教师简介

杜慕,副研究员,硕士生导师,本硕博毕业于西安交通大学能源与动力工程学院,加州大学洛杉矶分校(UCLA)联合培养博士,研究方向为:微纳米尺度流动与传热,基于大模型(LLM)的材料开发及热设计,包括在电子器件热管理、气凝胶超级隔热材料、太阳能高效利用、建筑节能、辐射制冷等领域的应用。在PNAS(美国科学院院刊)、Device(Cell子刊)、Applied Energy、Energy等顶级期刊发表SCI论文70余篇(第一/通讯40余篇,中科院一区/Top期刊20余篇,ESI高被引1篇,“封面论文”2篇),受邀在亚洲计算传热学等国内外学术会议做特邀报告4次,授权发明专利6项,主持中国博士后科学基金特别资助项目,广东省自然科学基金面上及青年项目,山东省自然科学基金面上及青年项目,热流科学与工程教育部重点实验室开放基金及校企合作课题多项,任期刊《Frontiers in Heat and Mass Transfer》编委,《Gels》《Soft Science》《Energy Storage and Saving》青年编委和客座编委及多个国内高水平学术期刊审稿人。



指导学生获第八届中国国际“互联网+”大学生创新创业大赛全国银奖、山东省金奖,山东省大学生节能减排大赛一等奖等奖项;近年来,指导本科生以第一作者发表SCI论文5篇,申请发明专利2项(1项已授权),参加国内外学术会议3人次


欢迎加入我们

本科生科研训练: 无论你是想参加高水平学科竞赛、早早体验发论文/申专利的成就感,还是单纯对AI大模型(viber coding、AI-agent)、散热黑科技感兴趣,都非常欢迎你随时进组,我会手把手带你入门。

研究生招生: 团队每年拟招收硕士研究生 1~2 名,每位同学都能获得充足的经费支持与指导时间。无论你是计划深造冲刺顶刊,还是期望掌握热设计orAI技术助力就业,团队都能为你提供最优质的平台与资源。



欢迎对热流科学、新材料研发及AI交叉领域感兴趣的同学随时通过邮件与我联系交流:dumu@sdu.edu.cn。期待你的加入!


researchgate: https://www.researchgate.net/profile/Mu-Du-6?ev=hdr_xprf

google scholar: https://scholar.google.com/citations?user=JqWCk60AAAAJ&hl=zh-CN


教育经历
  • 2017-01 — 2018-01
    加州大学洛杉矶分校
    机械及宇航工程
    联合培养博士
  • 2008-09 — 2012-06
    西安交通大学
    能源动力系统及自动化
    学士
  • 2012-09 — 2013-06
    西安交通大学
    工程热物理
    硕士
  • 2013-09 — 2019-12
    西安交通大学
    动力工程及工程热物理
    博士
工作经历
  • 2023-06 — 至今
     山东大学 
    副研究员
  • 2020-03 — 2023-06
     山东大学 
    博士后
研究概况

团队长期深耕于微纳米尺度流动与传热领域,致力于将最基础的工程热物理规律与前沿的人工智能(AI)、新材料技术相交叉,解决从空天极端环境到日常消费电子中的核心热力学难题。团队与行业头部高校、科研院所及企业保持着紧密的产学研合作。

研究方向
论文成果

(1) 赵洋.Unveiling the role of chemical composition in dust-induced degradation of radiative cooling surfaces.2026,256

(2) 要鹏.Dynamically tunable silica hydrogel windows enabled by hydration state control for enhanced building energy efficiency.Applied thermal engineering.2025,280

(3) 赵洋.Impact of dust composition on parabolic trough concentrator performance across diverse regions.Solar Energy.2025,300

(4) 黄茂荃.Quantifying the effects of dust characteristics on the performance of radiative cooling PV systems.Applied energy.2025,377

(5) 杨慧琳.Precision Solar Spectrum Filtering in Aerogel Windows via Synergistic ITO-Ag Nanoparticle Doping for Hot-Climate Energy Efficiency.GELS.2025,11 (7)

(6) 于海燕.Fractal-Based Thermal Conductivity Prediction Modeling for Closed Mesoporous Polymer Gels.GELS.2025,11 (6)

