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丁国文,南京信息工程大学副教授,毕业于南京大学,硕士研究生导师,南京大学博后,入选江苏省双创博士人才项目、江苏省青年托举人才项目、江苏省科技副总。目前担任电信院电子信息工程系副主任、全国超材料学会青年理事、南信大科协青工委委员。发表学术论文30余篇,引用次数1100余次;已授权发明专利8项;主持国家级项目1项、省部级3项、企事业/校项目3项、课改项目1项,共计8项。指导本科生、研究生主持项目8项,其中国家级2项、省部级4项、校级项目2项。指导研究生获得国家奖学金1人次。指导本科生获得国家奖学金1人次。欢迎联系欢迎对超表面与天线阵列、人工电磁器件与波调控、AI辅助电磁设计与复杂电磁环境应用等方向感兴趣的本科生、研究生联系。也欢迎企业、科研院所及高校团队围绕天线/阵列、频率选择表面、极化转换器、吸波器、电磁兼容、AI辅助电磁设计等方向交流实际需求与技术问题。联系方式:邮箱 gwding@nuist.edu.cn;QQ 1106861317。1. 研究方向(1) 【超表面与天线阵列】:面向无线通信、感知与能量传输,研究超表面天线、阵列调控、可重构天线及波束/极化/频率调控技术;(2) 【人工电磁器件与波调控】:研究频率选择表面、极化转换器、吸波器、电磁带隙结构、周期结构与太赫兹/光波段超材料器件设计;(3) 【AI辅助电磁设计与复杂电磁环境应用】:结合机器学习、代理模型与优化算法,开展电磁结构自动设计、电磁散射调控、电磁兼容与工程化验证。2. 教育与工作经历教育经历(3) 2016/09-2020/08,南京大学,博士学位(2) 2013/09-2016/05,南京航空航天大学,硕士学位(1) 2009/09-2013/06,南京航空航天大学,学士学位工作经历(2) 2021/12-至今,南京大学,博士后(1) 2020/09-至今,南京信息工程大学,电子与信息工程学院,校聘教授,研究生导师,电信系副主任3. 招生信息本科生欢迎对科研感兴趣、愿意长期投入训练的本科生联系,欢迎大一、大二尽早加入,参与课题研究、大学生创新训练项目、挑战杯、国创赛及实验测试与学术写作;以课题研究为主线,后续专利、论文等成果是课题的延续。研究生欢迎报考应用电磁学中心研究生。培养目标兼顾科研能力与就业发展,重点面向天线/RF/无线硬件相关就业方向。4. 学生培养2026年(19) 2026年05月,2023级硕士生程方宁同学以第一作者发表SCI论文(T1)1篇【人工电磁器件设计方向】;(18) 2026年04月,2022级本科生唐菲同学以第一作者发表SCI论文(T1)1篇【人工电磁器件设计方向】;(17) 2026年03月,2023级硕士生张景珩同学以第一作者发表SCI论文(T1)1篇【AI电磁结构设计方向】;(16) 2026年03月,2022级本科生万厚锋同学以第一作者发表SCI论文(T1)1篇【人工电磁器件设计方向】;2025年(15) 2025年12月,2023级硕士袁阳同学参加学术会议"2025 IEEE International Workshop on Wireless Sensing Technologies and Applications"并做报告;(14) 2025年10月,2022级本科生万厚锋同学获“国家奖学金”;(13) 2025年08月,2022级本科生王睿同学以第一作者发表SCI论文1篇【算法方向】;(12) 2025年06月,2022级本科生万厚锋同学获批江苏省大学生创新训练项目(国家级) 【人工电磁器件设计方向】;(11) 2025年04月,2023级硕士生程方宁同学获批“江苏省研究生科研与实践计划项目”(省级) 【人工电磁器件设计方向】;2024年(10) 2024年12月,2022级本科生江政轩同学以第一作者发表SCI论文1篇【人工电磁器件设计方向】;(09) 2024年11月,2023级硕士生吉文婷、陆舜同学参加学术会议“2024 IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications”并作报告;(08) 2024年10月,2022级硕士生陈琳豪同学获“研究生国家奖学金”;(07) 2024年06月,2022级本科生江政轩同学获批江苏省大学生创新训练项目(省级) 【人工电磁器件设计方向】;(06) 2024年04月,2022级硕士生陈琳豪同学获批“江苏省研究生科研与实践计划项目”(省级) 【AI电磁结构设计方向】;(05) 2024年04月,2022级硕士生叶帆同学参加学术会议“2022 International Applied Computational Electromagnetics Society Symposium in China”并作报告;(04) 2024年03月,2022级硕士生陈琳豪同学以第一作者发表SCI论文1篇【人工电磁器件设计方向】;2022年(03) 2022年12月,2020级硕士生陈森同学以第一作者发表SCI论文1篇【天线理论与应用方向】;(02) 2022年05月,2020级本科生张晓格同学获批江苏省大学生创新训练项目(国家级)【天线理论与应用方向】;(01) 2022年05月,2020级本科生张舒杨同学获批江苏省大学生创新训练项目(省级)【 AI电磁结构设计方向】。5. 合作方向与项目基础合作方向(1)超表面天线、阵列天线、可重构天线及无线能量传输相关技术;(2)频率选择表面、极化转换器、吸波器、电磁带隙结构等人工电磁器件;(3)目标电磁散射调控、电磁干扰抑制、电磁兼容与结构一体化设计;(4)AI辅助电磁结构优化设计、自动化仿真建模、多目标电磁器件设计;在研项目(8) 国家自然科学基金(青年基金项目),62301262,2024-01至2026-12,主持,在研;(7) 中国博士后面上基金项目(一等),2022M720063,2023-01至2024-12,主持,在研;(6) 江苏省自然科学基金(青年基金项目),BK20220440,2022-07至2025-06,主持,在研;结题项目(5) 江苏省高等教育学会专项课题,2022-12至2024-10,参与,结题;(4) 横向项目课题,2022-01至2024-06,主持,结题;(3) 南京信息工程大学科研启动基金项目,2021R040,2021-04至2024-04,主持,结题;(2) 国家自然科学基金(青年基金项目),61801207,2019-01至2021-12,参与,结题;(1) 国家自然科学基金重点项目,61731010,2018-01至2022-12,参与,结题。