劉晨晗

劉晨晗

劉晨晗,南京師範大學能源與機械工程學院副教授。

劉晨晗於2012年從東南大學畢業;2019年獲得東南大學博士學位;2016年至2018年在美國加州大學伯克利分校聯合培養;2019年至2020年擔任華為技術有限公司熱設計工程部高級工程師;2020年擔任南京師範大學能源與機械工程學院教師。

劉晨晗的研究方向為:晶片散熱、智慧型熱管理、新型固體製冷。

基本介紹

  • 中文名:劉晨晗
  • 畢業院校:東南大學
  • 職業:教育科研工作者
  • 性別:男
人物經歷,主要成就,科研成就,人才培養,榮譽表彰,

人物經歷

2008年9月—2012年6月,東南大學機械工程本科。
2012年9月—2019年7月,東南大學微納尺度傳熱博士。
2016年10月—2018年11月,加州大學伯克利分校熱傳導聯合培養博士。
2019年7月—2020年7月,華為技術有限公司熱設計工程部高級工程師。
2020年7月,南京師範大學能源與機械工程學院教師。
2021年1月,南京大學物理學院在職博士後。

主要成就

科研成就

  • 發表論文
[38] G Sun, J Ma,C Liu, Z Xiang, D Xu, TH Liu and X Luo, “Four-phonon and normal scattering in 2D hexagonal structures”,International Journal of Heat and Mass Transfer215, 124475 (2023)
[37] S. Yuan, Z. Chen,C. Liuet al., “Hexagonal close-packed polar-skyrmion lattice in ultrathin ferroelectric PbTiO3 films”,Physical Review Letters130 (22), 226801 (2023)
[36] C Wu,C Liu*, Y Tao and Y Chen, “Effects of magnetic ordering on structural stability and phonon transport in monolayer Td-VX2 (X= Se, I)”Physics Letters A469, 128746 (2023)
[35] C. Wu andC. Liu*, “Lattice thermal conductivity switching via structural phase transition in ferromagnetic VI3”Chinese Physics B32 (5), 056502 (2023)
[34] C. Wu, Y. Zhao, G. Zhang andC. Liu*, “A Giant Thermal Switching in Ferromagnetic VSe2 with Programmable Switching Temperature”,Nanoscale Horizons8 (2), 202-210(2023)
[33]C. Liu, Z. Chen, C. Wu, J. Qi, M. Hao, P. Lu and Y. Chen, “Giant thermal conductivity switching in ferroelectrics by electric field triggered crystal symmetry engineering”,ACS Applied Materials & Interfaces14 (41), 46716-46725 (2022)
[32] Y. Si, T. Zhang, Z. Chen, Q. Zhang, S. Xu, T. Lin, H. Huang, C. Zhou, S. Chen, S. Liu, Y. Dong,C. Liu, Y. Tang, Y. Lu, K. Jin, E. Guo and X. Lin, “Phase competition in high-quality epitaxial antiferroelectric PbZrO3 thin films”,ACS Applied Materials & Interfaces14 (45), 51096-51104 (2022)
[31]C. Liu*, C. Wu, T. Song, Y. Zhao, J. Yang, P. Lu, G. Zhang and Y. Chen, “A new strategy for searching high lattice thermal conductivity materials”,ACS Applied Energy Materials5 (12), 15356-15364 (2022)
[30]C. Liu* and Y. Chen, “Active and switchable thermal control”,SCIENCE CHINA Physics, Mechanics & Astronomy65 (11), 117009 (2022)
[29] J. Ma, J. Xu,C. Liu, Q. Yi, M. Zheng, L. Cheng and T. Song, “Chemical looping combustion of sulfur paste to SO2 by phosphogypsum oxygen carrier for sulfur acid production”,Fuel323, 124386 (2022)
[28] J. Qi, G. Sheng,C. Liu*, Y. Wang, H. Xu, P. Lu and X. Peng, “Atomistic modeling of oxide-carbide growth on FeCr alloy surface in high-temperature CO2”,Corrosion Science204, 110391 (2022)
[27]C. Liu, P. Lu, D. Li, Y. Zhao and M. Hao, “Non-monotonic thickness dependent and anisotropic in-plane thermal transport in layered titanium trisulphide”,Materials Today Nano17, 100165 (2022)
[26]C. Liu*, W. Chao, P. Lu and Y. Zhao, “Non-Monotonic Thickness Dependent Hydrodynamic Phonon Transport in Layered Titanium Trisulphide: First-Principles Calculation and Improved Callaway Model Fitting”,ES Energy & Environment14, 34-42 (2021)
