在忆阻器及神经形态器件机制、器件设计与制备、仿生特性模拟、表征测试及芯片设计等方面积累了丰富经验并取得了多项创新研究成果,在国际权威的期刊及会议上发表文章数十篇,其中第一作者及共一8篇。相关工作发表在Nature Communications、Advanced Science、Advanced Materials Technologies、Science China Materials、Applied Surface Science等国际高水平学术期刊上。目前还主持国家自然科学基金青年基金项目一项。