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哈尔滨工业大学材料科学与工程学院研究生考研导师简介-亓钧雷

本站小编 Free考研网/2019-05-25

基本信息科学研究教育和教学论文专著
基本信息
亓钧雷,男,汉族

教授,博士生导师

哈尔滨工业大学材料学院焊接系

入选哈尔滨工业大学青年拔尖人才选聘计划


工作经历
2010.07-2014.12 哈尔滨工业大学材料学院焊接系 讲师

2012.03-2013.03 日本东京大学工学部材料科学系 访问学者/客员研究员

2014.12-2017.12 哈尔滨工业大学材料学院焊接系 副教授

2017.05-至今 哈尔滨工业大学材料学院焊接系 博导

2017.12-至今 哈尔滨工业大学材料学院焊接系 教授


教育经历
2001.09-2005.07 吉林大学材料学院 学士
2005.09-2010.06 吉林大学材料学院 博士(硕博连读)

科研团队
新材料及异种材料连接课题组

课题组负责人: 冯吉才 教授

成 员: 张丽霞 教授

曹 健 教授

亓钧雷 教授

研究方向
研究方向:

1. 碳纳米材料辅助钎焊

2. 石墨烯微连接

科研项目
国家自然基金面上项目 2019.12-2016.01

三维网络石墨烯强化复合中间层及其钎焊C/C复合材料与Nb的机理研究 负责人

国家自然基金青年项目 2014.12-2012.01

CNTs强化复合钎料制备及其钎焊BN/SiO2复合材料与Nb机理研究负责人

中国博士后面上基金(49批) 2013.07-2011.07

BN/SiO2复合材料与Nb钎焊机理研究 负责人

讲授课程
纳米材料与器件


招生信息

本科生招生:

招收电子封装本科生1~2名,招收焊接专业本科生1~2名。

硕士招生:

招收硕士研究生2~3名,欢迎材料、物理、化学等相关专业的同学们。

博士招生: 招收博士研究生1~2名,欢迎材料、物理、化学、机械等相关专业的同学们。

有意者可以联系jlqi@hit.edu.cn,欢迎提前下实验室。

已毕业学生

本科生:

2018年毕业:王昭月 (本校读研)

傅振邦 (哈工大-深圳 读研)

协助指导:赵长垚 (哈工大-深圳 读研)

蒋子圣(上海交通大学 读研)

2017年毕业:蔡逸飞 (本校读研) 郭佳乐 (本校读研)

2016年毕业:刘瑜琳 (优秀 本校读研) 张骜天 毛德顺

2015年毕业:周玉杨 (优秀 无锡江南计算技术研究所)

谈雪琪 (无锡江南计算技术研究所 )

张兴凯 (深圳学而思教育)

协助指导:罗大林 (本校读研)

2014年毕业:林景煌 (优秀 本校读研)

郭英男 (本校读研)

2013年毕业:梁松 (南京通晓商务文化广告公司)

2012年毕业:郭志龙 (南京55所)

协助指导:张大磊 (本校读研)

硕士研究生:

2018年毕业:刘瑜琳 (美国匹兹堡大学读博)

王毅恒 (宁德新能源)

2017年毕业:陈树林 (硕士生金奖,优秀,本校读博)

2016年毕业:林景煌 (优秀,本校读博)

协助指导

2018年毕业:霸金 (硕士生金奖,优秀,本校读博)

2017年毕业:罗大林 (硕士生银奖,优秀,成都飞机工业(集团)有限责任公司)

范增奇 (长春一汽大众)

2015年毕业:张天琪 (长春一汽大众)

王旭 (优秀 日本东京大学读博)

2014年毕业:张夫 (优秀 美国宾州州立大学全奖读博)

张大磊(优秀 深圳德昌电机)

万禹含 (优秀 一汽大众)

2012年毕业:张俊杰 (优秀 航天一院703厂)




论文专著
To be continued

2018年

[1] H. Jia, Y. Cai, J. Qi*, J. Feng, W. Fei, et al., Heterostructural Graphene Quantum Dot/MnO2 Nanosheets toward High-Potential Window Electrodes for High-Performance Supercapacitors. Adv. Sci., 2018, 5, **.
[2] Z. Y. Wang, M. N. Li, J. Qi*, J. Feng, et al., In-Situ synthesized TiC nano-flakes reinforced C/C composite-Nb brazed joint. J. Eur. Ceram. Soc, 2018, 38, 1059-1068.



[3] J. Lin, H. Jia, J. Qi*, J. Feng, et al., Hierarchical CuCo2S4@NiMn-layered double hydroxide core-shell hybrid arrays as electrodes for supercapacitors. Chem. Eng. J., 2018, 336,562-569.

[4] J. Lin, H. Jia, J. Qi*, J. Feng, et al., Modifying the electrochemical performance of vertically-oriented few-layered graphene through rotary plasma processing. J. Mater. Chem. A, 2018, 6, 908–91.



[5] S. Chen, J. Qi*, J. Feng, et al., Atomic structure and migration dynamics of MoS2/LixMoS2 interface. Nano Energy, 2018, 48, 560-568.



