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李长生
2023-05-11 08:19
  • 李长生
  • 李长生 - 教授-江苏大学-材料科学与工程学院-个人资料

近期热点

资料介绍

个人简历


教育经历:
1978年2月—1982年2月 中南矿冶学院(中南大学) 本科学生
1985年8月—1988年8月 东北工学院(东北大学) 硕士研究生
1997年3月—2001年3月 日本丰桥技术科学大学 博士研究生
  教学经历:
1982年2月—1987年5月 阜新矿业学院 助教
1987年5月—1992年2月 阜新矿业学院 讲师、副教授
1993年4月—2001年3月 日本丰桥技术科学大学 博士、助理研究员、研究员
2002年2月—至今 江苏大学 教授

研究领域


1)金属基高温抗磨减摩材料(铁基、镍基、铜基):工艺,装备一体化及在航空航天、液压元件、轴承等高技术领域应用;
2)固体润滑材料的设计,制备和摩擦学研究
3)过渡族金属硫,硒化物纳米材料的制备及摩擦学特性
4)新型类石墨烯薄膜低成本制备技术及摩擦学性能研究

近期论文


[1] Tang, Guogang; Tang, Hua; Li, Changsheng et al; Surfactant-assisted hydrothermal synthesis and characterization of WS2 nanorods, Materials Letters, 65, 3457-3460, 2011
[2] Li, Guowei; Li, Changsheng; Tang Hua et al; Controlled self-assembly of PbS nanoparticles into macrostar-like hierarchical structures, Materials Research Bulletin, 46, 1072-1079, 2011
[3] Li, Guowei; Li, Changsheng; Yang, Xiaofei et al; Hierarchical construction of PbS architectures based on the adsorption and sustained release of H2S by TBAB, Materials Chemistry and Physics, 129, 1011-1019, 2011
[4] Li, Guowei; Li, Changsheng; Tang, Hua et al; A facile approach to fabrication of PbS hollow spheres with improved polystyrene templates, Materials Letters, 64, 2755-2758, 2010
[5] Yu, Xiaohui; Li, Changsheng; Ling, Yun et al; First principles calculations of electronic and optical properties of Mo-doped rutile TiO2, Journal of Alloys and Compounds, 507, 33-37, 2010
[6] Yu, Xiaohui; Li, Changsheng; Tang, Hua et al; First principles study on electronic structures and properties of Sn-doped rutile TiO2, Computational Materials Science, 49, 430-434, 2010
[7] Tang, Guogang; Wang, Yijiang; Chen, Wei et al; Hydrothermal synthesis and characterization of novel flowerlike MoS2 hollow microspheres, Materials Letters, 100, 15-18, 2013
[8] Wang, F.F; Li, C.S; Tang, H; Morphological control of PbWO4 crystals in the ethanol-water mixed system with an anionic surfactant, Journal of Alloys and Compounds, 490, 372-376, 2010
[9] Li, Guowei; Li, Changsheng; Tang, Hua et al; Synthesis and characterization of hollow MoS2 microspheres grown from MoO3 precursors, Journal of Alloys and Compounds, 501, 275-281, 2010
[10] Li, Wenjing; Hu, Lifei; Wang, Minzhi et al; Synthesis and tribological properties of Mo-doped WSe2 Nanolamellars, Cryst. Res. Technol, 47, 8, 876–881, 2012
[11] Li, Wenjing; Li, Changsheng; Wu, Kongqiang; Synthesis and Tribological properties of MoSe2/C and MoSe2 nanoflakes, Advanced Materials Research, 399-401, 1946-1950, 2012
[12] Cao, kesheng; Li, Changsheng; Cheng, yonghua et al; Graphite-Controlled Fabrication of Ultrathin WSe2 Nanosheets with Tower-Like Structure and Their Tribological Properties, Tribology Transactions, 55, 297-301, 2012
[13] Cao, Kesheng; Li, Changsheng; Yang, Xiaofei et al; Fabrication of carbon-encapsulated tungsten diselenide nanorods, Materials Letters, 65, 1231-1233, 2011
[14] Tang, Hua; Li, Changsheng; Yang, Xiaofei et al; Synthesis and tribological properties of NbSe3 nanofibers and NbSe2 microsheets, Cryst. Res. Technol, 46, 4, 400-404, 2011
[15] Wu, Qiong; Tang, Hua; Li, Changsheng et al; Synthesis and tribological properties of hexagonal titanium silicon carbide crystals, Cryst. Res. Technol, 46, 2, 178-182, 2011
[16] Tang, Hua; Cao, kesheng; Wu, Qiong et al; Synthesis and tribological properties of copper matrix solid self-lubricant composites reinforced with NbSe2 nanoparticles, Cryst. Res. Technol, 46, 2, 195-200, 2011
[17] Tang, Hua; Wu, Qiong; Yang, Xiaofei et al; Surfactant-assisted synthesis of novel star-like PbWO4 hierarchical architectures, Cryst. Res. Technol, 45, 10, 1094-1098, 2010
[18] Wu, Qiong; Li, Changsheng; Tang, Hua et al; Microstructure Evolution During Mechanical Alloying of Face Centered Cubic Ti3Si Nanoparticles, Journal of Nano Research, 6, 177-184, 2009
[19] Wu, Qiong; Li, Changsheng; Tang, Hua et al; Synthesis and tribological properties of laminated Ti3SiC2 crystals, Cryst. Res. Technol, 45, 8, 851-855, 2010
[20] Tang, Guogang; Liu, Shuaishuai; Tang, Hua et al; Template-assisted hydrothermal synthesis and photocatalytic activity of novel TiO2 hollow nanostructures, Ceramics International, 39, 4969-4974, 2013

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