靳洪允

发布人:李晓晔发表时间:2019-06-25点击:

个人简介:

靳洪允,博士,教授,博士生导师,材料系主管研究生副主任,教育部工程中心副主任。美国华盛顿大学访问学者,兼任中国硅酸盐学会微纳技术分会理事、副秘书长。2004年6月毕业于中国地质大学(武汉)应用化学专业,硕-博连读,2009年6月博士毕业留校工作。主持装发教育部联合基金、军队项目、国家自然科学基金、湖北省科技创新重大专项、武汉市科技攻关重点项目等课题10余项。主要研究兴趣集中在固态锂电池、发动机涂层等领域,以第一作者或者通讯作者在《Nano Energy》、《Journal of Materials Chemistry A》等刊物上发表SCI检索论文30余篇;授权国家发明专利七项,其中两项转化;参与制定高性能预应力管道灌浆料压浆施工行业工法;2011和2015年两次荣获湖北省技术发明奖贰等奖。

一、学习和工作经历

2013.12 ~2015.1 University of Washington 访问学者

2015.9~2016.8 山东大学 访问学者

2018.12~至今 中国地质大学(武汉)材化学院 教授

2010.12 ~2018.12 中国地质大学(武汉)材化学院 副教授

2009.7~2010.12 中国地质大学(武汉)材化学院 讲师

2004.7~2009.6 中国地质大学(武汉)材化学院 博士(硕-博连读)

2000.9~2004.6 中国地质大学(武汉)材化学院 学士

二、研究方向

1.固态锂电池

2.高温涂层及其失效分析

3.电化学器件及3D打印

三、主要科研项目

1.********材料的研制与涂层验证——特殊新材料,装备预研教育部联合基金,项目经费80万元,主持;2019.7-2021.6

2.航空发动机精密零件修复用激光熔覆材料研制及验证,中国人民解放军5713,项目经费100万元,主持;2019.12-2021.12

3.稀土共掺杂纳米氧化锆粉体材料制备及其热障涂层应用研究(2018AAA015),湖北省科技创新重大专项,项目经费200万元,主持;2008.5-2021.5

4.高离子电导固态电池电解质技术研究,企业合作开发项目,项目经费130万元,主持;2019.12-2021.5

5.石英球化过程中气-固两相流运动机理及其流体动力学研究(51102218),国家自然科学基金,项目经费25万元,主持

6.大规模集成电路封装用球形硅微粉研究(201210321099),武汉市科技攻关重点课题,项目经费20万元,主持

7.先进石英材料研发中的关键技术及科学问题研究(CUG120118),中央高校特色学科团队项目,项目经费100万元,主持

8.锆酸镧系热障涂层材料制备及其高温性能研究(CUG120402),中央高校“摇篮计划”人才基金,项目经费30万元,主持

9.轻质矿物填充摩擦材料摩擦、磨损机制及有限元模拟研究(2013CFB412),湖北省自然科学基金,项目经费6万元,主持;

10.无铜环保刹车片轻量化关键工艺技术研究,湖北省科技创新专项(重大项目2017AAA112),项目经费100万元,技术负责人(第二);

11.新型纳米结构高温防护涂层材料技术集成及产业化,武汉市科技攻关重点项目,项目经费80万元,技术负责人(第二)。

四、主要论文

[1]DuanS S,Jin H Y*,Junxi Yu, et al.Non-equilibrium Microstructure of Li1.4Al0.4Ti1.6(PO4)3Superionic Conductor bySpark Plasma Sintering for Enhanced Ionic Conductivity[J].Nano Energy, 2018, 51: 19-25.

[2]Jin H Y, Dong J, Uchaker Evan, et al. Three dimensional architecture of carbon wrapped multilayer Na3V2O2(PO4)2F nanocubes embedded in graphene for improved sodium ion batteries[J]. Journal of. Material. Chemistry. A, 2015, 3: 17563-17568.

