教师简介

秦宁,加拿大滑铁卢大学博士,山东大学能动学院教授、博士生导师,山东大学齐鲁青年学者,山东大学第二医院兼职教授

教育经历
  • 2018-5 — 2019-5
    美国哈佛大学医学院 (Harvard Medical School)
    生物医学工程
    博士后
  • 2012-9 — 2017-5
    加拿大滑铁卢大学 (University of Waterloo)
    机械工程
    博士生
  • 2009-9 — 2012-6
    中国科学院理化技术研究所
    制冷及低温工程
    硕士生
  • 2005-9 — 2009-6
    山东大学
    动力工程及工程热物理
    工学学士
工作经历
  • 2022-03 — 至今
     山东大学 能源与动力工程学院 
    教授
  • 2021-06 — 2022-02
     加拿大滑铁卢大学眼研究与教育中心 (Centre for Ocular Research & Education, CORE) 
    博士后
  • 2020-02 — 2021-05
     加拿大滑铁卢大学眼科与视力科学学院 (School of Optometry and Vision Science) 
    助理研究员
  • 2019-06 — 2020-02
     加拿大滑铁卢大学机械与机电一体化工程系微流体技术实验室 Waterloo Microfluidics Laboratory 
    Research associate
  • 2018-05 — 2019-04
     美国哈佛大学医学院及附属马萨诸塞州总医院 Wellman Center for Photomedicine 
    博士后
  • 2017-06 — 2018-05
     加拿大安大略 QuantWave Technologies 公司 
    研发顾问
  • 2016-06 — 2016-08
     德国图林根州生物过程和分析测量技术研究所 (iba, e.v.) 
    访问学者
  • 2015-01 — 2015-06
     加拿大安大略 Genemis Laboratories 公司 
    合作工程师
  • 2010-09 — 2012-06
     中国科学院空间功热转换技术重点实验室 
    研究助理
学术兼职
  • 2017-12 — 至今
    美国物理学会会员
  • 2017-12 — 至今
    加拿大机械工程学会会员
  • 2022-9 — 至今
    中国工程热物理学会会员
  • 2023-7 — 至今
    《制冷学报》青年编委
研究概况

微流体研究泛指在微米特征长度上关于极小体积(纳升或更小)流体(包含液体、气体及相关固相内容物)的基础与应用研究。微尺度下,流动通常为层流且主要受制于粘度、界面及边界的综合效应。尽管微流过程广泛存在于自然界及人类的生活生产,其众多基础理论机制仍有待揭示。通过与特定表征方法或赋能技术相结合,微流控技术在推动新一代化学、生物、医学等领域的检测与分析方面具有极大应用潜力和产业转化价值。据估计,全球微流体技术市场规模将从2018年的100亿美元达到2023的280亿美元。

微流动力学及微流控技术有关研究是涵盖了流体力学、微纳加工、化学、生物等多方面的高度跨学科研究领域,相关基础与应用研究势必带来:(1)高水平研究成果发表,(2)重多跨学科领域研究合作,(3)较多学术成果转化与应用。

本人研究领域主要包括但不限于:微尺度流体动力学的基础与应用, 微流器件设计与开发, 微流技术用于医学或环境检测, 流体力学实验与模拟, 碳储存与应用

研究方向
论文成果

(1) Zhennan He.Pore-scale study of fluid displacement in parallel-layered porous media and implications of associated distinct flow dynamics.Langmuir.2025,41 (2):1446–1458

(2) Yue Ren.Development and performance study of a radiation-enhanced heat pipe radiator for cooling high-power IGBT modules.Applied Thermal Engineering.2024,262

(3) 何振楠.Strong effect of often-overlooked initial spilled oil distribution on subsequent soil remediation: A pore-scale perspective.Journal of Cleaner Production.2024,478

(4) 张颖龙.Comprehensive correlation analysis enabled neural network prediction of heat and mass transfer during gas hydrate decomposition.Fuel.2025,382

(5) 张颖龙.Microscopic insights into interface characteristics of methane hydrate dissociation under external stimulations and molecular defects.Colloids and Surfaces A.2024,703

(6) 周东方.Study on Heat Transfer Characteristics of Silicon-based LHP Evaporator 硅基 LHP 蒸发器传热特性研究.Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics.2024,45 (1):241-245

(7) Ullah, Ikram.Improved charge separation and transport with l-aspartic acid derived carbon-doped g-C3N4 for efficient visible-light photocatalytic H2 production.Sustainable Energy & Fuels.2024

