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陳磊

(西南交通大學研究員)

鎖定
陳磊 [1] 西南交通大學機械工程學院,研究員(教授),博士生導師,美國賓夕法尼亞州立大學訪問學者;2021年獲得國家“優青”項目資助。
在Nature Communications等國際期刊發佈學術論文76篇;承擔國家及省部級項目16項,包括國家自然科學基金優秀青年基金和國防973課題等項目;擔任Chin J Mech Eng-en(SCI)和表面技術(EI)期刊編委;SCI期刊Frontiers in Chemistry摩擦化學進展專題(Advances in Tribochemistry)的客座編輯;同時擔任ACS Applied Materials & Interfaces, Friction, Tribology International, Spectrochimica Acta Part A等20個SCI期刊的審稿專家。
中文名
陳磊
國    籍
中國
民    族
漢族
畢業院校
西南交通大學
學位/學歷
博士
職    業
教師
專業方向
微納結構製造、超精密表面加工
主要成就
2021年獲得國家自然科學基金優秀青年基金資助
2019年獲詹天佑鐵道科學技術技術獎-專項獎
2018年獲中國摩擦學年度最佳論文(全國每年一篇)
職    稱
西南交通大學機械工程學院研究員

陳磊人物經歷

2021.01 - 至今 西南交通大學機械工程學院 研究員(教授)
2018.01 - 2020.12 西南交通大學機械工程學院 副研究員(副教授)
2016.11 - 2017.11 美國賓夕法尼亞州立大學 訪問學者
2014.01 - 2017.12 西南交通大學機械設計及理論 講師
2007.09 - 2013.12 西南交通大學機械設計及理論專業 博士學位 [1] 

陳磊科研成就

研究成果已發表學術論文74篇,其中在Nature Communications (IF: 17.694)、PNAS (IF: 11.205)、Nano Lett(IF: 12.262)、Carbon (IF: 11.307,3篇) 等SCI論文67 篇,含封面論文9篇;授權國家發明專利17項。
發表論文被同行學者在PRL、PNAS、ACS Nano等期刊SCI引用1000餘次。有關極限精度加工方面的研究成果被Science官網(AAAS)等國際學術平台進行專題報道,指出該研究“開創了原子精度加工的新方法”,同時被遴選為國家“納米制造的基礎研究”重大研究計劃(總經費1.9億人民幣,含集成項目和重點支持項目等153項)的突破性進展。有關微觀磨損規律與宏觀拋光結合的工藝優化新方法在國產首台高端CMP拋光設備上得到成功應用,極大的推動我國集成電路製造裝備和工藝的國產化進程。 [1] 

陳磊科學項目

承擔國家及省部級項目16項,其中主持國家自然科學基金優秀青年基金、面上項目、青年基金、四川省國際合作重點項目等項目10項,參與國家重大項目等科研項目6項。
一、主持項目
[1] 國家自然科學基金優秀青年基金項目(52122507): (2022.1 - 2024.12) 200萬
[2] 國家自然科學基金面上項目(51875486): (2019.1-2022.12)直接經費 60萬
[3] 國家自然科學基金青年基金項目(51505391):(2016.1-2018.12) 27.8萬
[4]子專題(XXX):(2015.1-2019.12)負責子專題一,承擔經費150萬
[5] 國家自然科學基金(51991373):(2020.1-2024.12)承擔經費100萬
[6] 四川省國際科技創新合作重點項目:(2019.1-2021.12)20萬
[7] 四川省科技計劃項目(2021YFSY0017)(2021.4 -2023.4) 40萬 (校內主持,負責經費20萬)
[8] 中央高校科技創新項目(2682016CX026):(2016.7-2018.6) 10萬 (完成課題)
[9] 國家地方聯合工程實驗室開發基金(201703): (2017.1-2018.12) 10萬
[10] 青年教師百人計劃資助項目(2682014BR016):(2014.6-2016.6)(完成課題)
二、參研項目
[1] 國家自然科學基金面上項目(51775462): (2018.1-2021.12)
[2] 國家自然科學基金面上項目(51375409):(2014.1-2017.12) (完成課題)
[3] 國家自然科學基金綜合管理項目(51445014):(2014.11-2015.1) (完成課題)
[4] 國家傑出青年科學基金(50625515):微/納摩擦學(2007.1-2010.12) (完成課題)
[5] 國家納米制造重大研究計劃追加項目(91323103):(2014.1-2017.12)
[6] 國家自然科學基金面上項目(51175441):(2012.1-2015.12) (完成課題) [2] 

