电子邮件:[email protected]
(1)2012-09至2017-06, 中国科学院上海应用物理研究所,博士
(2)2008-09至2012-06, 黑龙江大学, 物理科学与技术学院,本科
(1) 2020-12至今, 上海交通大学, 世博娱乐 化学系, 助理研究员
(2) 2017-09 至2020-09, 南京大学, 世博娱乐 生命分析化学国家重点实验室, 博士后
(1)等离激元纳米光子学
(2)先进显微镜的设计与应用
(1)国家自然科学基金青年项目,22104089,基于表面等离激元激光(spaser)纳米颗粒的细胞内超窄带宽STED双色超分辨成像,2022-2025,主持
(2)上海市科委 “科技创新行动计划”扬帆计划,21YF1420700,非线性扫描关闭超分辨显微术,2021-2024,主持
(3)单细胞时空分辨分子动态分析系统,国家重大科研仪器设备研制专项, 2014-2019,参与
(4)基于饱和荧光共振能量转移原理的超分辨细胞显微成像系统的研制,中科院仪器研制项目,2008-2012,参与
1. Gao Z.; Song P.; Wang X.-H.; Gao H.; Yang F.; Kang B.*; Chen H.-Y.; Xu J.-J. *; Super-resolution plasmonic scattering imaging via single-wavelength modulated STED. Chemical Communications 2021
2. Wang J.-H.†; Gao Z.†; Song P.; Wang X.-H.; Gao H.; Yang F.; Kang B.*; Xu J.-J.; Chen H.-Y. How Gain Layer Design Determines Performance of Nanoparticle-based Spaser. The Journal of Physical Chemistry C 2020, 124, 30, 16553–16560 (Co-first author)
3. Gao, Z.; Wang, J.-H.; Song, P.; Kang, B.; Xu, J.-J.; Chen, H.-Y. Spaser Nanoparticles for Ultranarrow Bandwidth STED Super-Resolution Imaging. Advanced Materials 2020, 32, 1907233.
4. Gao, Z.; Yin, L.; Fang, W.; Kong, Q.; Fan, C.; Kang, B.; Xu, J.-J.; Chen, H.-Y. Imaging Chladni Figure of Plasmonic Charge Density Wave in Real Space. ACS Photonics 2019, 6, 2685-2693.(Cover Paper)
5. Gao, Z.; Deng, S.; Li, J.; Wang, K.; Li, J.; Wang, L.; Fan, C. Sub-diffraction-limit cell imaging using a super-resolution microscope with simplified pulse synchronization. Science China Chemistry 2017, 60, 1305-1309.
6. Kong, Q.-Y.; Yang, F.; Song, J.; Ruan, Y.-F.; Li, S.-S.; Gao, Z.-S.; Kang, B.; Chen, H.-Y.; Xu, J.-J. Revealing transient events of molecular recognition via super-localization imaging of single-particle motion. Scientific Reports 2019, 9, 4870.
7. Peng, T.; Miao, J.; Gao, Z.; Zhang, L.; Gao, Y.; Fan, C.; Li, D. Reactivating Catalytic Surface: Insights into the Role of Hot Holes in Plasmonic Catalysis. Small 2018, 14, 1703510.
8. DENG, S.; CHEN, J.; GAO, Z.; FAN, C.; YAN, Q.; WANG, Y. Effects of donor and acceptor's fluorescence lifetimes on the method of applying Förster resonance energy transfer in STED microscopy. Journal of Microscopy 2018, 269, 59-65.
9. Wang, S.; Deng, S.; Cai, X.; Hou, S.; Li, J.; Gao, Z.; Li, J.; Wang, L.; Fan, C. Superresolution imaging of telomeres with continuous wave stimulated emission depletion (STED) microscope. Science China Chemistry 2016, 59, 1519-1524.