[6] J. Lin, H. Jia, J. Qi*, J. Feng, et al., In Situ Synthesis of Vertical Standing Nanosized NiO Encapsulated in Graphene as Electrodes for High- Performance Supercapacitors. Adv. Sci. 2018, 5, **.



[7] H. Liang, J. Qi*, J. Feng, et al., Hierarchical NiCo-LDH@NiOOH core-shell heterostructure on carbon fiber cloth as battery-like electrode for supercapacitor. J. Power Sources, 2018, 378, 248-254.



[8] H. Liang, J. Qi*, J. Feng, et al., Hierarchical NiCo-LDH/NiCoP@NiMn-LDH hybrid electrodes on carbon cloth for excellent supercapacitors. J. Mater. Chem. A, 2018, 6, 15040–15046.



[9] J. Lin, H. Wang, J. Qi*, J. Feng, et al., Controllable synthesis of core-branch Ni3S2/Co9S8 directly on nickel foam as an efficient bifunctional electrocatalyst for overall water splitting. J. Power Source, 2018, 401, 329-335.



[10] Q. Ma, J. Qi*, J. Feng, et al., The effect of crystal structure of SiO2 on the wettability of AgCuTiSiO2f/SiO2 system, Vacuum, 2018, 157, 124-127.

[11] Q. Ma, J. Qi*, J. Feng, et al., Relieving residual stress in brazed joint between SiC and Nb using a 3D-SiO2-fiber ceramic interlayer. Vacuum, 2018, 149, 93-95.

[12] J. Ba, J. Lin, J. Qi*, J. Feng, et al., Carbon nanotubes-reinforced Ni foam interlayer for brazing SiO2-BN with Ti6Al4V alloy using TiZrNiCu brazing alloy. Ceram. Int., 2018, 44, 3684-3691.

[13] Haixing Gao, Yang Cao, Yong Chen, Xiaoyong Lai, Shujiang Ding, Jinchun Tu, Junlei Qi, Au nanoparticle-decorated NiCo2O4 nanoflower with enhanced electrocatalytic activity toward methanol oxidation, Journal of Alloys and Compounds, 2018, 732(25): 460-469.

[14] Xiaoqing Si, Jian Cao, Sheng Liu, Xiaoguo Song, Jun Lei Qi*, Yongxian Huang, Jicai Feng,Fabrication of 3D Ni nanosheet array on Crofer22APU interconnect and NiO-YSZ anode support to sinter with small-size Ag nanoparticles for low-temperature sealing SOFCs, International Journal of Hydrogen Energy, 2018,43,29772-989

[15] Zongjing He, Chun Li, Jun Lei Qi*, Yongxian Huang, Jicai Feng, Jian Cao. Pre-infiltration and brazing behaviors of Cf/C composites with high temperature TiSi eutectic alloy, Carbon, 2018, Accepted.

[16] J. Lin, H. Wang, J. Qi*, J. Feng, et al., Core-branched CoSe2/Ni0.85Se nanotube arrays on Ni foam with remarkable electrochemical performance for hybrid supercapacitors.J. Mater. Chem. A, 2018, 6, 19151–19158.

[17] J. Lin, J. Qi*, J. Feng, et al., Designing and constructing core-shell NiCo2S4@Ni3S2 on Ni foam by facile one-step strategy as advanced battery-type electrodes for supercapattery. J. Colloid Interf. Sci., 2018, accept.

2017年

[1] H. N. Jia, J. H. Lin, J. Qi*, J. Feng, W. Fei, et al., Nanosized core–shell structured graphene–MnO2 nanosheet arrays as stable electrodes for superior supercapacitors. J. Mater. Chem. A, 2017, 5, 10678–10686.



[2] Z. Wang, J. Qi*, J. Feng, et al., Three-dimensional graphene-reinforced Cu foam interlayer for brazing C/C composites and Nb. Carbon, 2017, 118, 723-730.



[3] J. L. Qi*, Z. Y. Wang, J. C. Feng, et al., Graphene-enhanced Cu composite interlayer for contact reaction brazing aluminum alloy 6061. Vacuum, 2017, 136, 142-145.

[4] Y. Liu, J. Lin, J. Qi*, J. Feng, et al., Confirming the key role of Ar+ ion bombardment in the growth feature of nanostructured carbon materials by PECVD. Nanotech., 2017, 28, 475601.



[5] J. Lin, J. Qi*, J. Feng, et al., Interfacial microstructure and improved wetting mechanism of SiO2f/ SiO2 brazed with Nb by plasma treatment. Vacuum, 2017, 143, 320-328.

[6] J. Lin, J. Qi*, J. Feng, et al., Rational construction of nickel cobalt sulfide nanoflakes on CoO nanosheets with the help of carbon layer as the battery-like electrode for supercapacitors. J. Power Source, 2017, 362, 64-72.

[7] J. Lin, J. Qi*, J. Feng, et al., Hierarchical CuCo2O4@NiMoO4 core–shell hybrid arrays as a battery-like electrode for supercapacitors. Inorg. Chem. Front., 2017, 4, 1575–1581.