陳磊代表論文

  1. Chuan Tang, Yilong Jiang, Lei Chen*, Junhui Sun, Yangqin Liu, Pengfei Shi, Jose Yesid Aguilar-Hurtado, Andreas Rosenkranz, and Linmao Qian; Layer-Dependent Nanowear of Graphene Oxide[J]. ACS nano, 2023, 17(3): 2497-2505.(SCI收錄,IF:17.1)
  2. Yangqin Liu , Lin Liu , Pengfei Shi , Yang Wang , Linmao Qian , Lei Chen*;Improved wear resistance of CBN tool enabled by hBN as a water-based lubricant additive through suppressing tribochemical reactions[J]. Ceramics International, 2023, 49(11): 17953-17960.(SCI收錄,IF:5.532)
  3. Yangqin Liu, Yilong Jiang, Junhui Sun, Yang Wang, Linmao Qian, Seong H. Kim,* and Lei Chen*; Inverse Relationship between Thickness and Wear of Fluorinated Graphene:"Thinner Is Bertter", Nano Lett, 2022, 22: 6018-6025.(SCI收錄,IF:12.262)
  4. Pengfei Shi, Yangyang Lu, Junhui Sun*, Chuan Tang, Yang Wang, Liang Jiang*, Linmao Qian, Lei Chen*; Towards a deeper understanding of superlubricity on graphite governed by interfacial adhesion, Carbon, 2022, 199: 479-485.(SCI收錄,IF:11.307)
  5. Yuanyuan Jiang, Lei Chen*, Chen Xiao, Shumin Zhang, Chenhui Zhang, Ningning Zhou, Tao Qin Linmao Qian, Jiyang Zhang*; How to improve superlubricity performance of diketone at steel interface: Effects of oxygen gas, Friction, 2022: 1-12.(SCI收錄,IF:6.8)
  6. Wang Xiyu, Tang Chuan, Liu Lin, Wang Yang, Linmao Qian and Lei Chen*;Development of a bending-stress-controllable micro-clamp and applications in nanowear study of polyimide terephthalate[J]. Review of Scientific Instruments, 2022, 93(12).(SCI收錄)
  7. Lei Chen*, Andress Rosenkranz, Lev S. Rapoport and Seong H.Kim; Editorial: Advances in Tribochemistry, Frontiers in Chemistry, 2022, 10.(SCI收錄)
  8. Chunsheng Luo, Yilong Jiang, Yangqin Liu, Yang Wang, Junhui Sun, Linmao Qian and Lei Chen*; Role of Interfacial Bonding in Tribochemical Wear, Frontiers in Chemistry, 2022, 10.(SCI收錄)
  9. Yuanyuan Jiang, Lei Chen*, Chen Xiao, Shumin Zhang, Chenhui Zhang, Ningning Zhou, Tao Qin Linmao Qian, Jiyang Zhang*; How to improve superlubricity performance of diketone at steel interface: Effects of oxygen gas, Friction, 2022: 1-12(SCI收錄).
  10. Boyang Tang, Chuan Tang, Lei Chen*, Chen Xiao, Andreas Rosenkranz*, Linmao Qian; Nanoscopic humidity-dependent adhesion behaviors of 2D materials, Applied Surface Science, 2022, 572: 151394(SCI收錄).
  11. Lei Chen, Jialin Wen, Peng Zhang, Bingjun Yu, Tianbao Ma, Xinchun Lu, Seong H.Kim, Linmao Qian, Nanomanufacturing of silicon surface with a single atomiclayer precision via mechanochemical reactions, Nature Communications, 2018, 9,1542.
  12. Lei Chen*, Zhe Chen*, Xiaoyu Tang, Wenmeng Yan, Linmao Qian*, Seong H. Kim*; Friction at single-layergraphene step edges due to chemical and topographic interactions, Carbon, 2019, 154: 67-73.
  13. Yunhai Liu, Lei Chen*,Bangzheng Jiang, Yangqin Liu, Bin Zhang, Chen Xiao, Junyan Zhang, Linmao Qian*; Origin oflow friction in hydrogenated diamond-like carbon films due to graphenenanoscroll formation depending on sliding mode: Unidirection and reciprocation, Carbon, 2020, 173: 696-704.
  14. Chen Xiao, Jie Li, Jian Guo, Peng Zhang, Bingjun Yu, Lei Chen*, Linmao Qian; Role ofmechanically-driven distorted microstructure in mechanochemical removal ofsilicon, Applied Surface Science, 2020, 520: 146337.
  15. Lei Chen, Linmao Qian*; Role of interfacial water in adhesion, friction, and wear—A critical review, Friction 2021, 9(1): 1-28.
