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材料科学与工程学院教师信息-刘洋博士


个人概况

                                                                             14     


名: 刘洋副研究员

别:

出生年月: 1988.08

贯: 湖北随州

最高学历: 博士研究生

从事专业: 氧化物溅射靶材

称: 直聘研究员

联系方式:

手机:17638596508

E-maillouis@zzu.edu.cn

通讯地址:

河南省郑州市科学大道100

个人简历

2021-7  至今,郑州大学,直聘研究员

2019-72021-6,郑州大学,师资博士后

2014-92019-6,南开大学,凝聚态物理,硕博连读

2007-92011-6,天津科技大学,天然高分子材料,本科

研究领域:

本课题组聚焦先进功能陶瓷与高性能薄膜器件。主要研究方向包括:先进粉体合成与陶瓷烧结工艺优化;高性能氧化物溅射靶材(如IZOITO)及光电薄膜晶体管(MO-TFT)前沿应用;高温超导材料(YBCOEBCO)靶材制备与磁控溅射成膜机制。

部分结项及在研项目如下:

1、 国家自然科学区域创新发展联合基金,U21A2065,面向高世代的长节距、高密度ITO旋转靶材制备关键科学问题研究,2022-012025-12,结题,经费93万元;

2、 电解法合成纳米氧化铟及靶材制备,横向课题,项目负责人,2025年,经费150万元;

3、 无铟靶材项目,横向课题,项目负责人,2024年,经费50万元;

4、 第二代高温超导靶材的设计与制备,项目负责人,2026年,经费100万元。

获奖情况:

1、 平板显示用高性能ITO靶材关键技术及工程化,中国有色金属工业协会,中国有色金属工业科学技术奖,一等奖,2019

2、 指导博士研究生刘笑开入选首届“中国科协博士生专项计划”

部分发表论文:

(1) 第一作者. Electrochemical synthesis of In2O3   nanoparticles for fabricating ITO ceramics [J]. Ceramics International, 2019, 45(15): 19068-76.

(2) 第一作者. Electrochemical synthesis of In2O3   nanoparticles for fabricating ITO ceramics [J]. Ceramics International, 2019, 45(15): 19068-76.

(3) 第一作者. Hydrothermal synthesis and   characterization of In2O3-ZnGa2O4   nanocomposites and their application in IGZO ceramics [J]. Ceramics International, 2019,   45(4): 4381-4391.

(4) 第一作者. Preparation of superior IGZO   ceramics by two-step sintering for application in IGZO thin film fabrication   [J]. Journal of Materials Research   and Technology, 2020, 9(3): 53315342.

(5) 唯一通讯作者. Refined grain size of ITO ceramic   targets prepared by pressure slip casting and two-step sintering [J]. Journal of the European Ceramic Society,   2021, 41(6): 3501-3511.

(6) 唯一通讯作者. Sintering behavior of IZO ceramic   targets prepared using hydrothermally synthesized Zn-doped In2O3   nanoparticles [J]. Ceramics   International, 2021, 47(9): 12416-12424.

(7) 唯一通讯作者. Effects of Al2O3   doping on the microstructural evolution and densification process of AZO   targets, Ceramics International,   2022, 48(1):16196-16205.

(8) 唯一通讯作者. Preparing EBCO superconducting   targets with uniform phase structure by pressure slip casting [J]. Ceramics International, 2023,   49(18): 29417-26.

(9) 唯一通讯作者. Investigate the relationship   between densification and grain size of IGZO target by phase-field simulation   [J]. Journal of the American Ceramic Society, 2024, 107(7):   5006-21.

(10) 唯一通讯作者. Revolutionizing ITO waste   recycling: Dynamic evolution of ultrafine pulverization and densification   [J]. Ceramics International,   2024, 50(21): 41003-15.

(11) 唯一通讯作者. Investigating the influence   mechanism of aluminum doping amount on the density and grain size of AZO   target through phase-field simulation [J]. Journal of the European Ceramic Society, 2025, 45(3): 117013.

(12) 唯一通讯作者. Phase evolution and sintering   behavior of high-performance IGTO sputtering targets [J]. Ceramics International, 2025,   51(4): 4428-40.

(13) 唯一通讯作者. Densification behavior of EBCO   superconducting target by phase-field simulation [J]. Ceramics International, 2025, 51(23): 39139-48.

(14) 唯一通讯作者. Optimization of YBCO   superconducting target synthesis via oxalic acid coprecipitation method [J]. Journal of Alloys and Compounds,   2025, 1022(10): 179910.

(15) 唯一通讯作者. Particle size-induced   microstructural evolution and performance enhancement: A densification   synergy in EBCO superconducting targets [J]. Journal of Alloys and Compounds, 2025, 1045(1): 184660.

(16) 唯一通讯作者. Integrated vibration   packing-sintering process for ITO rotary targets via slurry rheology and   discrete element method simulations [J]. Journal of Materials Research and Technology, 2025, 38(1):   418-31.

(17) 唯一通讯作者. From target to film: The crucial   role of AZO target grain size in sputtered thin film properties [J]. Materials   Today Communications, 2025, 47(1): 113105.

(18) 唯一通讯作者. Innovative approaches to doping in   zinc oxide films: The role of aluminum and tungsten in enhancing   photoelectric properties [J]. Journal of the European Ceramic Society,   2026, 46(5): 118008.

(19) 唯一通讯作者. Fabrication and characterization   of high-density La0.7Sr0.3MnO3 targets via   pressure slip casting [J]. Journal of the European Ceramic Society,   2026, 46(6): 118081.

(20) 唯一通讯作者. Microstructure engineering via   three-phase control for high-performance IZTO targets [J]. Journal of   the European Ceramic Society, 2026, 46(4): 117993.

部分授权发明专利:

(1) 一种利用电解制备纳米氧化铟的方法和装置,中国发明专利,ZL201711192477.4

(2) 一种晶粒尺寸可控ITO陶瓷靶材的制备方法,ZL202010150796.4

(3) 一种铟钨氧化物靶材及其制备方法,ZL202210511038.X

(4) 一种铕钡铜氧化物超导溅射靶材的制备方法及其产品,ZL202310588609.4


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