[3]DuanS S,Junxi Yu,Jin H Y*, et al.Selective doping to relax glassified grain boundaries substantially enhances the ionic conductivity of LiTi2(PO4)3glass-ceramic electrolytes[J].Journal of Power Source, 2020. (online)

[4]X Tian, K Tang,Jin H Y*, et al.Boosting capacitive charge storage of 3D-printed micro-pseudocapacitors via rational holey graphene engineering [J]. Carbon, 2019, doi.org/10.1016/j.carbon.2019.08.089.

[5]T Wang,X Tian,H Y*Jin, et al.3D printing-based cellular microelectrodes for high-performance asymmetric quasi-solid-state micro-pseudocapacitors[J]. Journal of. Material. Chemistry. A,2020. (online)

[6]Hongyun Jin, Keke Zhou, Zhengjia Ji, et al. Comparative tribological behavior of friction composites containing natural graphite and expanded graphite[J]. Friction,2019, doi.org/10.1007/s40544-019-0293-3.

[7]Si YJ, Lv Z Z,Jin H Y*, et al.Revealing important role of graphitic carbon nitride surface catalytic activity in photocatalytic hydrogen evolution by using different carbon co-catalysts [J]. RSC Advance, 2019, doi.org/10.1016/j.apsusc.2019.06.122.

[8]Ji, Z J, Luo W Y,Jin H Y*, et al. Effects of the shapes and dimensions of mullite whisker on the friction and wear behaviors of resin-based friction materials[J]. Wear, 2018, 406-407: 118-125.

[9]Hou H C, Ji Z J,Jin H Y*, et al. Spheroidizing mechanisms and simulation of spherical silica in Oxygen Acetylene flame[J]. Advanced Powder Technology, 2018 (29) :789-795.

[10]Xu L, Xu C H,Jin H Y*, et al.Research on Synthesis of β-Ni(OH)2Nanorods and Removing Congo Red from Polluted Water[J]. Chemistry Letters, 2018, 47(2): 232-235.

[11]Jin HY,Liu M, Hou S E, et al. Nanoporous carbon leading to the high performance of Na3V2O2(PO4)2F@Carbon/Graphene cathode in sodium ion battery[J]. CrystEngComm, 2017, DOI: 10.1039/C7CE00726D.

[12]Liu M,Jin HY*, Evan Uchaker, et al. One-pot synthesis of in-situ carbon-coated Fe3O4as long-life lithium-ion battery anode[J]. Nanotechnology, 2017, 28(15): 155603-155611.

[13]Ji Z J,Jin H Y*, Luo W Y, et al. The effect of crystallinity of potassium titanate whisker on the tribological behavior of NAO friction materials[J]. Tribology International, 2017, 107: 213-220.

[14]Xu C H,Jin H Y*, Zhang Q F, et al. A novel Co-ions complexation method to synthesize pyrochlore La2Zr2O7[J]. Journal of the European Ceramic Society, 2017, 37(8): 2871-2876.

[15]Xu C H, Li J Y,Jin H Y*, et al.Al2O3–Fe3O4–expanded graphite nano-sandwich structure for fluoride removal from aqueous solution[J]. RSC Adv., 2016, 6: 97376-97384.

[16]Jin H Y, Ji Z J, Yuan J, et al. Research on Removal of Fluoride in Aqueous Solution by Alumina-modified Expanded Graphite Composite [J]. Journal of Alloys and Compounds, 2015, 620: 361-367.

[17]Ji Z J,Jin H Y*, Wu Y Q, et al. Numerical simulation of silica particle trajectory in flow field and silica particle spheroidizing in oxygen-acetylene flame spheroidization process [J]. Powder technology, 2015, 286: 451-458.

[18]Uchaker Evan,Jin H Y, Pei Y, et al. Elucidating the Role of Defects for Electrochemical Intercalation in Sodium Vanadium Oxide, [J]. Chemistry of Materials 2015, 27 (20): 7082-7090.

[19]H Y Jin, Z Ji. The preparation of a core/shell structure with alumina coated spherical silica powder[J]. Colloids and Surfaces A, 2014,441: 170-177.

