教师名录
柔性仿生离子通道的设计与制造
基于纳米孔的生物分子检测技术
纳米限域空间内的离子输运机理
超细纳米纤维的制备工艺
外骨骼仿生机械手
2005年7月—2007年5月:上海徐浦标准件有限公司,工程师;
2016年5月—2022年5月:best365官方网站登录入口,讲师;
2022年5月-至今:best365官方网站登录入口,副教授。
《机械制图》
《机械制造工程学》
《程序设计C++》
《机器人设计基础》
《能源系统设计与制造》
(1) Ma, J.; He, Y. F.; Zhang, X. Y.; Qiu, C. H.; Zhang, Z. Y.; Zhou, L. Pressure Driven Non-monotonic Gating in Tunable Polydimethylsiloxane Nanopores Regulates DNA Translocation. Acs Nano 2026, 20 (28), 20365–20378. DOI: 10.1021/acsnano.6c06942.
(2) Zhang, Z. Y.; Qi, H.; Han, Q.; Zheng, F.; Ma, J. Probing Ionic Vibrational Dynamics via Terahertz Fluctuations in Nanopore Ionic Current. J Phys Chem B 2026, 130 (1), 486–492. DOI: 10.1021/acs.jpcb.5c07135.
(3) He, Y. F.; Lv, H. L.; Zhang, Y.; Si, W.; Sha, J. J.; Chen, Y. F.; Ma, J. Mechano-Gated Nanofluidic Piezomemristor: Elastic Nanochannel Bridging Dynamic Pressure Modulation and Neuromorphic Plasticity. Acs Appl Mater Inter 2025, 17 (36), 50292–50301. DOI: 10.1021/acsami.5c11163.
(4) Zhou, L.; Chen, Z.; Ma, J. A Simple Cost‐Effective Method to Fabricate Single Nanochannels by Embedding Electrospun Polyethylene Oxide Nanofibers. Chemistryopen 2024. DOI: 10.1002/open.202400008.
(5) Ma, J.; Zhang, Z. Y.; Gu, X.; Li, K.; Li, D. Y.; Chen, Y. F. Multivalent Ion Transport through a Nanopore. J Phys Chem C 2022, 126 (34), 14661–14668. DOI: 10.1021/acs.jpcc.2c02650.
(6) Lin, K. B.; Li, Z. W.; Tao, Y.; Li, K.; Yang, H. J.; Ma, J.; Li, T.; Sha, J. J.; Chen, Y. F. Surface Charge Density Inside a Silicon Nitride Nanopore. Langmuir 2021, 37 (35), 10521–10528. DOI: 10.1021/acs.langmuir.1c01504.
(7) Ma, J.; Zeng, Q. Y.; Zhan, L. J.; Mo, J. W.; Zhang, Y.; Ni, Z. H. Power Generation from Salinity Gradient by Reverse Electrodialysis in Silicon Nitride Nanopores. Nano 2020, 15 (11). DOI: Artn 2050148
10.1142/S1793292020501489.
(8) Zhou, L.; Li, K.; Li, Z. W.; He, P. Y.; Lin, K. B.; Mo, J. W.; Ma, J. Detection of DNA homopolymer with graphene nanopore. J Vac Sci Technol B 2019, 37 (6). DOI: Artn 061809
10.1116/1.5116295.
(9) Ma, J.; Li, K.; Li, Z. W.; Qiu, Y. H.; Si, W.; Ge, Y. Y.; Sha, J. J.; Liu, L.; Xie, X.; Yi, H.; et al. Drastically Reduced Ion Mobility in a Nanopore Due to Enhanced Pairing and Collisions between Dehydrated Ions. J Am Chem Soc 2019, 141 (10), 4264–4272. DOI: 10.1021/jacs.8b08488.
(10) Ma, J.; Zhang, Q.; Lin, K.; Zhou, L.; Ni, Z. Piezoelectric and optoelectronic properties of electrospinning hybrid PVDF and ZnO nanofibers. Materials Research Express 2018, 5 (3), 035057. DOI: 10.1088/2053-1591/aab747.
(11) Ma, J.; Zhang, Q.; Zhang, Y.; Zhou, L.; Yang, J.; Ni, Z. A rapid and simple method to draw polyethylene nanofibers with enhanced thermal conductivity. Appl Phys Lett 2016, 109 (3), 033101. DOI: 10.1063/1.4958905.
(12) Ma, J.; Zhang, Q.; Mayo, A.; Ni, Z. H.; Yi, H.; Chen, Y. F.; Mu, R.; Bellan, L. M.; Li, D. Y. Thermal conductivity of electrospun polyethylene nanofibers. Nanoscale 2015, 7 (40), 16899–16908. DOI: 10.1039/c5nr04995d.