[8] J. Lin, J. Qi*, J. Feng, et al.,Brazing SiO2f/SiO2 with TC4 alloy with the help of coating graphene. Vacuum, 2017, 145, 241-244.

[9] J. Lin, J. Qi*, J. Feng, et al., Designed formation of NiO@C@Cu2O hybrid arrays as battery-like electrode with enhanced electrochemical performances. Ceram. Int., 2017, 43, 15410-15417.

[10] Q. Ma, J. Qi*, J. Feng, et al., The relation between residual stress, interfacial structure and the joint property in the SiO2f/SiO2-Nb joints. Sci. Rep., 2017, 7, 4187.



[11] J. Lin, J. Qi*, J. Feng, et al., In situ encapsulated Fe3O4 nanosheet arrays with graphene layers as an anode for high-performance asymmetric supercapacitors. J. Mater. Chem. A, 2017, 5, 24594–24601.

[12] J. Ba, J. Qi*, J. Feng, et al., In situ consume excessive Ti element and form fine Ti based compounds as reinforcements for strengthening C/C-TC4 joints.Vacuum, 2017, 143, 303-311.

[13] Zhijie Wang, Jian Cao*, Jianshu Jia, Junlei Qi*, Yongxian Huang and Jicai Feng, Making superhydrophobic surfaces with micro-stripe array structure by diffusion bonding and their applications in magnetic control microdroplet release systems, Advanced Materials Interfaces, 2017, 4 (21), **.

[14] Zhan Sun,L.X. Zhang,Jun Lei Qi,J. C. Feng,Effect of vertically oriented few-layer graphene on the wettability and interfacial reactions of the AgCuTi-SiO2f/SiO2 system, Scientific Reports, 2017, 7 (1), 224.

2016年

[1] J. L. Qi*, J. H. Lin, J. C. Feng, et al., Low resistance VFG-Microporous hybrid Al-based electrodes for supercapacitors. Nano Energy, 2016, 657-667.

[2] J. L. Qi*, J. H. Lin, J. C. Feng, et al., Plasma treatment on SiO2f/SiO2 composites for their assisted brazing with Nb. Vacuum, 2016, 136-139.

[3] J. H. Lin, J. L. Qi*, J. C. Feng, et al., Control interfacial microstructure and improve mechanical properties of TC4-SiO2f/SiO2 joint by AgCuTi with Cu foam as interlayer. Ceram. Int., 2016, 42, 16619-16625.

[4] Q. Ma, J. Qi*, J. Feng, et al., Regulating the surface structure of SiO2f/SiO2 composite for assisting in brazing with Nb. Mater. Lett., 2016, 182, 159-162.

[5] Zhang L X, Sun Z, Qi J L, et al. Understanding the growth mechanism of vertically aligned graphene and control of its wettability. Carbon, 2016, 103: 339-345.

[6] 刘世艳, 张丽霞, 亓钧雷, 冯吉才,SiC_P/Al 复合材料的真空扩散钎焊,焊接学报,2016, 37 (10), 117-120.


ResearchGate 网站个人主页

链接名称ResearchGate个人主页

链接地址https://www.researchgate.net/profile/Jun_Qi9

简单介绍所有论文的PDF文件均可以从ResearchGate网站下载


专利

申请国家(或国防)发明专利60余项,授权发明专利40项(第一发明人31项),主要授权发明专利如下:

更新截止至2016年07月

1.亓钧雷,林景煌,冯吉才等.一种制备纳米片结构氧化钴电极的方法,2014.12中国,ZL**3.7.

2.亓钧雷,林景煌,冯吉才等.多孔中间层结构钎缝的异种材料钎焊方法,2014.12,中国,ZL**1.7.

3.亓钧雷,林景煌,冯吉才等.一种新型陶瓷基复合材料低温表面渗碳辅助钎焊方法,2014.7,中国,ZL**4.2.

4.亓钧雷,张天琪,冯吉才等.一种高效原位制备石墨烯增强铜基复合材料的方法,2014.2,中国,ZL**9.5.

5.亓钧雷,张天琪,冯吉才等.一种低温高效制备石墨烯增强铜基复合钎料的方法,2014.2,中国,ZL**2.0

6.亓钧雷,万禹含,冯吉才等.一种陶瓷基复合材料与金属材料的石墨烯辅助钎焊方法,2014.6,中国,ZL**8.1.

7.亓钧雷,郭志龙,冯吉才等.原位生长碳纳米管增强TiNi高温钎料的制备方法,2013.4,中国,ZL**6.6.

8.亓钧雷,张丽霞,冯吉才等.一种低温高效制备大尺寸石墨烯的方法,2013.4,中国,ZL**1.6.

9.亓钧雷,张丽霞,冯吉才等.一种低成本制备大尺寸单晶石墨烯的方法,2013.4.中国,ZL**8.7.

10.亓钧雷,张夫,冯吉才等.一种石墨烯-铂超级电容器复合电极材料的制备方法,2013.12,中国,ZL**4.X.

11.亓钧雷,张丽霞,曹健,冯吉才.一种原位反应制备碳纳米管增强钛基复合材料的方法.2011.10,中国, ZL**8.4


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