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李晓杰

姓名:李晓杰

职称/职务:博士后,合作导师洪明辉教授

研究方向:激光微纳制造

办公地点:777全讯白菜网翔安校区,嘉庚实验室

邮箱:lxjxmu@xmu.edu.cn

教育背景

2022.09-至今,777全讯白菜网,机电工程系,博士后

2015.09-2022.03,北京理工大学,机械与车辆学院,博士

2012.09-2015.04,北京物资学院,管理科学与工程系,硕士

2006.09-2010.06,吉林大学,交通学院,学士

研究领域

激光微纳制造

近期发表文章

[1] Li X J, Li X, Jiang L, et al., Preparation of twin graphene quantum dots through the electric-field-assisted temporally-shaped femtosecond laser ablation of the liquid of graphene dispersions[J], Carbon, 2021. Carbon, 2021, 185: 374-381. (SCI, 一区, Top, IF: 11.307)

[2] Li X J, Li X, Zuo P, et al., Electric Field Assisted Femtosecond Laser Preparation of Au@TiO2 Composites with Controlled Morphology and Crystallinity for Photocatalytic Degradation [J], Materials, 2021, 14(14):3816. (SCI, 三区, IF: 3.623)

[3] Chen X Z, Li X, Zuo P, Li X J, et al., Controllable fabrication of unidirectional liquid spreading surface through confining plasma eruption and femtosecond laser double pulses[J], Appl. Surf. Sci., 2020, 504:144110. (SCI, 一区, Top, IF: 7.392)

[4] Wang S C, Hu J, Jiang L, Li X, Cao J, Wang Q S, Wang A D, Li X J, et al., High-performance 3D CuO/Cu flowers supercapacitor electrodes by femtosecond laser enhanced electrochemical anodization[J], Electrochimica Acta, 2019, 293: 273-282. (SCI, 一区, Top, IF: 7.336)

[5] Yan R Y, Jiang L, Li X, Hu J, Shi X S, Ran P, Li X J, et al. An abnormal non-incubation effect in femtosecond laser processing of freestanding reduced graphene oxide paper[J], Journal of Physics D-Applied Physics, 2017, 50(18): 185302. (SCI, 二区, IF: 3.409)

[6]Zuo P, Jiang L, Li X, Li B, Ran P, Li X J, et al., Metal (Ag, Pt)-MoS2 hybrids greenly prepared through photochemical reduction of femtosecond laser pulses for SERS and HER[J], ACS Sustainable Chemistry & Engineering, 2018, 6(6): 7704-7714. (SCI, 一区, Top, IF: 9.224)

专利成果

[1] 姜澜、李晓杰、李欣,一种电场辅助飞秒激光整形脉冲制备孪晶量子点的方法,2022-02-07,中国,ZL202011447001.2;

[2] 姜澜、李欣、陈孝喆、李晓杰,电子动态调控空间整形加工单向流动表面的方法,2022-01-29,中国,ZL2021103797627

科研项目

1.基于时空整形超快激光液相剥离的单层量子点快速绿色可控制备 (51775047),国家自然科学基金,61万,结题,参加;

2. 超快激光微纳制造机理及新方法(2017YFB1104300),国家重点研发计划增材制造与激光制造重点专项项目,3754 万,结题,参加;

3. 纳米尺度电子动态调控的超快激光微纳米加工新方法(91323301),国家自然科学基金,1000万,结题参加。