当前位置: X-MOL首页全球导师 国内导师 › 孙立东

个人简介

孙立东,重庆大学材料科学与工程学院教授、博士生导师。新加坡南洋理工大学博士,新加坡国立大学博士后;重庆市“百名海外高层次人才集聚计划”特聘专家,重庆英才青年拔尖人才。担任Nano Materials Science编委,Surface and Coatings Technology、Thin Solid Films等SCI期刊客座编辑;多次担任国际薄膜与涂层会议、国际先进材料加工与制造会议分会主席。主要研究领域为跨尺度金属管/微通道表面改性与功能化应用。在相关领域发表论文57篇,包括Nature Nanotechnology、Energy & Environmental Science、Advanced Materials等,相关研究入选《2018中国科学家与Cell Press》特刊。获得Publons Peer Review Awards 2018(材料科学全球前1%),Applied Surface Science等SCI期刊杰出审稿人奖。作为项目负责人,承担国家重点研发计划“科技助力经济2020”重点专项、国家自然科学基金面上项目&青年项目、重庆市自然科学基金项目等。

研究领域

主要研究方向为跨尺度金属管/微通道表面改性与功能化应用,具体如下: 1. 金属管基体表面改性与浸润性理论,面向管道减阻、增强换热、管式能源器件等应用; 2. 金属微通道表面改性,面向油水分离、太阳能水蒸发等应用; 3. 纳米管阵列表面改性,面向新型能量转化与存储器件等应用。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

57. L. Xia, T. Long, W. Li, F. Zhong, M. Ding*, Y. Long, Z. Xu, Y. Lei, Y. Guan, D. Yuan, Y. Zhang, C. Jia*, L. Sun*, Q. Sun*, Highly stable vanadium redox-flow battery assisted by redox-mediated catalysis, Small, 2003321, 2020. (IF: 11.459) 56. J. Ye, X. Zhao, Y. Ma, J. Su, C. Xiang, K. Zhao, M. Ding*, C. Jia*, L. Sun*, Hybrid membranes dispersed with superhydrophilic TiO2 nanotubes toward ultra-stable and high-performance vanadium redox flow batteries, Adv. Energy Mater. 10, 1904041, 2020. (IF: 25.245) 55. X. Zhao, K. Zhao, J. Su, L. Sun*, TiO2/CuS core-shell nanorod arrays with aging-induced photoelectric conversion enhancement effect, Electrochem. Commun. 111, 106648, 2020. 54. Y. Zhao, K. Zhao, J. Yin, J. Yang, J. Xu, Y. Gu, L. Liu, J. Luo, Y. Li*, L. Sun*, A nanopump for low-temperature and efficient solar water evaporation, J. Mater. Chem. A 7, 24311-24319, 2019. (IF: 11.301) 53. X. Tang, Y. Bian, Z. Liu, J. Du*, M. Li*, Z. Hu, J. Yang, W. Chen, L. Sun*, Room-temperature up-conversion random lasing from CsPbBr3 quantum dots with TiO2 nanotubes, Opt. Lett. 44, 4706-4709, 2019. 52. J. Sun, Z. D. Hood, S. Wu, P. Wan, L. Sun, S. Yang, M. F. Chisholm, Reversibly tuning the surface state of Ag via the assistance of photocatalysis in Ag/BiOCl, Nanotechnology 30, 305601, 2019. 51. Y. Sun*, H. Wang, Q. Xing, W. Cui, J. Li, S. Wu, L. Sun*, The pivotal effects of oxygen vacancy on Bi2MoO6: Promoted visible light photocatalytic activity and reaction mechanism, Chin. J. Catal. 40, 647-655, 2019. 50. Q. J. Le, M. Huang, T. Wang, X. Y. Liu, L. Sun, X. L. Guo, D. B. Jiang, J. Wang, F. Dong, Y. X. Zhang, Biotemplate derived three dimensional nitrogen doped graphene@MnO2 as bifunctional material for supercapacitor and oxygen reduction reaction catalyst, J. Colloid Interface Sci. 544, 155-163, 2019. 49. X. Zhao, Y. Jin, C. Xiang, J. Jin, M. Ding, S. Wu, C. Jia*, L. Sun*, Conformal filling of TiO2 nanotubes with dense MxSy films for 3D heterojunctions: The anion effect, ChemElectroChem 6, 1177-1182, 2019. 48. C. Xiang, X. Zhao, L. Tan, J. Ye, S. Wu, S. Zhang*, L. Sun*, A solar tube: Efficiently converting sunlight into electricity and heat, Nano Energy 55, 269-276, 2019. (IF: 16.602) 47. J. Ye, Y. Cheng, L. Sun, M. Ding, C. Wu, D. Yuan, X. Zhao, C. Xiang, C. Jia, A green SPEEK/lignin composite membrane with high ion selectivity for vanadium redox flow battery, J. Membr. Sci. 572, 110-118, 2019. (ESI highly cited paper) 46. Y. Sun*, J. Liao, F. Dong, S. Wu, L. Sun*, A Bi/BiOI/(BiO)2CO3 heterostructure for enhanced photocatalytic NO removal under visible light, Chin. J. Catal. 