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劳长石
2023-05-13 09:37
  • 劳长石
  • 劳长石 - 教授-深圳大学-机电与控制工程学院-个人资料

近期热点

资料介绍

个人简历


教育背景\r
1997—2002年 中国科学技术大学近代物理系,获物理学本科学位\r
2002—2007年 美国佐治亚理工学院,获材料学博士学位,导师王中林院士\r
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工作履历\r
2008.01—2008.10,美国加州理工学院博士后,师从诺奖得主Amed Zewail从事超快激光的研究\r
2008.10至2010.12,美国加州大学伯克利分校博士后研究员,师从张翔院士进行超介质材料研究 \r
2011.01至2011.10,美国莱姆研究公司,工程师,负责TSMC台积电14nm芯片前沿技术开发\r
2011.10至2013.09,美国蒙氏电子材料公司,资深科学家,负责集团的高效太阳能电池研发项目\r
2014.10至今, 深圳大学机电与控制工程学院特聘教授,增材制造(3D打印)研究所所长

研究领域


"""""先进增材制造(3D打印)、新材料研制\r
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近期论文


Changyong Liu, Xingxing Cheng, Bohan Li, Shengli Mi*, Changshi Lao*. Fabrication and characterization of 3D-printed highly-porous LiFePO4 electrodes by low temperature direct writing process, Materials, 2017, 10(8), 934. \r
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Changyong Liu, Renji Zhang, Yongnian Yan, Changshi Lao*. Analysis on the design of steel wire wound extrusion containers for hot extrusion process, Advances in Mechanical Engineering, 2017, 9(7), 1-12. \r
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Changyong Liu, Xingxing Cheng, Changshi Lao*. The application of 3D printing in lithium-ion batteries. ICMECA2017.会议论文\r
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Dr. Huang Tang, Shihao Zhuang, Prof. Zhihao Bao*,Prof. Changshi Lao,Prof. Yongfeng Mei*. Two-Step Oxidation of Mxene in the Synthesis of Layer-Stacked Anatase Titania with Enhanced Lithium-Storage Performance, CHEMELECTROCHEM, 2016,3(6): 871-876.\r
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HuangTang,[a] ShihaoZhuang,[a] ZhihaoBao,*[a] Changshi Lao,[b] and Yongfeng Mei*[c] Two-Step Oxidation of Mxene in the Synthesis of LayerStacked Anatase Titania with Enhanced Lithium-Storage Performance\r
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Yang D, Lao C, Zewail A H*. 4D electron diffraction reveals correlated unidirectional behavior in zinc oxide nanowires.[J]. SCIENCE, 2008, 321(5896):1660-1664.\r
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Xu S, Lao C, Weintraub B, Wang, ZL*. Density-controlled growth of aligned ZnO nanowire arrays by seedless chemical approach on smooth surfaces[J]. Journal of Materials Research, 2008, 23(08): 2072-2077.\r
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Mai WJ*, Zhang L, Gu YD, Huang SQ, Zhang ZF, Lao CS, Yang PH, Qiang PF, Chen, ZW, Mechanical and electrical characterization of semiconducting ZnO nanorings by direct nano-manipulation[J]. Applied Physics Letters, 2012, 101(8): 081910.\r
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Kuang Q, Lao C S, Li Z, Liu YZ, Xie ZX*, Zheng LS, Wang ZL*, Enhancing the photon-and gas-sensing properties of a single SnO2 nanowire based nanodevice by nanoparticle surface functionalization[J]. The Journal of Physical Chemistry C, 2008, 112(30): 11539-11544.\r
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Mai W, Gao P, Lao C, Wang ZL*, Sood AK, Polla DL, Soprano MB, Vertically aligned ZnO nanowire arrays on GaN and SiC substrates[J]. Chemical Physics Letters, 2008, 460(1): 253-256.\r
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Liu J, Fei P, Song J, Wang XD, Lao CS, Tummala R, Wang ZL*, Carrier density and Schottky barrier on the performance of DC nanogenerator[J]. Nano letters, 2008, 8(1): 328-332.\r
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Lao C S, Park M C, Kuang Q, Deng YL, Sood AK, Polla DL, Wang ZL*, Giant enhancement in UV response of ZnO nanobelts by polymer surface-functionalization[J]. Journal of the American Chemical Society, 2007, 129(40): 12096-12097.\r
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Mai L Q, Hu B, Chen W*, Qi YY, Lao CS, Yang RS, Dai Y, Wang ZL*, Lithiated MoO3 nanobelts with greatly improved performance for lithium batteries[J]. Advanced Materials, 2007, 19(21): 3712-3716.\r
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Kuang Q, Lao C, Wang ZL*, Xie ZX*, Zheng LS, High-sensitivity humidity sensor based on a single SnO2 nanowire[J]. Journal of the American Chemical Society, 2007, 129(19): 6070-6071.\r
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Lao C S, Kuang Q, Wang Z L*, Park MC, Deng YL*, Polymer functionalized piezoelectric-FET as humidity/chemical nanosensors[J]. Applied physics letters, 2007, 90(26): 262107.\r
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Lao C, Li Y, Wong C P*, Wang Z L*, Enhancing the electrical and optoelectronic performance of nanobelt devices by molecular surface functionalization[J]. Nano letters, 2007, 7(5): 1323-1328.\r
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Wang X D, Zhou J, Lao C S, Song JH, Xu NS, Wang ZL*, In situ field emission of density‐controlled ZnO nanowire arrays[J]. Advanced Materials, 2007, 19(12): 1627-1631.\r
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Hu C G, Liu H, Dong W T, Zhang YY, Bao G, Lao CS, Wang ZL*, La (OH) 3 and La2O3 nanobelts—synthesis and physical properties[J]. Advanced Materials, 2007, 19(3): 470-474.\r
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Chueh Y L, Hsieh C H, Chang M T, Chou LJ*, Lao CS, Song JH, Gan JY, Wang ZL*, RuO2 nanowires and RuO2/TiO2 core/shell nanowires: from synthesis to mechanical, optical, electrical, and photoconductive properties[J]. Advanced Materials, 2007, 19(1): 143-149.\r
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Mai L Q, Lao C S, Hu B, Zhou J, Qi YY, Chen W, Gu ED, Wang ZL*, Synthesis and electrical transport of single-crystal NH4V3O8 nanobelts[J]. The Journal of Physical Chemistry B, 2006, 110(37): 18138-18141.

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