基金资助英文说明This work was supported in part by National Natural Science Foundation of China under Grant 62301262, China Postdoctoral Science Foundation under Grant 2022M720063, the Natural Science Foundation of Jiangsu Province of China under Grant BK20220440. 6. 讲授课程《微波技术与天线》,《电磁兼容原理与应用》,《数字电路》,《微波技术基础》7. 社会活动及获奖(19) 2025年,获评电信院“北斗领航·双创育人先进个人”(18) 2025年,参加第九届全国高等学校电子信息类专业青年教师授课竞赛决赛,获评全国三等奖(17) 2025年,参加第九届全国高等学校电子信息类专业青年教师授课竞赛预赛,获评华东赛区二等奖(16) 2025年,获评“南京信息工程大学教师教学创新竞赛”三等奖(15) 2024年,参加第八届全国高等学校电子信息类专业青年教师授课竞赛预赛,获评华东赛区三等奖(14) 2024年,获评电信院“北斗领航·科研育人先进个人”(13) 2024年,参加学术会议“2024 ACES-China”,获评“Young Scientist Honourable Mention Award”;(12) 2024年,参加学术会议“2024 PIERS”并作报告;(11) 2024年,作为Session Chair参与组织学术会议“2024 IEEE International Conference on Computational Electromagnetics”;(10) 2024年,聘任为全国超材料学会青年理事;(09) 2023年,获评“南京信息工程大学教师教学创新竞赛”三等奖(08) 2022年,作为Session Chair参与组织学术会议“2022 International Applied Computational Electromagnetics Society Symposium in China”,并作报告;(07) 2021年,获2020-2021年度“南京信息工程大学优秀班主任”称号(06) 2019年,参加学术会议“2019 International Symposium on Antennas and Propagation (ISAP)”并作报告;(05) 2019年,参加学术会议“2019第一届全国超材料大会”并作报告,获评“超材料学术新人奖”;(04) 2018年,参加学术会议“2018 IEEE Asia-Pacific Conference on Antennas and Propagation (APCAP)”并作报告;(03) 2018年,参加学术会议“2018 International Workshop on Antenna Technology (iWAT)”并作报告,获评“Best Student Paper Award Honor Mention Award”;(02) IEEE Member;(01) 国际期刊审稿人:《IEEE Transactions on Microwave Theory and Techniques》、《Photonics Resarch》、《Optiics Express》、《Optics Communications》等。8. 期刊论文(按时间倒序)2026年(32) Jingheng Zhang(学生), Linhao Chen, Guowen Ding, Xinyao Luo, Shenyun Wang. Deep Learning-Based Design of Transmissive Polarization-Converting Metasurfaces[J]. Acta Optica Sinica, 2026, 46(5): 0522002. (SCI/2区, T1)(31) H. Wan(学生), G. Ding, L. Zhang, X. Luo, and S. Wang. An Ultrathin Single-Layer Polarization Converter with Independently Tunable Transmission and Reflection Operating Frequencies[J]. IEEE Antennas and Wireless Propagation Letters, 2026, doi: 10.1109/LAWP.2026.3670618. (SCI/2区, T1)2025年(30) Ding G, Ye F, Zhang X, et al. Polarization-Reconfigurable Multi-Antenna for High Mutual Coupling Reduction Using Backload Parasitic Structure[J]. Microwave and Optical Technology Letters, 2025, 67(5): e70232. (SCI)(29) C. Q. Zhang(学生), X. R. Jin, Guowen Ding, X. Y. Luo, and S. Y. Wang. Accurate Compensation for Deformed Antenna Array Based on the Method of Maximum Power Transmission Efficiency[J]. Measurement, 2025, 256: 118370. (SCI/2区)(28) X. R. Jin(学生), Q. Zhang, L. B. Kong, Guowen Ding, and S. Y. Wang. Wide Null Steering of Realistic Antenna Array[J]. Results in Engineering, 2025, 26: 105038. (SCI/2区)(27) S. H. Song(学生), Guowen Ding, X. Y. Luo, and S. Y. Wang. A Novel Beamforming Method for Array Antennas Integrating Extended Maximum Power Transfer Efficiency and Genetic Algorithm[J]. International Journal of Electronics and Communications (AEÜ), 2025, 191: 155676. (SCI)2024年(26) Guowen Ding, L. Chen, X.-Y. Luo, and S.