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凌海峰

凌海峰,工学博士,江苏徐州人 

    教授,博士生导师,博士后合作导师,南京邮电大学华礼拔尖人才

    材料科学与工程学院  院长助理

    办公地点:仙林校区材料学科楼313

    Emailiamhfling@njupt.edu.cn  


教育工作经历 

2019.10-      南京邮电大学,材料科学与工程学院,高层次人才引进
2017.10-2019.10 
香港理工大学,应用物理系,博士后研究员,合作导师:Prof. YAN Feng
2011.09-2017.07 
南京邮电大学,有机电子学,博士,导师:黄维院士
2009.07-2011.07 
南京邮电大学,教育管理工作
2005.09-2009.06 
南京邮电大学,应用物理学,学士

研究方向

1)有机薄膜晶体管(OFETsOECTsEDLTs

2)有机阻变存储器(RRAM)、有机忆阻器(Memristor

3)神经形态计算新原理器件(Neuromorphic electronics 

主持的科研项目

1. 国家自然科学基金项目,基于光调控的有机场效应晶体管神经形态存储器(619051212020.01-2022.12,主持。

2. 江苏省自然科学基金青年基金,基于多比特有机场效应晶体管存储器的人工突触(BK20190734),2019.07-2022.06,主持;

3. 南京邮电大学高层次人才科研启动基金(NY219157),有机薄膜晶体管存储器,2019.10-2022.10,主持。 

主要学术成绩
   
主要从事有机半导体电存储器的研究工作,围绕有机电存储器中电子、光子和离子耦合的动力学机制、器件与材料特性的联动调控机制开展交叉研究,研制高性能信息存储技术,脑结构和功能启发的新型电子器件,探索在可穿戴电子和柔性电子方面的新应用。近五年来,在国际知名学术刊物Advanced   MaterialsAdvanced Functional   MaterialsApplied   Physics Reviews等期刊上发表学术论文50余篇,已申请或授权发明专利9项,获得中国电子学会优秀博士学位论文。入选RSC-JMCC2021年度新锐科学家。目前担任Advanced   MaterialsAdvanced   Functional MaterialsMaterials   HorizonsAdvanced   Electronic MaterialsACS Applied   Electronic MaterialsRSC Advances等国际学术期刊审稿人、仲裁。

代表性著作

1. Haifeng Ling, Dimitrios A. Koutsouras, Setareh Kazemzadeh, Yoeri van de Burgt, Feng Yan,* and   Paschalis Gkoupidenis.*   Electrolyte-gated transistors for synaptic electronics, neuromorphic   computing and adaptable biointerfacing. Applied Physics Reviews, 2020, 7, 011307. (Editor's Pick)

2. Yang Yu, # Qihao Ma, # Haifeng Ling,*  Wen Li, Ruolin Ju, Linyi Bian,   Naien Shi, Yan Qian, Mingdong Yi,  Linghai Xie,* Wei Huang.*   Small-Molecule-Based Organic Field-Effect  Transistor for Nonvolatile Memory   and Artificial Synapse. Advanced Functional Materials, 2019, 29, 1904602. (Hightlight by Cailiaoniu: http://www.cailiaoniu.com/186909.html)

3. Haifeng Ling, Naixiang Wang, Anneng Yang, Yanghui Liu, Jiajun Song, Feng   Yan.* Dynamically  Reconfigurable Short-Term Synapse with   Millivolt Stimulus Resolution  Based on Organic Electrochemical Transistors. Advanced Materials Technologies,   2019, 4, 1900471. (Hightlight by MaterialsViewsChina: https://www.materialsviewschina.com/2019/09/39664/)

4. Haifeng Ling, Dequn Wu, Tao Wang, Xudong Chen, Mingdong Yi,* Wei Shi,* Linghai Xie, Wei Huang.* Stability   Improvement in Flexible Low-voltage Organic Field-Effect Transistors with   Complementary Polymeric Dielectrics. Organic Electronics, 2019, 65,259-265.

5. Ke Wang,#Haifeng Ling,# Yan  Bao, Mengting Yang, Yi Yang, M ubashir Hussain, Huayang Wang, Lianbin    Zhang, Linghai. Xie,* Mingdong Yi,* Wei Huang, Xiaolin Xie, Jintao  Zhu.* A   Centimeter-Scale Inorganic Nanoparticles Superlattice  Monolayer with   Non-close-packing and Its High Performance in Memory  Devices. Advanced  Materials,   2018, 30, 1800327. (# equal   contributions)

6. Haifeng Ling, Shenghua Liu, Zijian Zheng, Feng   Yan.* Organic Flexible Electronics. Small Methods, 2018, 2, 1800070. (Hightlight by MaterialsViewsChina: https://www.materialsviewschina.com/2018/07/29185/)

7. Haifeng Ling,  Mingdong Yi,* Masaru Nagai, Linghai Xie,* Laiyuan   Wang, Bo Hu, Wei  Huang.* Controllable Organic Resistive Switching achieved by   One-step  Integration of Cone-shaped Contact. Advanced Materials,   2017, 29, 1701333. (CoverHightlight by Cailiaoniu: http://www.cailiaoniu.com/105749.html and X-MOL: https://www.x-mol.com/paper/308697)

8. Haifeng Ling,  Kangming Tan, Qiyun Fang,   Xiuxia Xu, Hao Chen, Wenwen Li, Yefan Liu,  Laiyuan Wang, Mingdong Yi, Ru   Huang, Yan Qian,* Linghai Xie,* Wei  Huang.* Light-Tunable Nonvolatile Memory   Characteristics in  Photochromic RRAM. Advanced Electronic Materials,   2017, 3, 1600416.

9. Haifeng Ling,  Wen Li, Huanqun Li, Mingdong Yi,* Linghai Xie,* Laiyuan   Wang,  Yangxing Ma, Yan Bao, Fengning Guo, Wei Huang.* Effect of Thickness of    Polymer Electret on Charge Trapping Properties of Pentacene-based  Nonvolatile   Field-Effect Transistor memory. Organic Electronics, 2017, 43, 222-228.

10. Haifeng Ling,  Jinyi Lin, Mingdong Yi,* Bin   Liu, Wen Li, Zongqiong Lin, Linghai  Xie,* Yan Bao, Fengning Guo, Wei Huang.*   Synergistic Effects of  Self-Doped Nanostructures as Charge Trapping Elements   in Organic Field  Effect Transistor Memory. ACS Applied Materials & Interfaces, 2016, 8, 18969-18977.


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