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个人简介

朱斌 制冷与建筑环境系教授。1998 年起在瑞典皇家工学院任教授级高级研究员。 1996 以来主持瑞典国家国际合作基金委(STINT Fellow),瑞典国家创新局,瑞典国家能源局,瑞典国家研究理事会和欧盟先进材料和燃料电池以及欧盟-中国研究网络www.nanocofc.com 多次在瑞典国家组织的国际专家评审评为国际领先的研究地位。 在新型燃料电池和绿色能源研究的进展和突破并进入 2014年-至今连续5 年中国高被引学者榜单(Elsevier 能源类)。在材料和能源等国际顶级期刊发表论文 300 多篇,引用8100 多次,H-因子 47, 引领国际燃料电池研究发展的新方向。创立了半导体离子材料和半导体离子学以及在新一代能源技术的应用:发明了单部件无电解质燃料电池,半导体离子燃料电池,近五年以第一作者或通讯作者发表 SCI 论文 60 多篇。影响因子大于 10 的 T1 论文 8 篇(自然子刊2篇)。 教学课程 固体离子学和能源器件; 半导体离子学和能源器件;燃料电池 科研 教改项目 1、国家自然科学基金面上项目:基于半导体-离子导体异质结构复合材料隔膜的燃料电池基础研究(51772080),主持,2018.1-2021.12 2、省部项目:湖北省“百人计划”,主持,2013.1-2019.12 3、国家项目:瑞典面上项目,主持,2012.1-2016.12 4、国家项目:欧盟攻关项目,主持,2012.1-2015.8 5、国家项目:瑞典攻关项目,主持,2009.1-2012.11 专著: Zhu Bin,Rizwan Raza,Liangdong Fan and Chunwen Sun,Solid Oxide Fuel Cells:From Electrolyte-Based to Electrolyte-Free Devices,Wiley出版社,2020 专利申请 1、用锰酸锂与稀土氧化物复合材料制造低温固体氧化物燃料电池, 201310747475.2 2、一种具有肖特基结无电解质隔膜的单部件燃料电池,201410309914.6 荣誉 奖励 2018年可持续能源技术创新国际奖,英国,20180822 指导学生 1、硕士:张炜,2014-2017;2、邓辉,氧化铈基电解质在单部件燃料电池中的应用,2015-2018, 基于掺杂氧化铈与钙太矿复合材料的低温固体氧化物燃料电池;3、冯楚,基于镧镨共掺杂氧化铈的固体氧化物燃料电池研究,2015- 2018;4、宓有全,基于新型功能半导体离子材料的低温固体氧化物燃料电池,2016-2019. 已经毕业代表性博士: 1、Rizwan Raza, Functional nanocomposites for advanced fuel cell technology and polygeneration; 2008-2011; 2、Liangdong Fan, Development and characterization of functional composite materials for advanced energy conversion technologies; 2010-2013; 3、Chen Xia, Development of natural mineral composite for low temperature solid oxide fuel cell, 2015-2019; 今年即将毕业的博士 4、MUHAMMAD NAVEED MUSHTAQ, Design of catalytic function and ionic transport in perovskite oxides for low temperature solid oxide fuel cell, 2017-2020; 5、Muhammad Yousaf, Semiconducting ferrite (spinel, garnet) materials for Low temperature solid oxide fuel cell (LT-SOFC), 2017-2020; 现在在指导的博士生还有:Nabeela akbar;M A K Yousaf Shah; Sajid Rauf

研究领域

先进燃料电池和固体电池(Advanced fuel cells and Solid batteries):主要包括半导体离子燃料电池,异质复合材料界面离子快速输运,内建电场(BIEF)激发超离子导电/体

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

[1] Y.Wu, B.Zhu, M.Huang, L.Liu, Q.Shi, M.Akbar, C.Chen, J.Wei, J.F.Li, L.R.Zheng, J.S.Kim, H.B.Song, Proton transport enabled by a field-induced metallic state in a semiconductor heterostructure, issue Jul 10, 2020,Vol.369, 184 https://science.sciencemag.org/content/369/6500/184 [2]C. Xia, Y. Mi, B. Wang, B. Lin, G. Chen and B. Zhu. Shaping triple-conducting semiconductor BaCo0.4Fe0.4Zr0.1Y0.1O3-δ into an electrolyte for low-temperature solid oxide fuel cells. Nature Communications, 2019, 10(1):1-9,收录 [3] Y. Xing, Y. Wu, L. Li, Q. Shi, J. Shi, S. Yun, M. Akbar, B. Wang, J. Kim and B. Zhu. Proton Shuttles in CeO2/CeO2−δCore–Shell Structure. ACS Energy Letters, 2019, 4(11): 2601~2607,收录. [4] B. Wang, B. Zhu, S. Yun, W. Zhang, C. Xia, M. Afzal, Y. Cai, Y. Liu, Y. Wang and H. Wang. Fast ionic conduction in semiconductor CeO2-δ electrolyte fuel cells. NPG Asia Materials, 2019, 11(1):1-12,收录. [5] L. Fan, B. Zhu, P. Su and C. He. Nanomaterials and technologies for low temperature solid oxide fuel cells: Recent advances, challenges and opportunities. Nano Energy, 2018, 45: 148~176,收录. [6] B. Zhu, B. Wang, Y. Wang, R. Raza, W. Tan, J. Kim, P. A. van Aken and P. Lund . Charge separation and transport in La 0.6 Sr 0.4 Co 0.2 Fe 0.8 O 3-δ and ion-doping ceria heterostructure material for new generation fuel cell. Nano Energy, 2017, 37: 195~202,收录. [7] B. Zhu, Y. Z. Huang, L. D. Fan, Y. Ma, B. Y. Wang, C. Xia, M. Afzal, B. W. Zhang, W. J. Dong, H. Wang and P. D. Lund. Novel fuel cell with nanocomposite functional layer designed by perovskite solar cell principle. Nano Energy, 2016, 19: 156~164,收录. [8] B. Zhu, P. D. Lund, R. Raza, Y. Ma, L. Fan, M. Afzal, J. Patakangas, Y. He, Y. Zhao, W. Tan, Q. Huang, J. Zhang and H. Wang. Schottky Junction Effect on High Performance Fuel Cells Based on Nanocomposite Materials. Advanced Energy Materials, 2015, 5(8): 1-6,收录. [9] B. Zhu, P. Lund, R. Raza, J. Patakangas, Q. A. Huang, L. D. Fan and M. Singh. A new energy conversion technology based on nano-redox and nano-device processes. Nano Energy, 2013, 2(6): 1179~1185,收录 [10] B. Zhu, R. Raza, G. Abbas, M. Singh, F. I. T. O. Skolan, KTH, Energiteknik and O. V. Kraft. An Electrolyte‐Free Fuel Cell Constructed from One Homogenous Layer with Mixed Conductivity. Advanced Functional Materials, 2011, 21(13): 2465~2469,收录. [11] B. Zhu, R. Raza, H. Qin, Q. Liu, L. Fan, F. I. T. O. Skolan, KTH, Energiteknik and O. V. Kraft. Fuel cells based on electrolyte and non-electrolyte separators. Energy & Environmental Science, 2011, 4(8): 2986-2992,收录.

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