(7) 濮金欢.The novel stereoscopic cooling plate designs and performance analysis for battery thermal management systems.Applied thermal engineering.2024,257

(8) 李宇霖.Nanoporous MOF-303 Performance for Atmospheric Water Harvesting in the Presence of Airborne Contaminants: GCMC and DFT Simulations.ACS Applied Nano Materials.2024

(9) Hu, Haowei.Droplet Self-Driven Characteristics on Wedge-Shaped Surface with Composite Gradients: A Molecular Dynamics Study.Frontiers in Heat and Mass Transfer.2024,22 (4):1071-1085

(10) 黄茂荃.Feasibility of realizing photothermal, photovoltaic, and radiative cooling with a flexible structure.Renewable Energy.2024,236

(11) 黄茂荃.The potential of radiative cooling enhanced photovoltaic systems in China.Advances in Applied Energy.2024,15

(12) Effect of Strain Rate on the Structure Properties of Silica Aerogel.Heat Transfer Engineering.2024

(13) 黄嘉臣.Scalable self-adaptive radiative cooling film through VO2-based switchable core–shell particles.Renewable Energy.2024,224

(14) 要鹏.Transparent photothermal films with high optical selectivity for anti/de-icing.Applied thermal engineering.2024,242

(15) 杜慕.Effects of Moisture Content on the Radiative Properties and Energy-Saving Performance of Silica Aerogel Windows.LANGMUIR.2024,40 (38):20273-20283

(16) 黄茂荃.Toward improved optical transparency of silica nanofibrous aerogels.Solar Energy Materials and Solar Cells.2024,276

(17) Dynamic aerogel window with switchable solar transmittance and low haze.Energy.2023,285

(18) 李宇霖.Nanoporous MOF-303 Performance for Atmospheric Water Harvesting in the Presence of Airborne Contaminants: GCMC and DFT Simulations.ACS APPLIED NANO MATERIALS.2024 (7)

(19) 濮金欢.The novel stereoscopic cooling plate designs and performance analysis for battery thermal management systems.Applied thermal engineering.2024 (257)

(20) 杨睿.Droplet effect on the infrared transmittance of radiative cooler for direct water condensation.Solar Energy Materials and Solar Cells.2022 (238)

(21) 黄茂荃.Plasmonic aerogel window with structural coloration for energy-efficient and sustainable building envelopes.Renewable Energy.2023 (216)

(22) 于西雨.Toward optical selectivity aerogels by plasmonic nanoparticles doping.Renewable Energy.2022 (190):741

(23) 黄茂荃.All-day effective radiative cooling by optically selective and thermally insulating mesoporous materials.Solar Energy.2022 (235):170

(24) Extraordinary thermoelectric performance in 2D group III monolayer XP3 (X = Al, Ga, and In).Journal of Physics D: Applied Physics.2021,54 (43)

(25) First-principles calculations of phonon behaviors in graphether: a comparative study with graphene.Phys. Chem. Chem. Phys。.2021,23 (1)

(26) Structure Design of Polymer-Based Films for Passive Daytime Radiative Cooling.micromachine.2022,13 (12)

(27) Zhou, Rifeng.Heat Transfer Performance of Gel Foam Layer with Nanoparticles Doping under a Radiative Heat Flux.micromachine.2022,13 (12)

(28) 于西雨.Plasmon silica aerogel for improving high-temperature solar thermal conversion.Applied thermal engineering.2023,219

(29) 黄茂荃.Effects of microstructure and moisture content on the radiative properties of porous films for radiative cooling.Solar Energy.2023,262

(30) Radiative properties of non-spherical opacifiers doped in silica aerogels for high-temperature thermal insulation.THERMAL SCIENCE AND ENGINEERING PROGRESS.2023,43

(31) Numerical study on the effect of thermal pad on enhancing interfacial heat transfer considering thermal contact resistance.Case Studies in Thermal Engineering.2023,49

(32) 王曼.Improved thermal-hydraulic performance of a microchannel with hierarchical honeycomb porous ribs.Canadian Journal of Chemical Engineering.2023,101 (2):1083

(33) 于西雨.A high thermal stability core-shell aerogel structure for high-temperature solar thermal conversion.Composites Communications.2023,37

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