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靳继彪 教授、硕士生导师    

个人简介:    

          靳继彪,济南大学化学化工学院教授,山东省泰山学者青年专家,硕士生导师。2020年获南京邮电大学光电信息与器件专业博

士学位,师从黄维院士和陈润锋教授;2020.09-2021.11年在香港城市大学从事博士后研究(合作导师:季昀教授),2021.12-

2023.11在香港理工大学从事博士后研究(合作导师:黄维扬教授)。2024年4月进入济南大学工作。主要从事于含硼、氟等杂原子

有机光电材料的设计、制备及其器件性能的研究。荣获中国电子学会优秀博士学位论文(2020年);迄今为止,已在本领域发表学

术论文30余篇,其中以第一/通讯作者身份在Nat. Commun.、Angew. Chem. Int. Ed.(2篇)、Adv. Funct. Mater.等国际高水平

期刊发表论文10余篇,入选ESI高被引1篇;授权国家发明专利2项;担任Opt. Express、Curr. Org. Chem.等多个期刊审稿人。

主持国家自然科学科学基金1项。 


联系方式:chm_jinjibiao@ujn.edu.cn 

教育经历:

 2011.9-2015.6    济南大学      化学     大学本科毕业      学士学位

 2016.9-2020.7   南京邮电大学  光学工程  博士研究生毕业  博士学位

工作经历:

        2020.9-2021.11    香港城市大学    材料科学与工程学系       博士后

    2020.12-2023.11      香港理工大学    应用生物及化学科技学系   博士后

研究方向

   有机电致发光材料及器件;有机长余辉材料及应用;二维石墨炔材料及光限幅应用


代表性论文:


[1]    Jibiao Jin, He Jiang, Qingqing Yang, Lele Tang, Ye Tao, Yuanyuan Li, Runfeng Chen,* Chao Zheng, Quli Fan, Kenneth Yin Zhang, 

Qiang Zhao, Wei Huang*. Thermally Activated Triplet Exciton Release for Highly Efficient Tri-Mode Organic Afterglow. Nat. Commun. 

2020, 11, 842. (高被引论文)


[2]    Jibiao Jin, Peiran Xue, Longyan Zhang, He Jiang, Wuji Wang, Qingqing Yang, Ye Tao, Chao Zheng,* Runfeng Chen,* Wei Huang. 

Modulating Tri-Mode Emission for Single-Component White Organic Afterglow. Angew. Chem. Int. Ed. 2021, 60, 24984-24990.


[3]    Jibiao Jin, Chunbo Duan, He Jiang, Peng Tao,* Hui Xu,* Wai-Yeung Wong*. Integrating Asymmetric O-B-N Unit in Multi-Resonance 

Thermally Activated Delayed Fluorescence Emitters towards High-Performance Deep-Blue Organic Light-Emitting Diodes. Angew. Chem. 

Int. Ed., 2023, 135, e202218947.


[4]    He Jiang, Jibiao Jin,* Wai-Yeung Wong*. High-Performance Multi-Resonance Thermally Activated Delayed Fluorescence Emitters

 for Narrowband Organic Light-Emitting Diodes. Adv. Funct. Mater., 2023, 33, 2306880.


[5]    Jibiao Jin,* Mei Chen, He Jiang, Baohua Zhang,* Zhiyuan Xie, Wai-Yeung Wong*. Construction of Hybrid Long- and ShortRange 

Charge Transfer Excitations for High-Performance Deep-Blue Electroluminescence with CIEy < 0.04 and EQE > 35%. ACS Materials Lett. 

2024, 6, 3246-3253.


[6]    He Jiang,* Dan Ai, Jibiao Jin,* Zheng Xie, Wai-Yeung Wong*. Recent progress in circularly polarized multi-resonance thermally 

activated delayed fluorescence materials for organic light-emitting diodes. Sci. China. Chem. 2024, 67, Emerging Investigator Issue, 


doi.org/10.1007/s11426-024-2355-0.


[7]    Jibiao Jin, Ye Tao, He Jiang, Runfeng Chen,* Guohua Xie,* Qin Xue, Chen Tao, Lu Jin, Chao Zheng, Wei Huang*. Star-Shaped 

Boron-Containing Asymmetric Host Materials for Solution-Processable Phosphorescent Organic Light-Emitting Diodes. Adv. Sci., 

2018, 5, 1800292.


[8]    Jibiao Jin, Mei Chen, He Jiang, Baohua Zhang,* Zhiyuan Xie, Wai-Yeung Wong*. Fusion of Selenium-Embedded Multi-Resonance

 Units Toward Narrowband Emission and Fast Triplet-Singlet Exciton Conversion. Adv. Opt. Mater. 2024, 12, 2400794.


[9]    Jibiao Jin, Wuji Wang, Peiran Xue, Qingqing Yang, He Jiang, Ye Tao, Chao Zheng,* Guohua Xie, Wei Huang, Runfeng Chen*.

 Intermolecular Locking Design of Red Thermally Activated Delayed Fluorescence Molecules for High-Performance Solution-Processed 

Organic Light-Emitting Diodes. J. Mater. Chem. C, 2021, 9, 2291-2297.


[10] Jibiao Jin, Zelin Zhu, Jie Yan, Xiuwen Zhou,* Chen Cao, Pi-Tai Chou,* Ye-Xin Zhang,* Zhong Zheng, Chun-Sing Lee,* Yun Chi*. 

Iridium (III) Phosphors-Bearing Functional 9-Phenyl-7, 9-dihydro-8H-purin-8-ylidene Chelates and Blue Hyperphosphorescent

 OLED Devices. 

Adv. Photonics Res., 2022, 3, 2100381.


[11] Jibiao Jin, Shumeng Wang, He Jiang, Lixiang Wang,* Wai-Yeung Wong*. Peripheral Selenium Modification of Multi-Resonance 

Thermally Activated Delayed Fluorescence Molecules for High-Performance Blue Organic Light-Emitting Diodes.

 Adv. Opt. Mater. 2024, 12, 2302354.


[12]Huanhuan Li#, Jibiao Jin#, Yuan Xiang, Ying Zhang, Ye Tao*, Mingguang Li, Qin Xue, Guohua Xie*, Wei Huang, Runfeng Chen*.     

Resonance Hosts for High Efficiency Solution-Processed Blue and White Electrophosphorescent Devices. 

Sci. China: Chem. 2020, 63, 1645-1651. (共同一作)