吕远超

发布时间:2020-02-27 浏览次数:7489

姓名:吕远超

性别:

职称:副教授

E-maillvyc@fjnu.edu.cn

通信地址:福州市闽侯县福建师范大学旗山校区理工楼15号楼#706

个人简介:

福建师范大学副教授、硕士生导师。2018年人才引进加入师大化材学院,获评福建省高层次人才、“宝琛计划”青年英才。主要从事新型纯相多孔晶态框架材料的设计开发及功能开发。近年来主持并参与了国家自然科学基金、福建省自然科学基金。研究成果Adv. Mater., J. Am. Chem. Soc.Nano LettersAngew. Chem., Int. Ed.Sci. China Mater.等国际重要学术期刊发表论文20余篇。个人主页:https://www.researchgate.net/profile/Lv_Yuanchao2/research

教育/工作经历:

1. 20188~至今,加入福建师范大学化学与材料学院,副教授

2. 20139~20186月,中国科学院化学研究所,物理化学专业,理学博士学位,导师:姚建年院士、赵永生教授

3. 20099~20136月,吉林大学,高分子材料与工程专业,理学学士学位

科研项目:

1)国家自然科学青年基金  2022-2024,主持;

2)福建省自然科学青创项目  2020-2023,主持

3)“宝琛计划”青年英才项目  2018年起,主持

学生指导:

指导研究生获得优秀毕业研究生荣誉称号,指导本科生获得大学生创新创业训练计划项目校级级立项。


代表性论文:

  1. Xiong, Z.; Li, Y.; Yuan, Z.; Liang, J.; Wang, S.; Yang, X.; Xiang, S.; Lv, Y.*; Chen, B.*; Zhang, Z.*, Switchable Anisotropic/Isotropic Photon Transport in a Double-Dipole Metal-Organic Framework via Radical-Controlled Energy Transfer, Adv. Mater.2024, 2314005.

  2. Lv, Y.; Liang, J.; Xiong, Z.; Yang, X.; Li, Y.; Zhang, H.; Xiang, S.; Chen, B.*; Zhang, Z.*, Smart-Responsive HOF Heterostructures with Multiple Spatial-Resolved Emission Modes toward Photonic Security Platform, Adv. Mater.2024, 36, 2309130.

  3. Lv, Y.*; Yang, X.; Xiong, Z.; Li, Y.; Liang, J.; Xiang, S.; Zhang, Z.*, Proton-induced switching of excitation-wavelength-dependent emission based on mixed-ligand metal–organic frameworks, Inorg. Chem. Front.2024, 11, 817-825.

  4. Xiong, Z.; Li, Y.; Liang, J.; Xiang, S.; Lv, Y.*; Zhang, Z.*, Coordination-Guided Conformational Locking of 1D Metal-Organic Frameworks for a Tunable Stimuli-Responsive Luminescence Region, ACS Appl. Mater. Interfaces2022, 14, 38098-38104.

  5. Lv, Y.*; Xiong, Z.; Li, Y.; Li, D.; Liang, J.; Yang, Y.; Xiang, F.; Xiang, S.; Zhao, Y. S.*; Zhang, Z.*, Framework-Shrinkage-Induced Wavelength-Switchable Lasing from a Single Hydrogen-Bonded Organic Framework Microcrystal, J. Phys. Chem. Lett.2022, 13, 130-135.

  6. Lv, Y.*; Liang, J.; Li, D.; Xiong, Z.; Cai, K.; Xiang, S.*; Zhang, Z.*, Hydration-Facilitated Coordination Tuning of Metal-Organic Frameworks toward Water-Responsive Fluorescence and Proton Conduction, Inorg. Chem.2022, 61, 18789-18794.

  7. Tang, J.; Zhang, J.; Lv, Y.; Wang, H.; Xu, F. F.; Zhang, C.; Sun, L.; Yao, J.; Zhao, Y. S.*, Room temperature exciton-polariton Bose-Einstein condensation in organic single-crystal microribbon cavities, Nat. Commun.2021, 12, 3265.

  8. Lv, Y.*; Li, D.; Ren, A.; Xiong, Z.; Yao, Y.; Cai, K.; Xiang, S.; Zhang, Z.*; Zhao, Y. S.*, Hydrogen-Bonded Organic Framework Microlasers with Conformation-Induced Color-Tunable Output, ACS Appl. Mater. Interfaces2021, 13, 28662-28667.

  9. Lv, Y.; Xiong, Z.; Dong, H.; Wei, C.; Yang, Y.; Ren, A.; Yao, Z.; Li, Y.; Xiang, S.; Zhang, Z.*; Zhao, Y. S.*, Pure Metal–Organic Framework Microlasers with Controlled Cavity Shapes, Nano Lett.2020, 20, 2020-2025.

  10. Lv, Y.*; Xiong, Z.; Yao, Z.; Yang, Y.; Xiang, S.; Zhang, Z.*; Zhao, Y. S.*, Steric Hindrance-Controlled Laser Switch Based on Pure Metal–Organic Framework Microcrystals, J. Am. Chem. Soc.2019, 141, 19959-19963.

  11. Yao, Y.; Gao, Z.; Lv, Y.; Lin, X.; Liu, Y.; Du, Y.; Hu, F.*; Zhao, Y. S.*, Heteroepitaxial Growth of Multiblock Ln-MOF Microrods for Photonic Barcodes, Angew. Chem., Int. Ed.2019, 58, 13803-13807.

  12. Lv, Y.; Xu, F. F.; Wang, K.; Li, Y. J.; Zhao, Y. S.*, Loss Compensation of Surface Plasmon Polaritons in Organic/Metal Nanowire Heterostructures toward Photonic Logic Processing, Sci. China Mater.2019, 63, 1464-1471.

  13. Lv, Y.; Xiong, X.; Liu, Y.; Yao, J.; Li, Y. J.; Zhao, Y. S.*, Controlled Outcoupling of Whispering-Gallery-Mode Lasers Based on Self-Assembled Organic Single-Crystalline Microrings, Nano Lett.2019, 19, 1098-1103.

  14. Lv, Y.; Li, Y. J.; Li, J.; Yan, Y.; Yao, J.; Zhao, Y. S.*, All-Color Subwavelength Output of Organic Flexible Microlasers, J. Am. Chem. Soc.2017, 139, 11329-11332.

  15. Li, Y. J.; Lv, Y.; Zou, C.-L.; Zhang, W.; Yao, J.; Zhao, Y. S.*, Output Coupling of Perovskite Lasers from Embedded Nanoscale Plasmonic Waveguides, J. Am. Chem. Soc.2016, 138, 2122-2125.


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