(8) Ullah, Ikram.Emerging Trends in CdS-Based Nanoheterostructures: From Type-II and Z-Scheme toward S-Scheme Photocatalytic H2 Production.CHEMICAL RECORD.2024

(9) Ikram Ullah.Recent advances in inorganic oxide semiconductor-based S-scheme heterojunctions for photocatalytic hydrogen evolution.Inorganic Chemistry Frontiers.2024

(10) 刘波.Continuous production of bimetallic nanoparticles on carbon nanotubes based on 3D-printed microfluidics.Nanoscale.2024,16 (5)

(11) Ramasamy, Megala.Inexpensive and rapid fabrication of PDMS microfluidic devices for biological testing applications using low cost commercially available 3D printers.Journal of Micromechanics and Microengineering.2023,33 (10)

(12) 张颖龙.CO2-on-a-Chip:二氧化碳微流控技术研究现状及展望.《制冷学报》.2023 :1-9

(13) Sahil Kashyap.Effects of surfactant size and concentration on the internal flow fields of moving slug and Disk-like droplets via μ-PIV.Chemical Engineering Science.2022,255 :117668

(14) Weijia Cui,Pei Zhao.Reagent free detection of SARS-CoV-2 using an antibody-based microwave sensor in a microfluidic platform.Lab on a Chip.2022,22 (12):2307-2314

(15) Wasim Kapadia,Ning Qin.Shear-thinning and temperature-dependent viscosity relationships of contemporary ocular lubricants.Translational Vision Science & Technology.2022,11 (3):1

(16) Ning Qin.Microfluidic technology for antibacterial resistance study and antibiotic susceptibility tests: review and perspective.ACS Sensors.2020,6 (1):3-21

(17) Pei Zhao,Ning Qin.Surface modification of polyamide meshes and nonwoven fabrics by plasma etching and a PDA/cellulose coating for oil/water separation.Applied Surface Science.2019,481 :883-891

(18) Surface modification of polymer filters by etching and a PDA coating for oil-water separation.Abstract reviewed for 2018 Materials Research Study Fall Meeting & Exhibit.2018

(19) Pei Zhao,Ning Qin.Polyamide 6.6 separates oil/water due to its dual underwater oleophobicity/underoil hydrophobicity: Role of 2D and 3D porous structures.Applied Surface Science.2018,466 :282-288

(20) Ning Qin.On non-equilirium shrinkage of supercritical CO2 droplets in a water-carrier microflow.Applied Physics Letters.2018,113

(21) Ning Qin.Numerical study on single flowing liquid and supercritical CO2 drop in microchannel.Inventions.2018,3 (2)

(22) Ning Qin.Hydrodynamic shrinkage of liquid CO2 Taylor drops in a straight microchannel.Journal of Physics: Condensed Matter.2018,30

(23) Ning Qin.Highly pressurized partially miscible liquid-liquid flow in a micro T-junction. II. theoretical justifications and modelling.Physical Review E.2017,95

(24) Ning Qin.Highly pressurized partially miscible liquid-liquid flow in a micro T-junction. I. experimental observations.Physical Review E.2017,95

(25) Pei Zhao.Photocatalytic performances of ZnO nanoparticle film and vertically aligned nanorods in chamber-based microfluidic reactors: reaction kinetics and flow effects.Applied Catalysis B: Environmental.2017,209 :468-475

(26) A planar micro-to-mili-photoreactor for photodegradation of organic matters in water.Abstract reviewed for 2016 European Molecular Biology Laboratory Conference: Microfluidics.2016

(27) Application of laser triangulation in piston displacement and PV work measurements of linear compressor in a pulse tube refrigerator.Proceedings of 24th International Cryogenic Engineering Conference.2013

(28) 秦宁.测量线性压缩机活塞位移和 PV 功的新方法.低温工程.2012 (2):5-10

专利
团队成员
团队名称:
山东大学微细流动及传热传质研究课题组 (Lab for Microfluidic Systems and Transport Phenomena)
团队介绍:
课题组网站:http://faculty.sdu.edu.cn/the_Qin_Lab
面向国家重大需求,面向人民生命健康,我们研究团队——微细流动与传热传质课题组,主要致力于以下三方面的研究与教育工作:
(1)研究微小尺度下流体的流动耦合传热传质等过程并揭示其基础机制;
(2)构建基于微流控技术的复合检测技术及装备,通过医工交叉合作研究,推动新型医学检测技术及设备的发展与应用;
(3)基于生物流体相关基础实验与模拟研究,探究一些重大或常见疾病产生与发展的流变力学影响机制,进而服务相关病症的预防及临床诊治。
团队成员:
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