40, 362-370, 2019. 45. C. Xiang, L. Sun*, General way to compute the intrinsic contact angle at tubes, J. Phys. Chem. C 122, 29210-29219, 2018. 44. J. Ye, X. Lou, C. Wu, S. Wu, M. Ding*, L. Sun*, C. Jia, Ion selectivity and stability enhancement of SPEEK/Lignin membrane for vanadium redox flow battery: The degree of sulfonation effect, Front. Chem. 6, 549, 2018. 43. J. Jin, X. Zhao, Y.-H. Du, M. Ding, C. Xiang, N. Yan, C. Jia*, Z. Han*, L. Sun*, Nanostructured three-dimensional percolative channels for separation of oil-in-water emulsions, iScience 6, 289-298, 2018. 42. S. Wu, W. Sun, J. Sun, Z. D. Hood, S.-Z. Yang, L. Sun, P. R. C. Kent, M. F. Chisholm, Surface reorganization leads to enhanced photocatalytic activity in defective BiOCl, Chem. Mater. 30, 5128-5136, 2018. 41. Z. Wang, T. Zhang, M. Ding, B. Dong, Y. Li, M. Chen, X. Li, J. Huang, H. Wang, X. Zhao, Y. Li, D. Li, C. Jia, L. Sun, H. Guo, Y. Ye, D. Sun, Y. Chen, T. Yang, J. Zhang, S. Ono, Z. Han, Z. Zhang, Electric-field control of magnetism in a few-layered van der Waals ferromagnetic semiconductor, Nat. Nanotechnol. 13, 554-559, 2018. (IF: 31.538, ESI highly cited paper) 40. S. Wu*, J. Sun, S.-Z. Yang, Q. He, L. Zhang, L. Sun*, Evolution of oxyhalide crystals under electron beam irradiation: an in situ method to understand the origin of structural instability, Inorg. Chem. 57, 8988-8993, 2018. 39. M. Ding, X. Ling, D. Yuan, Y. Cheng, C. Wu, Z.-S. Chao, L. Sun*, C. Yan, C. Jia*, SPEEK membrane of ultrahigh stability enhanced by functionalized carbon nanotubes for vanadium redox flow battery, Front. Chem. 6, 286, 2018. 38. M. Wang, Z. Zang, B. Yang, X. Hu, K. Sun, L. Sun, Performance improvement of perovskite solar cells through enhanced hole extraction: the role of iodide concentration gradient, Sol. Energy Mater. Sol. Cells 185, 117-123, 2018. (ESI hot paper, ESI highly cited paper) 37. H. Li, M. Ding, J. Jin, D. Sun, S. Zhang*, C. Jia*, L. Sun*, Effect of electrolyte pretreatment on the formation of TiO2 nanotubes: an ignored yet non-negligible factor, ChemElectroChem 5, 1006-1012, 2018. (ESI hot paper, ESI highly cited paper, Cover Feature) 36. J. Sun, S. Wu*, S.-Z. Yang, Q. Li, J. Xiong, Z. Yang, L. Gu, X. Zhang, L. Sun*, Enhanced photocatalytic activity induced by sp3 to sp2 transition of carbon dopants in BiOCl crystals, Appl. Catal. B: Environ. 221, 467-472, 2018. (IF: 16.683) 35. L. Hu, K. Sun, M. Wang, W. Chen, B. Yang, J. Fu, Z. Xiong, X. Li, X. Tang, Z. Zang, S. Zhang, L. Sun, M. Li, Inverted planar perovskite solar cells with a high fill factor and negligible hysteresis by the dual effect of NaCl-doped PEDOT:PSS, ACS Appl. Mater. Interfaces 9, 43902-43909, 2017. 34. Z. Hu, Z. Liu, Y. Bian, D. Liu, X. Tang, W. Hu, Z. Zang, M. Zhou, L. Sun, J. Tang, Y. Li, J. Du, Y. Leng, Robust cesium lead halide perovskite microcubes for frequency upconversion lasing, Adv. Opt. Mater. 5, 1700419, 2017. 33. W. Tong, L. Qiu, J. Jin, L. Sun*, F. Duan*, Unique lift-off of droplet impact on high temperature nanotube surfaces, Appl. Phys. Lett. 111, 091605, 2017. 