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个人简介

2019年9月- 重庆大学研究员,博士生导师 2019年5月-2019年8月 美国橡树岭国家实验室开放课题访问学者 2018年7月-2019年8月 美国德州农工大学 博士后 2016年7月-2018年7月 美国佐治亚大学 博士后 2011年9月-2016年7月 吉林大学 博士 2007年9月-2011年7月 吉林大学 学士

研究领域

物联网智能实验室 集成微型传感系统 表面等离子体共振传感器 电磁理论模拟设计和深度学习 胶体刻蚀微纳结构制备技术 掠射角沉积微纳结构制备技术

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Bin Ai*, Yujing Sun, Yiping Zhao: Plasmonic Hydrogen Sensors, Small, 2022, 2107882. Nima Karimitari, Bin Ai*, Yiping Zhao*: A comparison study of the born-kuhn model and the finite-difference-time-domain calculations on stacked plasmonic nanorods, J. Phys. D: Appl. Phys. 2022, 55 325104. Bin Ai, Ziwei Fan, Zi Jing Wong*: Plasmonic–perovskite solar cells, light emitters, and sensors, Microsystems & Nanoengineering, volume 8, Article number: 5 (2022). Wei Zhang, Bin Ai, Panpan Gu, Yuduo Guan, Zengyao Wang, Zifan Xiao, Gang Zhang*: Plasmonic Chiral Metamaterials with Sub-10 nm Nanogaps, Acs Nano, 2021, 15, 11, 17657–17667. Layne Bradley1, Xiangxin Lin1, Yanjun Chen, Mona Asadinamin, Bin Ai*, Yiping Zhao: Janus Particles with Flower-like Patches Prepared by Shadow Sphere Lithography, Langmuir 2021, 37, 46, 13637–13644. Yuduo Guan, Bin Ai, Zengyao Wang, Chong Chen, Wei Zhang, Yu Wang, Gang Zhang*: In Situ Chemical Patterning Technique, Advanced Functional Materials, 2021, Peijin Ying, Bin Ai, Wei Hu, Yang Geng, Ling Li, Kuan Sun, Swee ChingTan, Wei Zhang, and Meng Li*: A bio-inspired nanocomposite membrane with improved light-trapping and salt-rejecting performance for solar-driven interfacial evaporation applications, Nano Energy, 2021, Weijie Huang, Xibo Li, Bin Ai*, and Yiping Zhao: Facile Fabrication of Composite Ag/Fe3O4 and Porous Fe3O4 Nanorods Based on Oblique Angle Codeposition, Journal of Physical Chemistry C, 2021, 125, 21, 11750–11755. Zengyao Wang, Bin Ai, Yuduo Guan, Yu Wang, and GangZhang*: Mass Fabrication of Hierarchical Nanostructures Based on Plasmonic Nanochemistry for Ultra-sensitive Optical Sensing, Sensors and Actuators: B. Chemical, 2020, Yuduo Guan, Zengyao Wang, Bin Ai, Chong Chen, Wei Zhang, Yu Wang, and Gang Zhang*: Chiral Plasmonic Metamaterials with Tunable Chirality, ACS Appl. Mater. Interfaces, 2020, Yixin Chen, Bin Ai, Zi Jing Wong*: Soft Optical Metamaterials, Nano Convergence, 2020, 7:18, DOI: 10.1186/s40580-020-00226-7. Panpan Gu, Wei Zhang, Zhiyuan Zhao, Bin Ai, Tianxing Zheng, Ryan C. Chiechi, Chunguang Li, Zhan Shi, Gang Zhang*: Engineering Colloidal Lithography and Nanoskiving to Fabricate Rows of Opposing Crescent Nanogaps, Advanced Optical Materials, 2020, DOI: 10.1002/adom.202000006. Panpan Gu, Tianxing Zheng, Wei Zhang, Bin Ai, Zhiyuan Zhao, Gang Zhang*: Sub-10 nm Au-Ag Heterogeneous Plasmonic Nanogaps Advanced Materials Interface, Advanced Materials Interface, 2020, DOI: 10.1002/admi.201902021. Bin Ai,* Hoang Mai Luong, Yiping Zhao: Chiral Nanohole Arrays. Nanoscale, 2020,12, 2479-2491. DOI: 10.1039/C9NR09722H. Wei Zhang, Panpan Gu, Zengyao Wang, Bin Ai, Ziwei Zhou, Zhiyuan Zhao, Chunguang Li, Zhan Shi, Gang Zhang*: Integrated “Hot Spots”: Tunable Sub‐10 nm Crescent Nanogap Arrays. Advanced Optical Materials 10/2019;, DOI:10.1002/adom.201901337 Zengyao Wang,1 Bin Ai,1 Yu Wang, Yuduo Guan, Helmuth Möhwald, Gang Zhang*: Hierarchical Control of Plasmonic Nanochemistry in Microreactor. ACS Applied Materials & Interfaces 09/2019; 11(38)., DOI:10.1021/acsami.9b10917 Hoang Mai Luong*, Minh Thien Pham, Bin Ai, Tho Duc Nguyen, Yiping Zhao: Magnetoplasmonic properties of Ag-Co composite nanohole arrays. Phys. Rev. B 06/2019; 99(22)., DOI:10.1103/PhysRevB.99.224413 Steven Larson, Daniel Carlson, Bin Ai*, Yiping Zhao: The Extraordinary Optical Transmission and Sensing Properties of Ag/Ti Composite Nanohole Arrays. Physical Chemistry Chemical Physics 01/2019; 21(7)., DOI:10.1039/C8CP07729K (2019 PCCP HOT Articles) Zengyao Wang, Bin Ai, Ziwei Zhou, Yuduo Guan, Helmuth Möhwald, Gang Zhang*: Free-Standing Plasmonic Chiral Metamaterials with 3D Resonance Cavities. ACS Nano 10/2018; 12(11)., DOI:10.1021/acsnano.8b04106 Bin Ai*, Yiping Zhao: Glancing angle deposition meets colloidal lithography: A new evolution in the design of nanostructures. Nanophotonics 10/2018; 8(1)., DOI:10.1515/nanoph-2018-0105

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