高小青
 
职称:岗位研究员  邮箱:xqgao@ucas.ac.cn

通信地址:浙江省温州市龙湾区金联路1号国科温州研究院1号楼14楼

个人简介:高小青,国科温州研究院岗位研究员。2018年1月于中国科学院大学获博士学位,培养单位是国家纳米科学中心(导师:唐智勇院士)。长期从事手性物质光学研究,并在手性纳米材料构建及圆二色光谱解析、类胆甾相光子晶体的圆二色荧光光谱分析、各种无机纳米材料的磁圆二色分析等方面取得系列科研进展。目前,作为主要贡献人和参与人共发表论文36篇,以第一/通讯作者在Nature Nanotechnology, Advanced Materials, Journal of the American Chemical Society, Angewandte Chemie International Edition, Matter, Nano Letters, ACS Nano等国际知名学术期刊上发表论文18篇,完成国家自然科学基金青年项目1项,承担国家自然科学基金面上项目1项。

代表性论文:

[1]Lu, D.; Li, M.; Gao, X.*; Yu, X.; Wei, L.; Zhu, S.*; Xu, Y.*, Cellulose Nanocrystal Films with NIR-II Circularly Polarized Light for Cancer Detection Applications. ACS Nano 2023, 17 (1), 461-471. 

[2]Yang, X.#; Lv, J.#; Zhang, J.; Shen, T.; Xing, T.; Qi, F.; Ma, S.; Gao, X.*; Zhang, W.*; Tang, Z.*, Tunable Circularly Polarized Luminescence from Inorganic Chiral Photonic Crystals Doped with Quantum Dots. Angewandte Chemie 2022, e202201674. 

[3]Zhang, Y.; Yu, S.; Han, B.; Zhou, Y.; Zhang, X.; Gao, X.*; Tang, Z.*, Circularly polarized luminescence in chiral materials. Matter 2022, 5 (3), 837-875.

[4]Xing, T.; Qian, Q.; Ye, H.; Wang, Z.; Jin, Y.; Zhang, N.; Wang, M.; Zhou, Y.; Gao, X.*; Wu, L.*, Gold nanoparticles with helical surface structure transformed from chiral molecules for SERS-active substrates preparation. Biosensors & Bioelectronics 2022, 212, 114430.

[5]Han, B.; Sun, C.; Zhou, Y.; Gao, X.*, Geometry-Modulated Magnetoplasmonic Circular Dichroism of Gold Nanobipyramids. The Journal of Physical Chemistry C 2022, 126 (7), 3600-3605.

[6]Guo, J.; Chen, Y.; Zhang, Y.; Xu, Y.; Zhou, Y.; Zhang, X.*; Gao, X.*, Shape-Dependent Linear Dichroism Spectra of Colloidal Semiconductor Nanocrystals. Langmuir 2021, 37 (24), 7611-7616.

[7]Zhuang, T-T#; Li, Y#; Gao, X.#; Wei, M.; Arquer, F.; Yu, S-H;* Tang, Z;* Sargent E. H,* Regioselective magnetization in semiconducting nanorods. Nature Nanotechnology 2020, 15 (3), 192-197.

[8]Gao, X.; Han, B.; Yang, X.; Tang, Z.*, Perspective of chiral colloidal semiconductor nanocrystals: opportunity & challenge. Journal of the American Chemical Society 2019, 141 (35), 13700-13707.

[9]Gao, X. #; Zhang, X. #; Yang, X.; Zhao, L.; Han, B.; Alanagh, H. R.; Tang, Z.*, Detecting electronic structure evolution of semiconductor nanocrystals by magnetic circular dichroism spectroscopy. Nanoscale 2019, 11 (41), 19380-19386.

[10]Zhang, Y.; Zhang, X.*; Gao, X.*, Detecting semiconductor nanoplatelets with distinctive crystal structures & thickness by magnetic circular dichroism. Journal of Physical Chemistry C 2019, 123 (48), 29331-29336.

[11]Gao, X.; Zhang, X.; Zhao, L.; Huang, P.; Han, B.; Lv, J.; Qiu, X.; Wei, S. H.; Tang, Z.*, Distinct excitonic circular dichroism between wurtzite & zincblende CdSe nanoplatelets. Nano letters 2018, 18 (11), 6665-6671.

[12]Han, B.#; Gao, X.#; Lv, J.; Tang, Z.*, Magnetic circular dichroism in nanomaterials: new opportunity in understanding & modulation of excitonic & plasmonic resonances. Advanced materials 2018, 0 (0), e1801491.