-Y. Wang. Neural-Network Enhanced Adaptive Design for Ultrathin Single-Substrate Transmissive Wide-Band Optimized Polarization Converters[J]. Optics Express, 2024, 32(21): 37883. (SCI/2区)(25) P. Y. Li(学生), X. R. Jin, G. W. Ding, X. Y. Luo, and S. Y. Wang. Circular Antenna Array with Beam Direction and Polarization Control[J]. IEEE Access, 2024, 24: 185027. (SCIE)(24) Z. Jiang(学生), Guowen Ding, X. Luo, and S. Wang. Photoreconfigurable Metasurface for Independent Full-Space Control of Terahertz Waves[J]. Sensors, 2024, 25(1): 119. (SCI)(23) J. F. Zhu(学生), C. Chen, X. Sun, Guowen Ding, and S.-Y. Wang. An Electrically Small Patch Antenna Sensor for Salt Concentration Measurement of NaCl Solution[J]. Sensors, 2024, 24: 6389. (SCI)(22) L. Chen(学生), Guowen Ding, X.-Y. Luo, and S.-Y. Wang. Design of a Transmissive Dual-Frequency Polarization Rotator for Linearly Polarized Electromagnetic Wave[J]. EPJ Applied Metamaterials, 2024, 11(9). (SCI)2023年(21) Guowen Ding, S. Chen, X.-Y. Luo, S.-Y. Wang, and K. Chen. Ultrathin Single-Substrate Pancharatnam-Berry Phase Metasurface with High Transmission Efficiency[J]. IEEE Transactions on Antennas and Propagation, 2023, 71(12): 9571-9580. (SCI/1区)(20) Guowen Ding, L. Chen, J. Bi, K. Qu, S. Chen, X. Luo, K. Chen, and S. Wang. Flexible Rotation of Linear Polarization Conversion with a Frequency Selective Surface[J]. Optics Express, 2023, 31(25): 41658. (SCI/2区, T1)(19) Guowen Ding, Yanjun Zhou, Shuyang Zhang, Xin-Yao Luo, and Shenyun Wang. Design of a Reconfigurable Ultra-Wideband Terahertz Polarization Rotator Based on Graphene Metamaterial[J]. Sensors-Basel, 2023, 23(12): 5449. (SCI/2区)(18) Sen Chen(学生), Jie-Dong Bi, Guowen Ding*, Shenyun Wang, and Xin-Yao Luo. Design of Polarization-Insensitive Polarization Converter Based on Frequency Selective Surface[J]. Optics Communications, 2023, 530: 129127. (SCI)2022年及以前(17) Guowen Ding, Ke Chen*, Na Zhang, Junming Zhao, Tian Jiang, and Yijun Feng*. Independent Wavefront Tailoring in Full Polarization Channels by Helicity-Decoupled Metasurface[J]. Annalen der Physik, 2022, 534: 2100546. (SCI)(16) Shenyun Wang, Danping Yang, Geyi Wen, Chen Zhao, and Guowen Ding*. Polarization-Reconfigurable Antenna Using Combination of Circular Polarized Modes[J]. IEEE Access, 2021, 9: 45622-45631. (SCI/2区)(15) Guowen Ding, Ke Chen, Guangxu Qian, Junming Zhao, Tian Jiang, Yijun Feng, and Zhengbin Wang. Independent Energy Allocation of Dual-Helical Multi-Beams with Spin-Selective Transmissive Metasurface[J]. Advanced Optical Materials, 2020: 2000342. (SCI/1区)(14) Guowen Ding, Ke Chen, Xinyao Luo, Guangxu Qian, Junming Zhao, Tian Jiang, and Yijun Feng. Direct Routing of Intensity-Editable Multi-Beams by Dual Geometric Phase Interference in Metasurface[J]. Nanophotonics, 2020: 20200203. (SCI/1区)(13) Ke Chen, Guowen Ding, Guangwei Hu, Zhongwei Jin, Junming Zhao, Yijun Feng, Tian Jiang, Andrea Alù, and Cheng-Wei