[25]C. Liu*, P. Lu, W. Chen, Y. Zhao and Y. Chen, “Phonon transport in graphene based materials”,Phys. Chem. Chem. Phys.23, 26030-26060 (2021)封面文章
[24]C. Liu*, Z. Gu, P. Lu and Y. Chen, “Bi-directional tuning of thermal conductivity in ferroelectric materials by using E-controlled hysteresis characteristic property”,J. Phys. Chem. C124, 26144-26152(2020)
[23]C. Liu*, Z. Gu, P. Lu and Y. Chen, “The effects of contact atom distribution at the interface on the phonon transport”,Phys. Chem. Chem. Phys.47, 22 27690-27697 (2020)
[22]C. Liu*, Q. Fu, Z. Gu and P. Lu, “The reservoir area dependent thermal transport at nanoscale interface”,Phys. Chem. Chem. Phys.22, 22016(2020)
[21] X. Zhang+,C. Liu+, Y. Tao, H. Li, Y. Chen and J. Wang, “Strong Interlayer-related Vibration and Complete Band-extrema Alignment in KAgSe Nanosheets: New Insights into Achieving Nanoscale High-efficient Thermoelectric Materials”,Adv. Funct. Mater. 30, 2001200(2020)
[20]C. Liu*, W. Si, C. Wu, Y. Chen and C. Dames, “The Ignored Effects of Vibrational Entropy and Electrocaloric Effect in PbTiO 3 and PbZr 0.5Ti 0.5O 3 as Studied Through First-Principles Calculation”,Acta Mater.191, 221(2020)
[19]C. Liu,V. Mishra, Y. Chen and C. Dames, “Electric-Field-Controlled Thermal Switch in Ferroelectric Materials Using First-Principles Calculations and Domain-Wall Engineering”,Phys. Rev. Appl.11, 044002 (2019)
[18] W. Si,C. Liu, J. Sha, Y. Zhang and Y. Chen, “Computational modeling of ionic currents through difform graphene nanopores with consistent cross-sectional areas”,Phys. Chem. Chem. Phys.21 (47), 26166-26174(2019)
[17] Y. Zhao, L. Yang,C. Liu, Q. Zhang, Y. Chen, J. Yang and D. Li, “Kink effects on thermal transport in silicon nanowires”,Int. J. Heat Mass Transf.137, 573-578 (2019)
[16]C. Liu,V. Mishra, Y. Chen and C. Dames, “Large Thermal Conductivity Switch Ratio in Barium Titanate Under Electric Field through First-Principles Calculation”,Adv. Theory Simul.1, 1800098 (2018)
[15]C. Liu,W. Chen, Y. Tao, J. Yang and Y. Chen, “Transient and steady state heat transport in layered materials from molecular dynamics simulation”,Int. J. Heat Mass Transf.121, 72-78 (2018)
[14] Q. Zhang+,C. Liu+, X. Liu+, J. Liu+, Z. Cui, Y. Zhang, L. Yang, Y. Zhao, T. T. Xu, Y. Chen, J. Wei, Z. Mao and D. Li, “Thermal Transport in Quasi-1D van der Waals Crystal Ta2Pd3Se8 Nanowires: Size and Length Dependence”,ACS Nano12, 2634-2642 (2018)
[13]C. Liu,V. Mishra, Y. Chen and C. Dames, “Large thermal conductivity switch ratio in ferroelectric materials under electric field through first-principles calculation”, Bulletin of the American Physical Society, March 6-10, 2018, Los Angeles, USA
[12] L. Yang, Y. Tao, J.Y. Liu,C. Liu, Q. Zhang, M. Akter, Y. Zhao, T. Xu, Y. Xu, Z.Q. Mao, Y. Chen and D. Li. “Distinct Signatures of Electron-Phonon Coupling Observed in the Lattice Thermal Conductivity of NbSe3 Nanowires”,Nano Lett.2018,19,415-421(2018)
[11] Y. Tao+,C. Liu+, W. Chen, S. Cai, C. Chen, Z. Wei, K. Bi, J. Yang and Y. Chen, “Mean free path dependent phonon contributions to interfacial thermal conductance”,Phys. Lett. A381, 1899-1904 (2017)
