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吴君峰,工学博士,副教授,ESFP,硕士生导师。
教育及工作经历:
(1) 2026-01至今,沈阳建筑大学,副教授
(2) 2024-08至2025-12,沈阳建筑大学,讲师
(3) 2019-09 至2024-06, 中国科学院沈阳自动化研究所, 博士
(4) 2016-09 至2019-06, 中国石油大学(华东), 硕士
(5) 2012-09 至2016-06, 中国石油大学(华东), 学士
科研成果:主要从事微纳机器人、微纳技术等工作。近年来共发表SCI、EI论文20余篇,包括在顶级期刊《Advanced Mateirals》(IF=27.4)发表的封面文章一篇。主持省部级科研项目2项,参与国家重点研发计划等科研项目数项。
学生获奖:
2025年:李恩阔 硕士一等奖学金
张兆煜 硕士二等奖学金
阮涵琳、王一帆 “西门子杯”中国智能制造挑战赛辽宁省二等奖
李千 本科优秀毕业设计
研究生培养:致力于创建氛围开放,坦荡互助,积极乐观的团队。尊重本人意愿以学生的发展为主。欢迎感兴趣的同学联系。邮件收到后必回复,若三天内未收到回复,可能邮件误入垃圾邮件,请换个邮箱或者邮件题目再发一次。
(5) 国家自然科学基金委员会,青年科学基金项目(C类),62503342,面向脑胶质瘤复发防治的宏-微机器人协同靶向递药方法,30万元,2026-1 至 2028-12,在研,主持。
(4) 辽宁省教育厅,高校基本科研项目青年项目,LJ212510153036,面向脑胶质瘤术后递药的混合驱动微纳机器人集群技术研究,5万元,2025-07 至 2027-07,在研,主持。
(3) 辽宁省科技厅,辽宁省科技计划联合计划(自然科学基金-博士科研启动项目),2024-BSLH-240,面向脑胶质瘤治疗的微纳米机器人颅内药物靶向递送技术研究,5万元,2024-12 至 2026-12,在研,主持。
(2) 科学技术部,国家重点研发计划“智能机器人”专项项目,可穿戴沉浸式介电作动触觉反馈人机交互系统,2025-01 至 2027-12,597万元,在研,参与。
(1) 科学技术部,国家重点研发计划“智能机器人”专项项目,药物靶向递送场控微纳机器人与驱控系统,2023-11 至 2026-10,596万元,在研,参与。
奖项:
2025年沈阳建筑大学先进工作者
2025届本科毕业设计(论文)优秀指导教师
2024年中国科学院院长优秀奖
2024年中国科学院沈阳自动化研究所优秀研究生
2022年IEEE ROBIO国际学术会议最佳学生论文奖
2018年硕士研究生国家奖学金
学术论文:
[10] Junfeng Wu#, Na Li#, Tianyang Ma#, Daojing Lin, Junjian Zhou,Yingqiu Song, Wen Cheng*, Anhua Wu*, Niandong Jiao*, Magnetic continuum robot-mediated intracranial delivery of peptide nanophotosensitizers for glioblastoma photodynamic therapy, Biomaterials Advances, vol. 178, pp. 214458, 2026. (中科院二区Top,IF: 6)
[9] Junfeng Wu, Niandong Jiao*, DaojingLin, Na Li, Tianyang Ma, Steve Tung, Wen Cheng, Anhua Wu*, Lianqing Liu*,Dual-responsive nanorobot based marsupial robotic system for intracranialcross-scale targeting drug delivery, Advanced Materials, vol. 36, pp. 2306876,2024. (中科院一区Top,IF: 27.4,封面文章)
[8] Junfeng Wu, Shuang Ma, Mengyue Li,Xingyue Hu, Niandong Jiao, Steve Tung, Lianqing Liu *, Enzymatic/MagneticHybrid Micromotors for Synergistic Anticancer Therapy, ACS Applied Materials& Interfaces, vol. 13, no. 27, pp. 31514-31526, 2021. (中科院二区Top, IF: 8.3)
[7] Junfeng Wu, Dongzhi Zhang *, Yuhua Cao,Fabrication of Iron-doped titanium dioxide quantum dots/molybdenum disulfidenanoflower for ethanol gas sensing, Journal of Colloid and Interface Science,vol. 529, pp. 556-567, 2018. (中科院一区Top,IF: 9.4)
[6] Junfeng Wu, Niandong Jiao, Xingyue Hu,Lianqing Liu *, Chemical/magnetic dual-responsive nanorobots with flower-likestructure for drug delivery, 2022 IEEE International Conference on Robotics andBiomimetics, Jinghong, China, pp. 247-252, 2022. (EI, 最佳学生论文)
[5] Junfeng Wu, Niandong Jiao, Xingyue Hu,Lianqing Liu *, Enzymatic Nanorobots for Combination Chemotherapy ofGlioblastoma. 2024 IEEE International Conference on Nano/Micro Engineered andMolecular Systems, 2024. (EI)
[4]Dongzhi Zhang*, Junfeng Wu, Peng Li,Yuhua Cao. Room-temperature SO2 gas sensing properties based onmetal-doped MoS2 nanoflower: an experimental and density functional theoryinvestigation, Journal of Materials Chemistry A, vol. 5, pp. 20666 - 20677,2017. (中科院一区Top,IF: 10.7)
[3]Dongzhi Zhang*, Junfeng Wu, YuhuaCao, Ultrasensitive H2S gas sensing properties of CuO nanorods/MoS2nanosheets nanoheterostructure with synergistic effect, Sensors and ActuatorsB: Chemical, vol. 287, pp. 346-355, 2019. (中科院一区Top,IF: 8)