柔性仿生离子通道的设计与制造
基于纳米孔的生物分子检测技术
纳米限域空间内的离子输运机理
超细纳米纤维的制备工艺
外骨骼仿生机械手
(1) Ma, J.; He, Y. F.; Zhang, X. Y.; Qiu, C. H.; Zhang, Z. Y.; Zhou, L. Pressure Driven Non-monotonic Gating in Tunable Polydimethylsiloxane Nanopores Regulates DNA Translocation. Acs Nano 2026, 20 (28), 20365–20378. DOI: 10.1021/acsnano.6c06942.
(2) Zhang, Z. Y.; Qi, H.; Han, Q.; Zheng, F.; Ma, J. Probing Ionic Vibrational Dynamics via Terahertz Fluctuations in Nanopore Ionic Current. J Phys Chem B 2026, 130 (1), 486–492. DOI: 10.1021/acs.jpcb.5c07135.
(3) He, Y. F.; Lv, H. L.; Zhang, Y.; Si, W.; Sha, J. J.; Chen, Y. F.; Ma, J. Mechano-Gated Nanofluidic Piezomemristor: Elastic Nanochannel Bridging Dynamic Pressure Modulation and Neuromorphic Plasticity. Acs Appl Mater Inter 2025, 17 (36), 50292–50301. DOI: 10.1021/acsami.5c11163.
(4) Zhou, L.; Chen, Z.; Ma, J. A Simple Cost‐Effective Method to Fabricate Single Nanochannels by Embedding Electrospun Polyethylene Oxide Nanofibers. Chemistryopen 2024. DOI: 10.1002/open.202400008.
(5) Ma, J.; Zhang, Z. Y.; Gu, X.; Li, K.; Li, D. Y.; Chen, Y. F. Multivalent Ion Transport through a Nanopore. J Phys Chem C 2022, 126 (34), 14661–14668. DOI: 10.1021/acs.jpcc.2c02650.
(6) Lin, K. B.; Li, Z. W.; Tao, Y.; Li, K.; Yang, H. J.; Ma, J.; Li, T.; Sha, J. J.; Chen, Y. F. Surface Charge Density Inside a Silicon Nitride Nanopore. Langmuir 2021, 37 (35), 10521–10528. DOI: 10.1021/acs.langmuir.1c01504.
(7) Ma, J.; Zeng, Q. Y.; Zhan, L. J.; Mo, J. W.; Zhang, Y.; Ni, Z. H. Power Generation from Salinity Gradient by Reverse Electrodialysis in Silicon Nitride Nanopores. Nano 2020, 15 (11). DOI: Artn 2050148
10.1142/S1793292020501489.
(8) Zhou, L.; Li, K.; Li, Z. W.; He, P. Y.; Lin, K. B.; Mo, J. W.; Ma, J. Detection of DNA homopolymer with graphene nanopore. J Vac Sci Technol B 2019, 37 (6). DOI: Artn 061809
10.1116/1.5116295.
(9) Ma, J.; Li, K.; Li, Z. W.; Qiu, Y. H.; Si, W.; Ge, Y. Y.; Sha, J. J.; Liu, L.; Xie, X.; Yi, H.; et al. Drastically Reduced Ion Mobility in a Nanopore Due to Enhanced Pairing and Collisions between Dehydrated Ions. J Am Chem Soc 2019, 141 (10), 4264–4272. DOI: 10.1021/jacs.8b08488.
(10) Ma, J.; Zhang, Q.; Lin, K.; Zhou, L.; Ni, Z. Piezoelectric and optoelectronic properties of electrospinning hybrid PVDF and ZnO nanofibers. Materials Research Express 2018, 5 (3), 035057. DOI: 10.1088/2053-1591/aab747.
(11) Ma, J.; Zhang, Q.; Zhang, Y.; Zhou, L.; Yang, J.; Ni, Z. A rapid and simple method to draw polyethylene nanofibers with enhanced thermal conductivity. Appl Phys Lett 2016, 109 (3), 033101. DOI: 10.1063/1.4958905.
(12) Ma, J.; Zhang, Q.; Mayo, A.; Ni, Z. H.; Yi, H.; Chen, Y. F.; Mu, R.; Bellan, L. M.; Li, D. Y. Thermal conductivity of electrospun polyethylene nanofibers. Nanoscale 2015, 7 (40), 16899–16908. DOI: 10.1039/c5nr04995d.