[10] C. Zhang, W. Chen, Tao Y, W. Zhao, S. Cai S,C. Liu, Z. Ni, D. Xu, Z. Wei, J. Yang, K. Bi and Y. Chen, “Electron Contributions to the Heat Conduction across Au/Graphene/Au Interfaces“,Carbon, 115: 665-671(2017).
[9] W. Chen, J. Yang, Z. Wei,C. Liu, K. Bi and Y. Chen, “Axial Tensile Strain Effects on the Contact Thermal Conductance between Cross Contacted Single-Walled Carbon Nanotubes”J. Appl. Phys.121(5): 054310(2017)
[8]C. Liu,Z. Wei, W. Chen, K. Bi, J. Yang and Y. Chen,“Pressure effects on the thermal resistance of few-layer graphene”,Phys. Lett. A380, 248-254 (2016)
[7]劉晨晗,董贇,陳偉宇,陶毅,蔡爽,魏志勇,畢可東,楊決寬,陳雲飛“多層石墨烯納米帶的法向熱傳導”,東南大學學報46,987(2016)
[6]C. Liu,Z. Wei, J. Wang, K. Bi, J. Yang and Y. Chen, “The contact area dependent interfacial thermal conductance”,AIP Adv.5, 127111 (2015)
[5] W. Chen, J. Yang, Z. Wei,C. Liu, K. Bi, D. Xu, D. Li and Y. Chen, “Effects of Interfacial Roughness on Phonon Transport in Bilayer Silicon Thin Films”,Phys. Rev. B, 92(13): 134113(2015)
[4] J. Wang, L. Guo,C. Liu, X. Xu and Y. Chen, “Influence of Coherent Optical Phonon on Ultrafast Energy Relaxation”,Appl. Phys. Lett.07(6): 063107(2015)
[3]C. Liu,Z. Wei, W. Chen, J. Yang and Y. Chen, “The Modulation of Interfacial Thermal Resistance in Graphite”, Proceedings of the ASME 2014 International Mechanical Engineering Congress and Exposition, IMECE2014, November 14-20, 2014, Montreal, Canada
[2]C. Liu,Z. Wei, W. Chen, J. Yang and Y. Chen, “The modulation of Kapitza resistance in graphite”, The 2nd International Conference on Phonons and Thermal Energy Science, 26-31 May, 2014, Shanghai, China
[1]C. Liu,J. Wang, W. Chen, Z. Wei, J. Yang and Y. Chen, “Interfacial thermal conductance between carbon nanotubes from nonequilibrium Green’s function method”, Proceedings of the ASME 2013 4th Micro/Nanoscale Heat&Mass Transfer International Conference, MNHMT2013, December 11-14, 2013, Hong Kong, China
  • 科研項目
16、國家自然科學基金青年項目2023.01-2025.12負責30萬
15、江蘇省雙碳專項-基礎前沿項目2022.08-2025.07參與(骨幹成員)300萬
14、江蘇省自然科學基金青年項目2021.07-2024.06負責20萬
13、江蘇省重點實驗室開放課題2021.01-2022.12負責2萬
12、江蘇省雙創博士基金2021.11-2023.10負責15萬
11、南京市留學人員科技創新項目2021.11-2023.10負責3萬
10、江蘇省教育廳面上項目2021.11-2023.10負責5萬
9、南京師範大學啟動基金2021.1.1-2023.12.31負責16萬
8、鐵電材料及熱管理(高水平大學國家公派研究生項目)2016.10-2018.11負責38萬 國家留學基金委
7、層狀材料各向熱屬性及其界面熱阻的建模和研究2015.09-2017.08負責2萬 東南大學優秀博士項目
6、層狀材料界面熱阻的研究和調製2015.05-2017.05負責3萬 江蘇省教育廳
5、金屬納米薄膜的非傅立葉導熱機制及其對界面傳熱的影響2019.1-2022.12參加60萬 國家自然基金委
4、熱傳導和熱輻射的動態調製:超高開關比熱三極體2018.1-2021.12參加64萬 國家自然基金委
3、基於聲子和電子耗散的多層石墨烯摩擦機理研究2017.1-2020.12參加80萬 國家自然基金委
2、原子/分子接觸的熱電轉換效率及其輸運性質的研究2015.1-2018.12參加80萬 國家自然基金委
1、基於金屬半導體超晶格熱離子發射製冷器微尺度熱輸運問題的理論和試驗研究2015.1-2017.12參加25萬 國家自然基金委

人才培養

  • 開設課程
2021年,開設《能源領域中的機器學習基礎及套用》人工智慧課程
  • 指導學生
2022年江蘇省工程熱物理學會第十五屆學術會議優秀論文獎(指導教師)
2022年第十五屆大學生節能減排大賽全國三等獎(指導教師)
2022年第二屆江蘇省大學生節能減排大賽二等獎2項(指導教師)
2022年南京師範大學大學生節能減排大賽一、三等獎各1項(指導教師)
2021年江蘇省節能減排大賽二等獎(指導教師)

榮譽表彰

2022年美國化學學會優秀審稿人
2022年江蘇省“科技副總”
2022年南京師範大學優秀教師
2021年南京師範大學本科優秀教學二等獎
2021年被國際科研組織Vebleo評為fellow(會士)
2021年江蘇省雙創博士
2021年全國第六屆研討會最佳牆報獎
2019年東南大學優秀博士學位論文

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