[20]Wu Y Q,Jin H Y*, Ji Z J, et al. Simulation of Temperature Distribution in Disk Brake Considering a Real Brake Pad Wear[J]. Tribology Letters, 2014, 56:205-213.

[21]Liu M,Jin H Y*, Ji Z J, et al. Synthesis and self-assembled mechanism of CuO peony-flowers by a composite hydroxide-mediated approach at low temperature[J]. Crystal Research and Technology, 2014, 49(10):820-828.

[22]Jin H Y, Yuan J, Ji Z J, et al. The exploration of a new adsorbent as MnO2modified expanded graphite [J]. Materials Letters. 2013, 110: 69-72.

[23]Jin H Y, Wu YQ, Li Y L, et al. The effect of spherical silica powder on the tribological behavior of phenolic resin-based friction materials [J]. Tribology Letters, 2013, 51(1): 65-72.

[24]Wu YQ,Jin H Y*, Hou S E, et al. Effects of glass-to-rubber transition on the temperature, load and speed sensitivities of nano-ZrO2reinforced polybenzoxazine. Wear, 2013, 297 (2):1025-1031.

[25] Wu YQ,Jin H Y*, Hou S E, et al. A load-dependent model to investigate the velocity dependence of friction coefficient: ZrO2/Polymer nanocomposite[J]. Tribology Letters, 2012, 48(3): 285-291.

[26]Jin H Y, Hou S E*, Xiao H Y, et al.Synthesis of lanthanum zirconium oxide Nanomaterials through Composite-Hydroxide-Mediated approach [J]. Materials Research Bulletin, 2012, 47(1): 51-53.

[27]Jin H Y, Hou S E*, Xiao H Y, et al.Preparation of low radioactivity spherical silicon oxide powders via chemical-flame spheroidizing Process[J]. Colloids and Surfaces A, 2011, 381(1):13-16.

[28]Jin H Y, Xiao H Y, Hou S E*, et al.Effects of spherical silica on the properties of an epoxy resin system[J]. Journal of Applied Polymer Scienc, 2011, 121(2): 648-653.

[29]Jin H Y, Liu J, Xu L. Preparation of fused spherical silica powder by oxygen-acetylene flame spheroidization process [J]. Journal of Materials Processing Technology, 2010, 210(1):81-84.

[30]Jin H Y, Wang N, Xu L, Hou S E. Synthesis and conductivity of cerium oxide nanoparticles [J]. Materials Letters, 2010, 64(11):1254-1256.

五、主要国家发明专利

1.靳洪允等.一种制备纳米结构锆酸镧粉体的方法,ZL201610947142.8, 2019.7,国家发明专利.

2.靳洪允等.一种采用共离子络合法的方法制备镁基六铝酸镧粉体的方法,ZL201610947144.7, 2019.7,国家发明专利.

3.靳洪允等.一种复合水泥膨胀剂及其制备方法,ZL103332883B,2015.3,国家发明专利.

4.靳洪允等.深地层钻探用抗高温累托石水基钻井液,ZL201010262766.9,2013.11,国家发明专利.

5.靳洪允等.一种高纯度超细球形石英粉及制备方法,ZL200910062636.8,2011.8,国家发明专利.

6.靳洪允等.一种高纯度、低放射性球形石英粉及其制备方法,ZL200910062637.2,2011.4,国家发明专利.

六、获奖情况

1.多维度微纳结构纳米矿物材料及其应用研究,湖北省技术发明奖贰等奖,2015年,第二完成人;

2.高纯度金刚石超精抛光系列产品开发与应用,湖北省技术发明奖贰等奖,2011年,第二完成人。

七、联系方式

通讯地址:湖北省武汉东湖新技术开发区锦程街68号

中国地质大学(武汉)未来城校区材化楼446室

邮编:430078

联系电话:13476118841;

E-mail:jinhongyun@cug.edu.cn或13476118841@126.com

(欢迎材料、化学相关专业的研究生报考本人研究生,录取的研究生将有机会赴美国华盛顿大学、中科院等单位进行联合培养和学术交流。优秀研究生可以赴华盛顿大学、罗伦斯伯克利等单位进行国际交流和联合培养。)