机械工程学院
通讯地址:江苏省镇江市丹徒区长晖路666号
个人邮箱:wangjq2023@just.edu.cn
邮政编码:
办公地点:机械楼339
传真:
王剑桥,男,工学博士。毕业于东南大学机械工程学院。研究方向为微纳制造技术及其应用,主要包括功能性复合涂层、电磁波吸收与屏蔽材料、微纳生物传感器等应用领域。参与了国家自然科学基金的重点项目和面上项目,近5年来在Advanced Functional Materials、Small、Advanced Science 以及Nano-Micro Letters等期刊上发表论文12篇,论文SCI总他引600余次,3篇论文入选ESI高被引论文。
1.功能性复合涂层
2.电磁波吸收与屏蔽材料
3.微纳生物传感器
1. J. Wang, L. Liu, S. Jiao, K. Ma, J. Lv, J. Yang, Hierarchical carbon fiber@MXene@MoS2 core‐sheath synergistic microstructure for tunable and efficient microwave absorption. Advanced Functional Materials, 2020, 30(45): 2002595. (中科院一区Top,IF=19.1)
2. J. Wang, Z. Wu, Y. Xing, L. Liu, A novel 1D/2D interpenetrating network architecture of MXene/cellulose composite microfiber and graphene for broadband microwave absorption. Chemical Engineering Journal, 2022, 439: 135734.(中科院一区Top,IF=15.1)
3. J. Wang, Z. Wu, Y. Xing, B. Li, P. Huang, L. Liu, Multi‐scale design of ultra‐broadband microwave metamaterial absorber based on hollow carbon/MXene/Mo2C microtube. Small, 2023, 19(14): 2207051. (中科院二区Top,IF=13.3)
4. J. Yang, J. Wang, H. Li, Z. Wu, Y. Xing, Y. Chen, L. Liu, MoS2/MXene aerogel with conformal heterogeneous interfaces tailored by atomic layer deposition for tunable microwave absorption. Advanced Science, 2022, 9(7): 2101988. (中科院一区Top,IF=15.1)
5. J. Wang, W. Lei, Y. Deng, Z. Xue, H. Qian, W. Liu, X. Li, Effect of current density on microstructure and corrosion resistance of Ni-graphene oxide composite coating electrodeposited under supercritical carbon dioxide. Surface and Coatings Technology, 2019, 358: 765-774.(中科院二区Top,IF=5.4)
1. J. Wang, L. Liu, S. Jiao, K. Ma, J. Lv, J. Yang, Hierarchical carbon fiber@MXene@MoS2 core‐sheath synergistic microstructure for tunable and efficient microwave absorption. Advanced Functional Materials, 2020, 30(45): 2002595. (中科院一区Top,IF=19.1)
2. J. Wang, Z. Wu, Y. Xing, L. Liu, A novel 1D/2D interpenetrating network architecture of MXene/cellulose composite microfiber and graphene for broadband microwave absorption. Chemical Engineering Journal, 2022, 439: 135734.(中科院一区Top,IF=15.1)
3. J. Wang, Z. Wu, Y. Xing, B. Li, P. Huang, L. Liu, Multi‐scale design of ultra‐broadband microwave metamaterial absorber based on hollow carbon/MXene/Mo2C microtube. Small, 2023, 19(14): 2207051. (中科院二区Top,IF=13.3)
4. J. Yang, J. Wang, H. Li, Z. Wu, Y. Xing, Y. Chen, L. Liu, MoS2/MXene aerogel with conformal heterogeneous interfaces tailored by atomic layer deposition for tunable microwave absorption. Advanced Science, 2022, 9(7): 2101988. (中科院一区Top,IF=15.1)
5. J. Wang, W. Lei, Y. Deng, Z. Xue, H. Qian, W. Liu, X. Li, Effect of current density on microstructure and corrosion resistance of Ni-graphene oxide composite coating electrodeposited under supercritical carbon dioxide. Surface and Coatings Technology, 2019, 358: 765-774.(中科院二区Top,IF=5.4)
1. J. Wang, L. Liu, S. Jiao, K. Ma, J. Lv, J. Yang, Hierarchical carbon fiber@MXene@MoS2 core‐sheath synergistic microstructure for tunable and efficient microwave absorption. Advanced Functional Materials, 2020, 30(45): 2002595. (中科院一区Top,IF=19.1)
2. J. Wang, Z. Wu, Y. Xing, L. Liu, A novel 1D/2D interpenetrating network architecture of MXene/cellulose composite microfiber and graphene for broadband microwave absorption. Chemical Engineering Journal, 2022, 439: 135734.(中科院一区Top,IF=15.1)
3. J. Wang, Z. Wu, Y. Xing, B. Li, P. Huang, L. Liu, Multi‐scale design of ultra‐broadband microwave metamaterial absorber based on hollow carbon/MXene/Mo2C microtube. Small, 2023, 19(14): 2207051. (中科院二区Top,IF=13.3)
4. J. Yang, J. Wang, H. Li, Z. Wu, Y. Xing, Y. Chen, L. Liu, MoS2/MXene aerogel with conformal heterogeneous interfaces tailored by atomic layer deposition for tunable microwave absorption. Advanced Science, 2022, 9(7): 2101988. (中科院一区Top,IF=15.1)
5. J. Wang, W. Lei, Y. Deng, Z. Xue, H. Qian, W. Liu, X. Li, Effect of current density on microstructure and corrosion resistance of Ni-graphene oxide composite coating electrodeposited under supercritical carbon dioxide. Surface and Coatings Technology, 2019, 358: 765-774.(中科院二区Top,IF=5.4)
厦门大学,学士
东南大学,博士