  16. Yunhai Liu, Yilong Jiang, Junhui Sun, Lei Wang, Yangqin Liu, Lei Chen*, Bin Zhang*, Linmao Qian; Durablesuperlubricity of hydrogenated diamond-like carbon film against differentfriction pairs depending on their interfacial interaction, Applied Surface Science, 2021, 560: 150023.
  17. Jian Gong, Jian Gao, Chen Xiao*, Lei Chen*, Linmao Qian; Mechanochemical reactions of GaN-Al2O3 interfaceat nanoasperity contact: the roles of crystallographic polarity and ambienthumidity, Friction, 2021.
  18. Yuanyuan Jiang, Chen Xiao*, Lei Chen*, Chenhui Zhang, Ningning Zhou, Linmao Qian, Jianbin Luo, Jinjin Li; Temporary orpermanent liquid superlubricity failure depending on shear-induced evolution ofsurface topography, Tribology International, 2021, 161: 107076.
  19. Yuanyuan Jiang, Lei Chen*, Chen Xiao, Ningning Zhou, Tao Qing, Linmao Qian; Friction and wear behaviors ofsteel ball against polyimide-PTFE composite under rolling-sliding motion, Tribology Letters, 2021, 69(3): 1-12.
  20. Yunhai Liu, Lei Chen*, Bangzheng Jiang, Yangqin Liu, Bin Zhang, Chen Xiao, Junyan Zhang, Linmao Qian*; Origin of low friction in hydrogenated diamond-like carbon films due tographene nanoscroll formation depending on sliding mode: Unidirection andreciprocation, Carbon, 2020, 173: 696-704.
  21. Jie Guo, Jian Gong, Pengfei Shi, Chen Xiao, Liang Jiang, Lei Chen*, Linmao Qian; Study on thepolishing mechanism of pH-dependent tribochemical removal in CMP of CaF2 crystal, Tribology International, 2020, 150: 106370.
  22. Chen Xiao, Chao Chen, Yangyang Yao,Hongshen Liu, Lei Chen*, Linmao Qian*, Seong Han Kim; Nanoasperityadhesion of the silicon surface in humid air: the roles of surface chemistryand oxidized layer structures, Langmuir, 2020, 36: 5483-5491.
  23. Pengfei Shi, Junhui Sun, Yunhai Liu, Bin Zhang, Junyan Zhang, Lei Chen*, Linmao Qian*; Running-in behavior of a H‒DLC/Al2O3 pair at the nanoscale, Friction, 2020, 9(6): 1464-1473.
  24. Pengfei Shi, Huikang Liang,Wenmeng Yan, Junhui Sun, Lei Chen*, Linmao Qian; Development of a symmetricalmicro-beam minimizing horizontal drift for indentation and scratch, Review ofScientific Instruments, 2020, 91: 043702.
  25. Pengfei Shi, Junhui Sun,Wenmeng Yan, Ningning Zhou, Junyan Zhang, Jiyang Zhang, Lei Chen*, Linmao Qian*; Roles of phase transition and surface property evolution innanotribological behaviors of H-DLC: Effects of thermal and UV irradiationtreatments, Applied Surface Science, 2020, 514:145960.
  26. Jian Guo, Jian Gao, Chen Xiao*, Lei Chen*, Linmao Qian; Mechanochemical reactions of GaN-Al2O3 interfaceat the nanoasperity contact: Roles of crystallographic polarity and ambienthumidity, Friction, 2020, doi.org/10.1007/s40544-021-0501-9.
  27. Lei Chen, Ngo Dien, Jiawei Luo, Yunfei Gong, Chen Xiao, Xin He, Bingjun Yu, Linmao Qian, Seong H. Kim; Dependence of water adsorption on the surface structure of silicon wafers agedunder different environmental conditions, Physical Chemistry Chemical Physics, 2019, 21(47): 26041-26048.
  28. Chen Xiao; Jingjing Li; Lei Chen*; Linmao Qian; Water-based superlubricity in vacuum, Friction, 2019, 7(2):192-198.
  29. Chen Xiao, Pengfei Shi, Wenmeng Yan, LeiChen*, Linmao Qian, Seong H. Kim; Thickness and structure ofadsorbed water layer and effects on adhesion and friction at nanoasperitycontact, Colloids Interfaces, 2019, 3(3), 55.
  30. Zhaohui Liu, Jian Gong, Chen Xiao, Pengfei Shi, Seong Han Kim, Lei Chen*, Linmao Qian*; Temperature-dependent mechanochemical wear of silicon in water: therole of Si-OH surfacial groups, Langmuir, 2019, 35, 7735-7743.
