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赵乐

发布者:电子电气与控制学部发布时间:2025-07-07浏览次数:698

简介            


赵乐

博士、讲师、硕士生导师


2020年加入齐鲁工业大学(山东省科学院)电子电气与控制学部电子信息工程系。2017年至2020年间,任职于山东大学口腔医学院科研岗;2015年至2017年,在山东大学控制科学与工程学院下属生物医学研究所从事博士后研究工作。2015年于英国巴斯大学物理系获博士学位,导师为Alain Nogaret教授(英国Ceryx医疗公司联合创始人);2010年于山东大学物理与微电子学院获得硕士学位,导师为颜世申教授(国家杰出青年)。


电子邮箱:dianxinzl@qlu.edu.cn

手机(微信同号):19653168801

研究领域         

基于纳米功能材料的神经形态器件与类脑计算

主讲课程                                                                                                            

《高频电子线路》

论文、著作(*表示通讯作者)                                                                                                            

[1] Fang Nie; Hong Fang; Jie Wang; Le Zhao*; Chen Jia; Shuanger Ma; Feiyang Wu; Wenbo Zhao;Shuting Yang; Shizhan Wei; Shuang Li; Chen Ge; Alain Nogaret*; Shishen Yan*; Limei Zheng*; An Adaptive Solid-State Synapse with Bi-Directional Relaxation for Multimodal Recognition and Spatio-Temporal Learning, Advanced Materials, 2025, 37(17): 2412006SCI一区Top,影响因子26.8

[2] Hong Fang; Shuanger Ma; Jie Wang; Le Zhao*; Fang Nie; Xiaoqiao Ma; Weiming Lu; Shishen Yan*; Limei Zheng*; Multimodal In-Sensor Computing Implemented by Easily-Fabricated Oxide-Heterojunction Optoelectronic Synapses, Advanced Functional Materials, 2024, 34(49):2409045SCI一区Top,影响因子19,SCI高被引)

[3] Shuting Yang; Xingyu Li; Tongliang Yu; Jie Wang; Hong Fang; Fang Nie; Bin He; Le Zhao*; Weiming Lv*; Shishen Yan; Alain Nogaret; Gang Liu; Limei Zheng*; High-performance neuromorphic computing based on ferroelectric synapses with excellent conductance linearity and symmetry, Advanced Functional Materials, 2022, 32(35): 2202366SCI一区Top, 影响因子19,SCI高被引)

[4] Le Zhao; Hong Fang; Jie Wang; Fang Nie; Rongqi Li; Yuling Wang*; Limei Zheng*; Ferroelectric artificial synapses for high-performance neuromorphic computing: Status, prospects, and challenges, Applied Physics Letters, 2024, 124(3): 030501SCI二区top,影响因子3.6SCI高被引,被选为杂志的Feature Article

[5] Zhenfa Wu; Peng Shi; Ruofei Xing; Tongliang Yu; Le Zhao*; Lin Wei; Dong Wang; Shishen Yan; Yufeng Tian; Lihui Bai; Yanxue Chen*; Flexible Mott synaptic transistor on polyimide substrate for physical neural networks, Advanced Electronic Materials, 2022, 8(9): 2200078SCI二区top,影响因子5.3

[6] Le Zhao, Guohao Li , Xiao Zhai, Weijie Kuai*, Yuzhi Zhai, Gang Tian, Zhigang Gai, Minglei Zhao*, Juan Du, Hongjun Zhang, Limei Zheng*, Journal of Materiomics2024, 10(2);471SCI二区,影响因子9.6

[7] Fang Nie, Jie Wang, Hong Fang, Shuanger Ma, Feiyang Wu, Wenbo Zhao, Shizhan Wei, Yuling Wang, Le Zhao*, Shishen Yan, Chen Ge*, and Limei Zheng*,Ultrathin SrTiO3-based oxide memristor with both drift and diffusive dynamics as versatile synaptic emulators for neuromorphic computingMaterials Future, 2023, 2(3): 035302(中科院分区一区,影响因子10.8,被选为杂志封面)

[8] Zhilong Jia, Xiaojing Zhao, Xiaoshuang Liu, Le Zhao, Qian Jia, Jinlong Shi, Xiao Xu, Lijun Hao,Zhenguo Xu,, Qin Zhong,, Kang Yu,, Saijia Cui, Huining Chen,Jianying Guo, Xiang Li, Yang Han, Xinyu Song,Chenghui Zhao, Xiaochen Bo,Yaping Tian,Weidong Wang, Guotong Xie, Qiang Feng*, Kunlun He*, Impacts of the Plateau Environment on the Gut Microbiota and Blood Clinical Indexes in Han and Tibetan Individuals, mSystems,5(1), e00660SCI二区,影响因子4.6

[9] Le Zhao*, Jie Xu, Xiantao Shang, Xue Li, Qiang Li*and Shandong Li,Synaptic memory devices from CoO/Nb:SrTiO3 junction,Royal Society Open Science, 2019, 6(4), 181098SCI三区,影响因子2.9

[10] Le Zhao and Alain Nogaret*, Experimental observation of multistability and dynamic attractors in silicon central pattern generators, Physical Review E, 2015, 92, 052910,( SCI三区,影响因子2.4

科研项目                                                   

[1] 国家自然科学基金面上项目, 12474088, 铁电人工神经突触的长时短时可塑性构建及其高智能类脑计算应用, 2025/1-2028/1252万元,到校经费10万元,在研,第二承担单位负责人。

[2] 山东省杰出青年基金,ZR2025QA07,神经形态计算铁电器件研究,2025/10-2028/9100万元,到校经费10万元,在研,第二承担单位负责人。

[3] 山东大学委托,2025KY(JS)HT0258,忆阻神经元器件的动力学行为测试服务,2025/9-2026/9,主持,在研。

[4] 山东大学委托,QL2023521,忆阻突触器件的电学性质测试服务,2024/1-2025/1,9.4万元,主持,已结题。

[5] 齐鲁工业大学(山东省科学院)培新基金,2023PX093,基于CMOS忆阻器混合电路的脉冲神经网络设计及应用,2023/1-2024/1210万元,主持,已结题。

发明专利                                                       

[1] 赵乐,一种PN微米线制备方法, ZL 202110470930.3

[2] 赵乐,一种支持孤波传导的模拟神经纤维的PN微米线,ZL 202110472473.1

[3] 赵乐,一种支持孤子波传导的神经纤维等效电路,ZL 202110472438.X

团队成员                                                     

王小月 玄春阳