姓名:李梦琪
性别:男
职称:副教授,硕士生导师
办公地点:综合楼523
学位:博士
电子邮箱:limengqi@dlmu.edu.cn
个人简介:
李梦琪,博士,硕士生导师,大连海事大学副教授,大连市高层次人才。毕业于加拿大滑铁卢大学,研究方向为海洋智能传感与快速检测仪器开发、船舶防污染技术、船舶在线监测技术、微流控芯片技术、船舶及海工平台减噪技术等。共发表学术论文40余篇,其中第一/通讯作者SCI论文19篇,参与2部英文专著编写,获国家发明专利10余项,获得中国发明协会“发明创业奖创新奖”二等奖;主持国家级项目3项,省部级项目3项,校级项目2项;指导学生参加创新创业类竞赛,多次获得中国大学生机械工程创新创意大赛、iCAN大学生创新创业大赛等竞赛的国家级奖项。
教育经历:
2008.09-2012.07 大连海事大学,轮机工程学院,工学学士学位
2012.09-2014.12 大连海事大学,轮机工程学院,工学硕士学位
2015.01-2018.12 滑铁卢大学,机械工程系,博士
工作经历:
2019.02- 2020.10 滑铁卢大学,机械工程学院,博士后研究员
2020.12- 至今 大连海事大学,轮机工程学院,副教授
研究方向:
船舶防污染技术、海洋智能传感及快速检测仪器开发、船舶在线监测技术、微流控芯片技术、船舶及海工平台减噪技术
教学情况:
担任轮机工程相关的本科、硕士研究生多门专业课程,如《船舶防污染》、《创新思维与创新方法》、《科技写作和文献检索》、《轮机英语》、《轮机案例分析》等。教学手段丰富、专业技能强,具备全英文授课能力,能够激发学生的自主学习兴趣,培养学生的创新性思维。
指导大学生创新创业项目多次获得国家级奖项,如中国大学生机械工程创新创意大赛—过程装备实践与创新赛、智能制造大赛全国一等奖、第十届“TRIZ杯”大学生创新方法大赛一等奖等。
主持科研项目:
[1]主持2025-2027年国家自然科学基金项目,项目负责人;
[2]主持2025-2028年国家重点研发计划项目子课题,项目负责人;
[3]主持2023-2024年创新项目子课题,项目负责人;
[4]主持2024年中央高校基本科研业务费项目,项目负责人;
[5]主持2021-2023年中国博士后科学基金项目,项目负责人;
[6]主持2023-2025年教育部“春晖计划”合作科研项目,项目负责人;
[7]主持2022-2024年辽宁省教育厅科技项目,项目负责人;
[8]主持2021年中央高校基本科研业务费项目,项目负责人;
代表性学术成果:
在《Advanced Functional Materials》(IF 18.5)、《Advances in Colloid and Interface Science》(IF 15.97)、《Small》(IF 13.0)、《Biosensors and Bioelectronics》(IF 10.7)、《Journal of Colloid and Interface Science》(IF 9.4)等知名期刊发表论文40余篇(一作/通讯作者SCI检索论文19篇),参与英文专著《Encyclopedia of Microfluidics and Nanofluidics》、《Ship’s Ballast Water Analysis》编写。取得了一批具有自主知识产权和创新特色的研究成果,获国家发明专利10余项,获得中国发明协会“发明创业奖创新奖”二等奖。代表性论文有:
[1] Y. Zamir, A. Nawaz, M. Li, H. Chang, Y. Song, Biosensors and Bioelectronics Microfluidic chip systems for color-based antimicrobial susceptibility test a review, Biosens. Bioelectron. 273 (2025) 117160.
[2] D. Li, R. Jiang, J. Li, Z. Liu, Y.Z. Ahmed, Q. Zhao, Y. Song, M. Li, Modification of the electrokinetic motion of microalgae through light illumination for viability assessment, Electrophoresis. (2024) 1–11.
[3] J. Li, M. Li, K. Zhang, L. Hu, D. Li, High-Performance Integrated Iontronic Circuits Based on Single Nano / Microchannels, Small. 19 (2023) 2208079.
[4] Y. Sun, R. Jiang, L. Hu, Y. Song, M. Li, Electrokinetic transport phenomena in nanofluidics and their applications, Electrophoresis. 44 (2023) 1756–1773.
[5] Y. Song, W. Yu, Z. Liu, Y. Huang, M. Li, D. Li, Electrokinetic Transportation and Differentiation of Copper and Aluminum Particles in Oil with an Oil-Water Interface, Colloids Surfaces A Physicochem. Eng. Asp. 641 (2022) 128397.
[6] M. Li, D. Li, Y. Song, D. Li, Tunable particle/cell separation across aqueous two-phase system interface by electric pulse in microfluidics, J. Colloid Interface Sci. 612 (2022) 23–34.
[7] D. Li, W. Yu, T. Zhou, M. Li, Y. Song, D. Li, Conductivity-difference-enhanced DC dielectrophoretic particle separation in a microfluidic chip, Analyst. 147 (2022) 1106–1116.
[8] M. Li, L. Hu, D. Li, Y. Song, Y. Sun, Mechanism and performance of ionic diodes fabricated from 2D trapezoidal-shaped nanochannels, Phys. Chem. Chem. Phys. 24 (2022) 19927–19937.
[9] M. Li, D. Li, Electrically controllable cargo delivery with dextran-rich droplets, J. Colloid Interface Sci. 582 (2021) 102–111.
[10] M. Li, C. Wang, Z. Liu, Y. Song, D. Li, Ionic Diode Based on an Asymmetric-Shaped Carbon Black Nanoparticle Membrane, Adv. Funct. Mater. 31 (2021) 2104341.
[11] M. Li, D. Li, Bidirectional transfer of particles across liquid-liquid interface under electric pulse, J. Colloid Interface Sci. 560 (2020) 436–446.
[12] M. Li, D. Li, Nonlinear electrokinetic motion of electrically induced Janus droplets in microchannels, J. Colloid Interface Sci. 538 (2019) 277–285.
[13] M. Li, D. Li, Janus Droplets and Droplets with Multiple Heterogeneous Surface Strips Generated with Nanoparticles under Applied Electric Field, J. Phys. Chem. C. 122 (2018) 8461–8472.
[14] M. Li, D. Li, Microvalve using electrokinetic motion of electrically induced Janus droplet, Anal. Chim. Acta. 1021 (2018) 85–94.
[15] M. Li, D. Li, Self-propulsion of aluminum particle-coated Janus droplet in alkaline solution, J. Colloid Interface Sci. 532 (2018) 657–665.
[16] M. Li, D. Li, Electrokinetic motion of an electrically induced Janus droplet in microchannels, Microfluid. Nanofluidics. 21 (2017) 16.
[17] M. Li, D. Li, Separation of Janus droplets and oil droplets in microchannels by wall-induced dielectrophoresis, J. Chromatogr. A. 1501 (2017) 151–160.
[18] M. Li, D. Li, Fabrication and electrokinetic motion of electrically anisotropic Janus droplets in microchannels, Electrophoresis. 38 (2017) 287–295.
[19] M. Li, D. Li, Redistribution of charged aluminum nanoparticles on oil droplets in water in response to applied electrical field, J. Nanoparticle Res. 18 (2016) 120.
[20] M. Li, D. Li, Vortices around Janus droplets under externally applied electrical field, Microfluid. Nanofluidics. 20 (2016) 79.
[21] M. Li, D. Li, Redistribution of mobile surface charges of an oil droplet in water in applied electric field, Adv. Colloid Interface Sci. 236 (2016) 142–151.