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杨天
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[1]杨天. Size Effect of Zwitterionic Peptide-Based Nanoscale Micelles on Cancer Therapy ACS APPLIED NANO MATERIALS, 2022,
[2]杨天. Recent Advances in Mechanical Reinforcement of Zwitterionic Hydrogels GELS, 2022,
[3] A Quasi-3D Fano Resonance Cavity on Optical Fiber End-Facet for High Signal-to-Noise Ratio Dip-and-Read Surface Plasmon Sensing Light: Advanced Manufacturing, 2022,
[4]杨天. 3D Interlayer Slidable Multilayer Nano-Graphene Oxide Acrylate Crosslinked Tough Hydrogel LANGMUIR, 2022,
[5] Ultrasound detection at fiber end-facets with surface plasmon resonance cavities Optics Letters, 2018,
[6] [INVITED] Surface plasmon cavities on optical fiber end-facets for biomolecule and ultrasound detection Optics and Laser Technology, 2018,
[7] Second-order distributed-feedback surface plasmon resonator for single-mode fiber end-facet biosensing Applied Physics Letters, 2017,
[8] Plasmonic crystal cavity on optical fiber end facet for high performance label-free biosensing Conference on Lasers and Electro-Optics, 2016,
[9] Scanning probe microscopy by localized surface plasmon resonance at fiber taper tips Review of Scientific Instruments, 2021,
[10] Linear scattering off a dynamically controlled nanosphere-mirror plasmonic antenna on a fiber taper Optics Express, 2020,
[11] How to Convincingly Measure Low Concentration Samples with Optical Label-Free Biosensors Sensors and Actuators B: Chemical, 2020,
[12] 光纤端等离激元探测技术 激光与光电子学进展, 2019,
[13]杨天. Localized Surface Plasmon Resonance Scanning Microscopy with Optical Antenna on Fiber Taper Conference Proceedings of the 19th IEEE International Conference on Nanotechnology, 2019,
[14]杨天. Surface-Emitting Surface Plasmon Polariton Laser in a Second-Order Distributed Feedback Defect Cavity ACS Photonics, 2019,
[15] [INVITED] Surface plasmon cavities on optical fiber end-facets for biomolecule and ultrasound detection OPTICS AND LASER TECHNOLOGY, 2018,
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