微电子科学与工程系
微电子科学与工程系
郭洪玲(副教授)
2023-03-08 09:45      审核人:

郭洪玲

副教授

办公地点:29-304

研究方向:(1)光电半导体材料与器件研究;(2)新型信息存储与类脑神经形态器件研究

工作邮箱:hlguo@email.tjut.edu.cn

所在团队名称:微纳电子器件与系统

团队负责人:张楷亮

硕士研究生:电子科学与技术、集成电路工程

个人简介

        郭洪玲,工学博士,毕业于南开大学,现任微电子科学与工程专业教师。长期深耕于光电半导体技术领域,研究方向为高效光伏器件研究、面向人工智能的神经形态电子器件及仿生功能研究。
        主持和参与包括国家自然科学基金、国家重点研发计划“国家重大研发计划重点专项”在内的多项纵向科研课题。同时承担多项高校及企业委托的横向课题。在Energy Environ. Sci.、Adv. Funct. Mater.、Mater. Today Phys.等国际权威期刊发表SCI论文20余篇。已申请与授权国际/国内发明专利4项。致力于半导体集成电路产业发展,积极推动新型半导体人才培养。

科研项目

1.国家自然科学基金青年项目,基于水热离子交换法实现CZTSSe晶界/表面缺陷调控和改性的研究,主持,30万。
2.国家重点研发计划“国家重大研发计划重点专项”光谱、铁电-半导体耦合增强激子分离及电荷高效传输太阳电池,参与

论文

[1]Yuanhui Yang, Yuanjie Yang, Shifu Xiong, Yuchan Wang, Kai Hu, Fang Wang, Xiaolei Li, Liangliang Feng, Hongling Guo,* Lei Zheng,* Kailiang Zhang*, Bio-Inspired Sb2S3 Memristors Supporting Dual-Mode Operation via Self-Regulating Transport Pathways for All-in-one Neuromorphic Perception and Computation, Advanced Functional Materials, 2026, 36(5): 10212. (IF: 19.0)
[2] Liangliang Feng, Shixing Teng, Yuhang Wang, Shifu Xiong, Yuqian Huang, Yuanhui Yang, Yuanfeng Sun, Gang Wang,* Hongling Guo,* Yi Zhang,* Gradient bandgap engineered CdS electron transport layers enable high-efficiency antimony sulfide solar cells. Chemical Engineering Journal. 2026, 532: 174614. (IF: 13.2)
[3]Liangliang Feng, Chunchen Zhang, Shixing Teng, Yuanhui Yang, Yuhang Wang, Yuanfeng Sun, Xiaolei Li, Shifu Xiong, Yuxiang Zhang, Yuqian Huang, Gang Wang, Hongling Guo,* Managing Crystallization and Shallow Defect via Infrared Rapid Thermal Annealing Enables High-Efficiency Sb2S3 Solar Cells. Small. 2026, 22(10): e11421. (IF: 12.1)
[4]Rutao Meng, Yue Liu, Xuejun Xu, Li Wu, Jianpeng Li, Liangliang Feng, Han Xu, Shuai Shao, Hongling Guo,* and Yi Zhang.* Grain Boundaries Passivation to Attain High Efficient Cu2ZnSn(S,Se)4 Solar Cells, Advanced Functional Materials, 2025, 35(41): 2506959. (IF: 19.0)
[5]Xiaolei Li, Yuanjie Yang, Liangliang Feng, Yuanhui Yang, Kai Hu, Hongling Guo,* Gang Wang,* and Yi Zhang,* Tailoring Presynthesized Amorphous Sb2S3 Particles Enables High-Efficiency Pure Antimony Sulfide Solar Cells. ACS Applied Materials & Interfaces 2025, 17(11): 16738-16746. (IF: 8.2)
[6]Yuanjie Yang, Yuanhui Yang, Lei Zheng, Yuchan Wang, Fang Wang, Xiaolei Li, Liangliang Feng, Hongling Guo,* Shifu Xiong,* Kailiang Zhang,* Exploring the Conductive Dynamics of Sb2(S,Se)3-Based Memristors for Non-Volatile Memory and Neuromorphic Applications. The Journal of Physical Chemistry Letters. 2024: 131-139. (IF: 4.8)
[7]Rutao Meng, Xuejun Xu, Yue Huang, Li Wu, Jianpeng Li, Han Xu, Jiabin Dong, Yue Liu, Xuewen Fu,*, Hongling Guo*, Gang Wang*, Yi Zhang*, Reversing band bending at grain boundaries enables high-efficiency Cu2ZnSn(S,Se)4 solar cells. Materials Today Physics. 2024, 48: 101580. (IF: 9.7)
[8]Hongling Guo, Rutao Meng, Gang Wang*, Shenghao Wang, Li Wu, Jianjun Li, Zuoyun Wang, Jiabin Dong, Xiaojing Hao*, Yi Zhang* , Band-gap-graded Cu2ZnSn(S,Se)4 drives highly efficient solar cells, Energy & Environmental Science, 2022, 15(2): 693-704. (IF: 31.0)
[9]Deng Wang, Hongling Guo, Xin Wu, Xiang Deng, Fengzhu Li, Zhen Li, Francis Lin, Chu-Chen Chueh, Yi Zhang*, Chang Liu*, Alex K.-Y. Jen* , Interfacial Engineering of Wide‐Bandgap Perovskites for Efficient Perovskite/CZTSSe Tandem Solar Cells, Advanced Functional Materials, 2021, 32(2):2107359. (共同一作,IF=19.0)