  31. Yunhai Liu, Lei Chen*, Bin Zhang*, Zhongyue Cao, Pengfei Shi, Yong Peng, Ningning Zhou, Junyan Zhang, Linmao Qian; Key role of transfer layer in load dependence of friction onhydrogenated diamond-Like carbon films in humid air and vacuum, Materials, 2019, 12, 1550.
  32. Menmeng Yan, Jian Guo, BinjunYu, Lei Chen*,Linmao Qian; Self-lubrication of Si/SiO2 interface achievedthrough running-in at low sliding speed, Wear, 2019, 426–427, 828–834.
  33. Jian Gong, Chen Xiao, JiaxinYu, Jinfang Peng, Bingjun Yu, Lei Chen*, Linmao Qian; Stress-enhanced dissolution and delamination wear of crystal CaF2 in watercondition, Wear, 2019, 418-419, 86-93.
  34. Yunhai Liu, Bin Zhang, Lei Chen*, Zhongyue Gao, Pengfei Shi, Jinwei Liu, Junyan Zhang, Linmao Qian; Perspectives of thefriction mechanism of hydrogenated diamond-Like carbon film in air by varyingsliding velocity, Coatings, 2018, 8, 331.
  35. Lei Chen, Jialin Wen, Peng Zhang,Bingjun Yu, Tianbao Ma, Xinchun Lu, Seong H. Kim, Linmao Qian; Nanomanufacturing of silicon surface with a single atomic layer precision via mechanochemical reactions, Nature Communications, 2018, 9, 1542.
  36. Lei Chen, Xin He, Hongshen Liu, Linmao Qian, Seong H. Kim; Water adsorption on hydrophilic and hydrophobicsurface of silicon, The Journal of Physical Chemistry C, 2018, 122, 11385-11391.
  37. Lei Chen, Chen Xiao, Bingjun Yu,Seong H. Kim, Linmao Qian; What governs friction of silicon oxide in humidenvironment-contact area between solids, water meniscus around the contact, orwater layer structure? Langmuir, 2017, 33 (38), 9673-9679.
  38. Lei Chen, Yaqiong Qi, Bingjun Yu, Linmao Qian; Sliding speed-dependent tribochemical wear of oxide-freesilicon, Nanoscale Research Letters, 2017, 12, 7.
  39. Lei Chen, Xiao Chen, Xin He, Bingjun Yu, Seong H. Kim, Linmao Qian; Friction and tribochemical wearbehaviors of native oxide layer on silicon at nanoscale, Tribology Letters, 2017, 65, 139.
  40. Lei Chen, Luocheng Hu, Chen Xiao,Yaqiong Qi, Bingjun Yu, Linmao Qian; Effect of crystallographic orientation on mechanical removal of CaF2, Wear, 2017, 376, 409-416.
  41. Yaqiong Qi, Lei Chen*, Shulan Jiang, Jiaxin Yu, Bingjun Yu, Linmao Qian; Investigation of siliconwear against non-porous and micro-porous SiO2 spheres in waterand in humid air, RSC advance, 2016, 6, 89627-89634.
  42. Jing Xia, Jing Zheng, Diaodiao Huang, Z. Ryan Tian, Lei Chen, Zhongrong Zhou, Peter S. Unger, Linmao Qian*; A new model to explain tooth wear with implications formicrowear formation and diet reconstruction, Proceedings of the NationalAcademy of Sciences of the United States of America, 2015, 112(4), 10669-10672.
  43. Lei Chen, Hongtu He, Xiaodong Wang, Seong H. Kim*, Linmao Qian*; Tribology of Si/SiO2 in humid air: transition from severe chemical wear to wearless behavior at nanoscale, Langmuir, 2015, 31(1), 149-156.
  44. Lei Chen, Yajun Yang, Hongtu He, Seong H. Kim, Linmao Qian*; Effect of coadsorption of water and alcohol vaporon the nanowear of silicon, Wear, 2015, 332-333, 879-884 .
  45. Lei Chen, Mingchu Yang, Chenfei Song, Bingjun Yu, Linmao Qian*; Is 2 nm DLC coating enough to resist thenanowear of silicon, Wear, 2013, 302(1-2): 909-917.
  46. Lei Chen, Seong H. Kim, Xiaodong Wang, Linmao Qian*; Running-in process of Si-SiOx /SiO2 pair atnanoscale-Sharp drops in friction and wear rate during initial cycles, Friction1(1), 2013, 81-91.
  47. Lei Chen, Mingchu Yang, Jiaxin Yu, Linmao Qian*, Zhongrong Zhou; Nanofretting behaviours of ultrathin DLC coating on Si(100) substrate, Wear, 2011, 271, 1980-1986. [3] 