[2]Dongzhi Zhang *, Junfeng Wu, PengLi, Yuhua Cao, Zhimin Yang. Hierarchical nanoheterostructure of tungstendisulfide nanoflowers doped with zinc oxide hollow spheres: Benzene gas sensingproperties and first-principles study, ACS Applied Materials & Interfaces,vol. 11, n 34, pp. 31245-31256, 2019. (中科院一区Top,IF: 8.3)
[1]Dongzhi Zhang*, Junfeng Wu, YuhuaCao. Cobalt-doped indium oxide/molybdenum disulfide ternary nanocompositetoward carbon monoxide gas sensing, Journal of Alloys and Compounds, vol. 777,pp. 443-453, 2019. (中科院二区Top,IF: 5.8)
[10]Shuang Ma, Junfeng Wu, Zhihua Liu,Rong He, Yuechao Wang, Lianqing Liu*, Tianlu Wang, Wenxue Wang."Quantitative characterization of cell physiological state based ondynamical cell mechanics for drug efficacy indication," Journal ofPharmaceutical Analysis, vol. 13, no. 4, pp. 388-402, 2023
[11] Mengyue Li, Junfeng Wu, Daojing Lin, Jia Yang, Niandong Jiao, Yuechao Wang,Lianqing Liu*. "A diatom-based biohybrid microrobot with a highdrug-loading capacity and pH- sensitive drug release for target therapy,"Acta Biomaterialia, vol. 154, pp. 443-453, 2022.
[12]Na Li, Daojing Lin, Junfeng Wu, QuanGan, Xingyue Hu, and Niandong Jiao. "Novel Concentric Magnetic ContinuumRobot with Multiple Stiffness Modes for Potential Delivery ofNanomedicine," Magnetochemistry, vol. 9, no. 5, pp. 129, 2023.
[13] ZhangDongzhi*, Cao Yuhua, Wu Junfeng,Zhang Xiaoxing. Tungsten trioxide nanoparticles decorated tungsten disulfidenanoheterojunction for highly sensitive ethanol gas sensing application,Applied Surface Science, vol. 503, pp. 144063, 2020.
[14] ZhangDongzhi*, Pang Maosong, Wu Junfeng,Cao Yuhua. Experimental and density functional theory investigation ofPt-loaded titanium dioxide/molybdenum disulfide nanohybrid for SO2gas sensing application, New Journal of Chemistry, vol. 43, pp. 4900-4907,2019.
[15] Li Peng, Zhang Dongzhi*, Wu Junfeng, Cao Yuhua, Wu Zhenling.Illumination impact on monolayer MoS2 chemical sensor arrays,Sensors and Actuators A: Physical, vol. 283, pp. 34-41, 2018.
[16] Li Peng, Zhang Dongzhi*, Wu Junfeng, Cao Yuhua, Wu Zhenling.Flexible integrated black phosphorus sensor arrays for high performance ionsensing, Sensors and Actuators B: Chemical, vol. 273, pp. 358-364, 2018.
[17] Zhang Dongzhi*, Jiang Chuanxing, Wu Junfeng. Layer-by-layer assembled In2O3nanocubes/flower-like MoS2 nanofilm for room temperatureformaldehyde sensing, Sensors and Actuators B: Chemical, vol. 273, pp. 176-184,2018.
[18]Li zhenghua, Dang dan, Yang Xieliu, WuJunfeng, Yang Wenguang, Tian Zhenhua, Zhang Hemin, Liang Wenfeng, SimultaneousMicrofluidic Synthesis of Multi-Sized Silica Nanoparticles for BiomedicalApplications, ACS Applied Nano Materials, vol. 6, pp. 4121-4131, 2023,
[19] ZhangDongzhi*, Cao Yuhua, Yang Zhimin, WuJunfeng. Nanoheterostructure construction and DFT study of Ni-doped In2O3nanocubes/WS2 hexagon nanosheets for formaldehyde sensing at roomtemperature, ACS Applied Materials & Interfaces, vol. 12, pp. 11979-11989,2020.
[20] Zhang Dongzhi*, CaoYuhua, Li Peng, Wu Junfeng, ZongXiaoqi. Humidity-sensing performance of layer-by-layer self-assembled tungstendisulfide/tin dioxide nanocomposite, Sensors and Actuators B: Chemical, vol. 265,pp. 529-538, 2018.

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