[13]Gao, X.; Zhang, X.; Deng, K.; Han, B.; Zhao, L.; Wu, M.; Shi, L.; Lv, J.; Tang, Z.*, Excitonic Circular dichroism of chiral quantum rods. Journal of the American Chemical Society 2017, 139 (25), 8734-8739.

[14]Gao, X.; Xiao, F.; Yang, C.; Wang, J.; Su, X.*, Hydrothermal fabrication of W18O49 nanowire networks with superior performance for water treatment. Journal of Materials Chemistry A 2013, 1 (19), 5831-5834.

[15]Yang, X.; Gao, X.; Zheng, Y.-X.*; Kuang, H.*; Chen, C.-F.*; Liu, M.*; Duan, P.*; Tang, Z.*, Recent Progress of Circularly Polarized Luminescence Materials from Chinese Perspectives. CCS Chemistry 2023, 0 (ja), 1-34.

[16]Li, C.; Zhao, J.; Gao, X.; Hao, C.; Hu, S.; Qu, A.; Sun, M.; Kuang, H.; Xu, C.; Xu, L.*, Chiral Iron Oxide Supraparticles Enable Enantiomer‐Dependent Tumor‐Targeted Magnetic Resonance Imaging. Advanced Materials 2023, n/a (n/a), 2308198.

[17]Lv, J.; Gao, X.; Han, B.; Zhu, Y.; Hou, K.; Tang, Z.*, Self-assembled inorganic chiral superstructures. Nature Reviews Chemistry 2022, 6 (2), 125-145.

[18]Cai, J.; Zhao, J.; Gao, X.; Ma, W.; Meng, D.; Zhang, H.; Hao, C.; Sun, M.; Kuang, H.; Xu, C.; Xu, L., Magnetic Field Tuning Ionic Current Generated by Chiromagnetic Nanofilms. ACS Nano 2022, 16 (7), 11066-11075.

[19]Zhang, D.; Zheng, H.; Ma, X.; Su, L.; Gao, X.; Tang, Z.*; Xu, Y.*, On‐Demand Circularly Polarized Room‐Temperature Phosphorescence in Chiral Nematic Nanoporous Silica Films. Advanced Optical Materials 2022, 10 (7), 2102015.

[20]Sui, X.; Gao, X.; Wu, X.; Li, C.; Yang, X.; Du, W.; Ding, Z.; Jin, S.; Wu, K.; Sum, T. C.; Gao, P.; Liu, J.; Wei, X.; Zhang, J.; Zhang, Q.; Tang, Z.*; Liu, X.*, Zone-Folded Longitudinal Acoustic Phonons Driving Self-Trapped State Emission in Colloidal CdSe Nanoplatelet Superlattices. Nano letters 2021, 21 (10), 4137-4144.

[21]Luo, Y.; Shan, H.; Gao, X.; Qi, P.; Li, Y.; Li, B.; Rong, X.; Shen, B.; Zhang, H.; Lin, F.; Tang, Z.; Fang, Z.*, Photoluminescence enhancement of MoS2/CdSe quantum rod heterostructures induced by energy transfer & exciton–exciton annihilation suppression. Nanoscale Horizons 2020, 5 (6), 971-977.

[22]Zhang, S.; Shi, W.; Siegler, T. D.; Gao, X.; Ge, F.; Korgel, B. A.; He, Y.; Li, S.; Wang, X.*, An All-Inorganic Colloidal Nanocrystal Flexible Polarizer. Angewandte Chemie 2019, 58 (26), 8730-8735.

[23]Lv, J.; Hou, K.; Ding, D.; Wang, D.; Han, B.; Gao, X.; Zhao, M.; Shi, L.; Guo, J.; Zheng, Y.; Zhang, X.; Lu, C.; Huang, L.; Huang, W.; Tang, Z.*, Gold Nanowire Chiral Ultrathin Films with Ultrastrong & Broadband Optical Activity. Angewandte Chemie 2017, 129 (18), 5137-5142.

[24]Han, B.; Gao, X.; Shi, L.; Zheng, Y.; Hou, K.; Lv, J.; Guo, J.; Zhang, W.*; Tang, Z.*, Geometry-Modulated Magnetoplasmonic Optical Activity of Au Nanorod-Based Nanostructures. Nano Letters 2017, 17 (10), 6083-6089.

[25]Han, B.; Shi, L.; Gao, X.; Guo, J.; Hou, K.; Zheng, Y.; Tang, Z.*, Ultra-stable silica-coated chiral Au-nanorod assemblies: Core–shell nanostructures with enhanced chiroptical properties. Nano Research. 2016, 9 (2), 451-457.