Qiu. Directional Janus Metasurface[J]. Advanced Materials, 2020, 32(2): 1906352. (SCI/1区)(12) Muhammad Rizwan Akram, Guowen Ding, Ke Chen, Yijun Feng, and Weiren Zhu. Ultrathin Single Layer Metasurfaces with Ultra-Wideband Operation for Both Transmission and Reflection[J]. Advanced Materials, 2020, 32(12): 1907308. (SCI/1区)(11) Ke Chen, Na Zhang, Guowen Ding, Junming Zhao, Tian Jiang, and Yijun Feng. Active Anisotropic Coding Metasurface with Independent Real-Time Reconfigurability for Dual Polarized Waves[J]. Advanced Materials Technologies, 2020, 5(2): 1900930. (SCI/2区)(10) Ke Chen, Wenlong Guo, Guowen Ding, Junmin Zhao, Tian Jiang, and Yijun Feng. Binary Geometric Phase Metasurface for Ultra-Wideband Microwave Diffuse Scatterings with Optical Transparency[J]. Optics Express, 2020, 28(9): 12638-12649. (SCI/2区)(9) Guowen Ding, Ke Chen, Xinyao Luo, Junming Zhao, Tian Jiang, and Yijun Feng. Dual-Helicity Decoupled Coding Metasurface for Independent Spin-to-Orbital Angular Momentum Conversion[J]. Physical Review Applied, 2019, 11(4): 044043. (SCI/2区)(8) Guowen Ding, Ke Chen, Tian Jiang, Boyu Sima, Junming Zhao, and Yijun Feng. Full Control of Conical Beam Carrying Orbital Angular Momentum by Reflective Metasurface[J]. Optics Express, 2018, 26(16): 20990-21002. (SCI/2区)(7) Xinyao Luo, Wenlong Guo, Guowen Ding, Mingzhu Du, Ke Chen, Junming Zhao, Tian Jiang, and Yijun Feng. Composite Strategy for Backward-Scattering Reduction of a Wavelength-Scale Cylindrical Object by an Ultrathin Metasurface[J]. Physical Review Applied, 2019, 12(6): 064027. (SCI/2区)(6) Jun Sun, Ke Chen, Guowen Ding, Wenlong Guo, Junming Zhao, Yijun Feng, and Tian Jiang. Achieving Directive Radiation and Broadband Microwave Absorption by an Anisotropic Metasurface[J]. IEEE Access, 2019, 7: 93919-93926. (SCI/2区)(5) Ke Chen, Xinyao Luo, Guowen Ding, Junmin Zhao, Yijun Feng, and Tian Jiang. Broadband Microwave Metamaterial Absorber with Lumped Resistor Loading[J]. EPJ Applied Metamaterials, 2019, 6: 1.(4) Tianshu Li, Ke Chen, Guowen Ding, Junmin Zhao, Tian Jiang, and Yijun Feng. Optically Transparent Metasurface Salisbury Screen with Wideband Microwave Absorption[J]. Optics Express, 2018, 26(26): 34384-34395. (SCI/2区)(3) Li Cui, Wenjun Wang, Guowen Ding, Ke Chen, Junmin Zhao, Tian Jiang, Bo Zhu, and Yijun Feng. Polarization-Dependent Bi-Functional Metasurface for Directive Radiation and Diffusion-Like Scattering[J]. AIP Advances, 2017, 7: 115214. (SCI/3区)(2) Guowen Ding, Shao-Bin Liu, Hai-Feng Zhang, and Xiang-Kun Kong. Tunable Electromagnetically Induced Transparency at Terahertz Frequencies in Coupled Graphene Metamaterial[J]. Chinese Physics B, 2015, 24(11): 118103. (SCI)(1) Guowen Ding, Shao-Bin Liu, Hai-Feng Zhang, Xiang-Kun Kong, and Hai-Ming Li. Tunable Omnidirectional Absorber and Mode Splitter Based on Semiconductor Photonic Crystal[J]. Physica B: Condensed Matter, 2015, 468: 1-6. (SCI)