陳磊獲得榮譽

[1] 2021年 國家自然科學基金優秀青年基金
[2] 2019年 詹天佑鐵道科學技術技術獎-專項獎
[3] 2019年 西南交通大學“雛鷹學者”
[4] 2018年 中國摩擦學年度最佳論文獎(年度唯一)
[5] 2018年 西南交通大學“青苗計劃”
[6] 2017年 “Wear of Materials”國際會議最佳poster獎(排名第5)
[7] 2017年 全國青年摩擦學大會優秀會議論文獎
[8] 2017年 中國摩擦學年度最佳論文獎(每年1篇,排名第5)
[9] 2015年 西南交通大學優秀博士論文
[10] 2015年 “IFToMM World Congress”國際會議最佳研究論文獎(The Best Research Paper)(排名第2) [4]  [7] 

陳磊教學信息

陳磊研究生教學

指導博士研究生7名、碩士研究生18名 [6]  ,指導研究生分別獲 “Wear of Materials”國家會議最佳poster獎(2017),中國摩擦學年度最佳論文獎(2017),全國青年摩擦學大會優秀會議論文獎(2017), “IFToMM World Congress”國際會議最佳研究論文獎(2015) [7] 

陳磊招生信息

每年主要招收機械(材料、化學等)方向的研究生,要求學生具有一定的機械設計(材料、化學等專業)基礎、動手能力以及良好的英文讀寫表達能力,研究生在讀期間將需學習掌握實驗裝置設計及搭建、實驗分析測試、有限元分析等方面的技能。 [5]  [8] 
參考資料