32. X. L. Guo, J. M. Zhang, W. N. Xu, C. G. Hu, L. Sun, Y. X. Zhang, Growth of NiMn LDH nanosheet arrays on KCu7S4 microwires for hybrid supercapacitors with enhanced electrochemical performance, J. Mater. Chem. A 5, 20579-20587, 2017. (IF: 11.301, Cover Feature) 31. C. Xiang, L. Sun*, Y. Wang, G. Wang, X. Zhao, S. Zhang*, Large-scale, uniform, and superhydrophobic titania nanotubes at the inner surface of 1000 mm long titanium tubes, J. Phys. Chem. C 121, 15448-15455, 2017. 30. Y. Wang, L. Sun*, C. Xiang, X. Zhao, S. Wu, S. Zhang*, Coaxial anodic oxidation under dynamic electrolyte conditions for inner surface patterning of high-aspect-ratio and slim Ti tubes, Corros. Sci. 124, 193-197, 2017. 29. B. Ge, D. Zhou, W. Zhang, S. Feng, L. Sun*, J. Shen*, Towards high-performance transistors and photodetectors with monolayer graphene through modified transfer and lithography process, Mater. Express 7, 230-236, 2017. (Front Cover) 28. F. Wu, P. Li, K. Sun, Y. Zhou, W. Chen, J. Fu, M. Li, S. Lu, D. Wei, X. Tang, Z. Zhang, L. Sun, X. Liu, J. Ouyang, Conductivity Enhancement of PEDOT:PSS via addition of chloroplatinic acid and its mechanism, Adv. Electron. Mater. 3, 1700047, 2017. 27. G. Han, S. Zhang, P. P. Boix, L. H. Wong, L. Sun, S.-Y. Lien, Towards high efficiency thin film solar cells, Prog. Mater. Sci. 87, 246-291, 2017. (IF: 31.560) 26. L. Sun*, Employing ZnS as a capping material for PbS quantum dots and bulk heterojunction solar cells, Sci. China Mater. 59, 817-824, 2016. 25. S. Wu*, Y. Jiang, L. Hu, J. Sun, P. Wan, L. Sun*, Size-dependent crystalline fluctuation and growth mechanism of bismuth nanoparticles under electron beam irradiation, Nanoscale 8, 12282-12288, 2016. 24. X. Zhao, J. Huang*, Y. Wang, C. Xiang, D. Sun, L. Wu, X. Tang, K. Sun, Z. Zang, L. Sun*, Interdigitated CuS/TiO2 nanotube bulk heterojunctions achieved via ion exchange, Electrochim. Acta 199, 180-186, 2016. 23. X. Tang, W. Chen, Z. Zu, Z. Zang, M. Deng, T. Zhu, K. Sun, L. Sun, J. Xue, Nanocomposites of AgInZnS and graphene nanosheets as efficient photocatalysts for hydrogen evolution, Nanoscale 7, 18498-18503, 2015. (Cover Feature) 22. L. Sun, Q. Wang, PbS quantum dots capped with amorphous ZnS for bulk heterojunction solar cells: The solvent effect, ACS Appl. Mater. Interfaces 6, 14239-14246, 2014. 21. L. Sun, X. Wang, M. Li, S. Zhang, Q. Wang, Anodic titania nanotubes grown on titanium tubular electrodes, Langmuir 30, 2835-2841, 2014. § Highlighted in Advances In Engineering (15 September 2014). 20. X. Wang, L. Sun, S. Zhang, X. Wang, Ultralong, small-diameter TiO2 nanotubes achieved by an optimized two-step anodization for efficient dye-sensitized solar cells, ACS Appl. Mater. Interfaces 6, 1361-1365, 2014. 19. C. Shen, L. Sun, Z. Y. koh, Q. Wang, Cuprous sulfide counter electrodes prepared by ion exchange for high-efficiency quantum dot-sensitized solar cells, J. Mater. Chem. A 2, 2807-2813, 2014. (IF: 11.301) 18. L. Sun, S. Zhang, Q. Wang, Conformal growth of anodic nanotubes for dye-sensitized solar cells: part II. Nonplanar electrode, J. Nanosci. Nanotechnol. 14, 2050-2064, 2014. (Invited Review) 17. L. Sun, Z. Y. Koh, Q. Wang, PbS quantum dots embedded in a ZnS dielectric matrix for bulk heterojunction solar cell applications, Adv. Mater. 