Personal Information
Supervisor of Master's Candidates
E-Mail:24fb5ed7335373c0026fdd7595f817047765953e8a710f9aa21c7d498a5c9c53a148b0bf473cc258984052d99691ac60b973a45086f64876091513d11c569b9351614237d5d4ccc14e6a5dbe18c31abe3db31d54d83d119ad484bfcc4fab92e74e37cb7566c318e9688b772363a51afac52e890518682bdbbcd865b5f5613e55
Date of Employment:2025-07-10
School/Department:杭州国际创新研究院
Gender:Male
Status:Employed
Alma Mater:中国科学院大学
Discipline:Chemistry
Materials Science and Engineering
Profile
朱聪聪:北京航空航天大学国际创新学院副教授,硕士生导师,现隶属仿生界面材料科学全国重点实验室/仿生科学与技术科创中心。从事纳米限域表界面材料的设计、制备与应用研究,聚焦限域空间内物质传输的关键影响因素,致力于实现限域界面材料在仿生传感、仿生能源等方向的基础理论突破与应用技术开发,发表SCI论文近30篇,申请授权发明专利2项,主持国家和省部级等各类项目5项,担任Iontronics青年编委,Materials专刊编辑。
课题组招收材料、化学和机械等专业研究生以及相关领域博士后,感兴趣的本科生、研究生和博士后可将个人简历发送至邮箱zhucongcong@buaa.edu.cn
主要研究方向:
1、功能化仿生纳米通道的制备及其可控物质传输
2、纳米通道基仿生多模态感知传感器
3、纳米流体及其在仿生能源和物质分离领域应用
近年代表作:
1. Y. Wu, C. Zhu*, L. Wen*, et al, Olfactory-inspired nanofluidic sensor: molecular recognition and transport in confined space, Iontronics, 2026, 2, 14.
2. C. Zhu, X. Li*, X. Liang*, L. Wen*, et al, Engineered nanofluidics for molecular recognition and physical perception, Angew. Chem. Int. Ed., 2025, 64 (36), e202506689.
3. Y. Wu, C. Zhu*, L. Wen*, et al, Olfactory-inspired separation-sensing nanochannel-based electronics for wireless sweat monitoring, ACS Nano, 2025, 19, 3, 3781-3790.
4. X. Li, C. Zhu*, L. Wen*, et al, Bioinspired solid-state nanochannel for molecules analysis, Nanoscale, 2025, 17, 1225-1237.
5. X. Li, C. Zhu*, L. Wen*, et al, Ultrasensitive 2,4,6-trinitrophenol nanofluidic sensor inspired by olfactory sensory neurons in sniffer dogs, Chem. Sci., 2024, 15, 19504.
6. X. Li, C. Zhu*, L. Wen*, et al. Neuron-inspired nanofluidic biosensors for highly sensitive and selective imidacloprid detection, ACS Sens., 2023, 8, 3428.
7. C. Zhu, L. Jiang, Z. Zhang*, L. Wen*, et al., Metallic two-dimensional MoS2 composites as high-performance osmotic energy conversion membranes, J. Am. Chem. Soc., 2021, 143, 1932.
8. C. Zhu, L. Jiang, L. Wen*, et al., Bioinspired hydrogel-based nanofluidic ionic diodes: nano-confined network tuning and ion transport regulation, Chem. Commun., 2020, 56, 8123.
Other Contact Information
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Educational Experience
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2017.9-2022.6
中国科学院大学 | 物理化学 | 博士研究生
导师:闻利平研究员 -
2013.9-2017.6
郑州大学 | Materials Science and Engineering | Undergraduate (Bachelor’s degree)
Work Experience
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2022.6-2025.8
中国科学院大连化学物理研究所
合作导师:梁鑫淼研究员
Social Affiliations
Research Focus
Research Group
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