25, 4598-4604, 2013. (IF: 27.398) 16. X. Wang, L. Sun, S. Zhang, D. Zhao, On seeding of the second layer in growth of double-layered TiO2 nanotube arrays, Electrochim. Acta 107, 200-208, 2013. 15. X. Wang, L. Sun, S. Zhang, X. Wang, K. Huo, J. Fu, H. Wang, D. Zhao, A composite electrode of TiO2 nanotubes and nanoparticles synthesized by hydrothermal treatment for use in dye-sensitized solar cells, RSC Adv. 3, 11001-11006, 2013. 14. S. Iwan, B. Bambang, J. L. Zhao, S. T. Tan, H. M. Fan, L. Sun, S. Zhang, H. H. Ryu, X. W. Sun, Green electroluminescence from an n-ZnO:Er/p-Si heterostructured light-emitting diode, Physica B 407, 2721-2724, 2012. 13. L. Sun, S. Zhang, Q. Wang, D. Zhao, Conformal growth of anodic nanotubes for dye-sensitized solar cells: part I. planar electrode, Nanosci. Nanotechnol. Lett. 4, 471-482, 2012. (Invited Review) 12. L. Sun, Y. Huang, Md. A. Hossain, K. Li, S. Adams, Q. Wang, Fabrication of TiO2/CuSCN bulk heterojunctions by profile-controlled electrodeposition, J. Electrochem. Soc. 159, D323-D327, 2012. 11. L. Sun, S. Zhang, X. Wang, X. W. Sun, D. Y. Ong, X. Wang, D. Zhao, Transition from anodic titania nanotubes to nanowires: arising from nanotube growth to application in dye-sensitized solar cells, ChemPhysChem 12, 3634-3641, 2011. 10. L. Sun, S. Zhang, X. Wang, X. W. Sun, D. Y. Ong, A. K. K. Kyaw, A novel parallel configuration of dye-sensitized solar cells with double-sided anodic nanotube arrays, Energy Environ. Sci. 4, 2240-2248, 2011. (IF: 30.289) § Highlighted in COSMOS (Proceedings of the Singapore National Academy of Science) 2011, 7, 8-9. 9. X. Wang, S. Zhang, L. Sun, A two-step anodization to grow high-aspect-ratio TiO2 nanotubes, Thin Solid Films 519, 4694-4698, 2011. 8. L. Sun, S. Zhang, X. W. Sun, X. Wang, Y. Cai, Double-sided anodic titania nanotube arrays: a lopsided growth process, Langmuir 26, 18424-18429, 2010. 7. L. Sun, S. Zhang, X. Sun, X. He, Effect of the geometry of the anodized titania nanotube array on the performance of dye-sensitized solar cells, J. Nanosci. Nanotechnol. 10, 4551-4561, 2010. (Invited Review) 6. L. Sun, S. Zhang, X. W. Sun, X. He, Effect of electric field strength on the length of anodized titania nanotube arrays, J. Electroanal. Chem. 637, 6-12, 2009. 5. B. Ling, X. W. Sun, J. L. Zhao, Y. Q. Shen, Z. L. Dong, L. Sun, S. F. Li, S. Zhang, One-dimensional single-crystalline bismuth oxide micro/nanoribbons: morphology-controlled synthesis and luminescent properties, J. Nanosci. Nanotechnol. 10, 8322-8327, 2010. 4. H. Guo, L. Sun, H. Li, S. Gong, High temperature oxidation behavior of hafnium modified NiAl bond coat in EB-PVD thermal barrier coating system, Thin Solid Films 516, 5732-5735, 2008. 3. L. Sun, H. Guo, H. Li, S. Gong, Hf modified NiAl bond coat for thermal barrier coating application, Mater. Sci. Forum 546-549, 1777-1780, 2007. 2. H. Li, L. Sun, A. Hesnawi, Z. Zhou, S. Gong, Three surface modification methods and their effects on the isothermal oxidation behavior of the EB-PVD NiAl coating, Surf. Coat. Technol. 201, 5161-5164, 2007. 1. H. Li, S. Tao, Z. Zhou, L. Sun, A. Hesnawi, S. Gong, Element diffusion during fabrication of EB-PVD NiAl coating and its 1100 C isothermal oxidation behavior (II), Surf. Coat. Technol. 201, 6589-6592, 2007.

推荐链接
down
wechat
bug