基本信息
区定容 女 硕导 大连化学物理研究所
电子邮件:oudingrong@dicp.ac.cn
联系电话:**
手机号码:
通信地址:大连市中山路457号,燃料电池楼501房间
邮政编码:116023
研究领域研究工作主要涉及固体氧化物燃料电池材料的设计和制备、微观结构表征和构效关系研究。研究对象包括固体氧化物燃料电池的电解质材料、连解体材料、密封材料以及相关界面。研究思路是通过将微观结构表征技术——主要是纳米和原子尺度的表征——应用到燃料电池材料的研究中,发展微观组织分析、结构模型建立和计算模拟紧密结合的研究方法,深入地研究燃料电池材料中微观结构和性能之间关系,并根据以上研究结果进行材料的优化和设计。
招生信息
招生专业070304-物理化学
081701-化学工程
招生方向1、无机材料的制备和表征
2、电子显微分析和模拟
3、材料构效关系的研究
教育背景 1999年获清华大学材料科学与工程专业学士学位和环境科学与工程专业学士学位,2004年获清华大学材料科学与工程专业硕士和博士学位。2004年8月到日本物质材料研究机构(National Institute for Materials Science, Japan)燃料电池材料中心从事博士后研究工作,2006年开始同时受聘于东京大学(The University of Tokyo, Japan)做客座研究员。2009年11月作为大连化学物理研究所“百人计划”引进人才加入302组从事研究工作。
工作经历2004.8 - 2007.3 日本物质材料研究机构(NIMS),燃料电池材料中心, NIMS博士后研究员。
2005.6, 2006.2, 2006.12 澳大利亚昆士兰大学,显微学和微量分析中心(CMM),访问学者。
2007.4 - 2009.10 日本物质材料研究机构(NIMS),燃料电池材料中心,JSPS博士后研究员。
2009.11-至今 中科院大连化学物理研究所, 燃料电池研究室,副研究员
教授课程
专利与奖励
专利成果发明专利:
1. 区定容,朱静,王佳,朱若剑,赵嘉昊,周惠华,“含有无序纳米复合薄膜的光存储介质及其应用”,CN **
2. 区定容,朱静,赵嘉昊,周惠华,“提高远场光学显微镜分辨率的方法”,CN **
3. 区定容,朱静,赵嘉昊,周惠华,“含锑纳米复合薄膜及其制备方法”,CN **
4. 赵嘉昊,朱静,区定容,周惠华,“一种具有可控磁各向异性的磁性颗粒薄膜及其制备方法”,CN **.
5. F. YE, D.R. OU, T. MORI, K. FUGANE, K. FUKANE, “Cathode material e.g. used for cathodes for sensors comprises platinum particles as electrode substance, and carbon particle as electrically conductive substance. The platinum particle is supported by ceria particle surface”, JP **-A
6. 区定容,程谟杰,一种用于金属表面的复合涂层材料及其应用,201110 111717.X
7. 区定容,程谟杰,阳极支撑管型固体氧化物燃料电池的集电部件及其应用,201110 110200.9
出版信息
发表论文SCI收录的学术论文共55篇,代表性论文如下:
1. D. R. Ou, F. Ye, T. Mori, A. N. Cormack, R. J. Lewis and J. Drennan, “Defect clustering and local ordering in rare earth co-doped ceria”, PHYSICAL CHEMISTRY CHEMICAL PHYSICS 13, 9554-9560 (2011).
Impact factor: 4.116
2. D. R. Ou, T. Mori, H. Togasaki, M. Takahashi, F. Ye and J. Drennan, “Microstructural and Metal-Support Interaction of the Pt-CeO2/C Catalysts for DMFC Application”, Langmuir 27, 3856-3866 (2011).
Impact factor: 3.898
3. D. R. Ou, T. Mori, F. Ye, M. Miyayama, S. Nakayama, J. Zou, G. Auchterlonie and J. Drennan, “Microstructural characteristics of samarium-doped ceria (SDC) electrolyte film supported by Ni–SDC cermet anode”, Journal of the Electrochemical Society 156, B825-B830 (2009).
4. D. R. Ou, T. Mori, F. Ye, J. Zou, G. Auchterlonie and J. Drennan, “Oxygen vacancy ordering in lanthanide-doped ceria: Dopant-type dependence and structure model”, Physical Review B 77, 024108 (2008).
5. D. R. Ou, T. Mori, F. Ye, J. Zou, G. Auchterlonie and J. Drennan, “Microstructural inhomogeneity in holmium-doped ceria and its influence on the ionic conduction”, Journal of the Electrochemical Society 154, B616-B622 (2007)
(Selected by Virtual Journal of Nanoscale Science & Technology, Volume 15, Issue 19, 2007).
6. D. R. Ou, T. Mori, F. Ye, J. Zou, G. Auchterlonie and J. Drennan, “Oxygen vacancy ordering in heavily rare earth-doped CeO2”, Applied physics letters 89, 171911 (2006).
7. D. R. Ou, T. Mori, F. Ye, M. Takahashi, J. Zou and J. Drennan, “Microstructures and electrolytic properties of yttrium-doped ceria electrolytes”, Acta Materialia 54, 3737-3746 (2006).
8. D. R. Ou, J. Zhu, R. J. Zhu and J. Wang, “Local Near-Field Enhancement of Random Sb-SiN Films”, Applied Optics 43, 3073-3077 (2004).
9. D. R. Ou,J. Zhu and J. H. Zhao, “Approach for imaging optical super-resolution based on Sb films”, Applied physics letters 82, 1521-1523 (2003).
科研活动
科研项目1、燃料电池材料的原子和纳米尺度微观组织分析和设计,大连化物所创新基金(承担)。
2、燃料电池与分布式发电系统关键技术:25kW管式SOFC电堆技术,863计划(参与)
参与会议1. D. R. Ou, T. Mori, F. Ye, M. Miyayama, S. Nakayama, J. Zou, G. Auchterlonie and J. Drennan, “Microstructural features of Ni–SDC cermet anode for intermediate-temperature SOFCs applications”, IUMRS-ICEM 2008 International Conference on Electronic Materials (Sydney, Australia, Jul 28-Aug 1, 2008), Oral presentation.
2. D. R. Ou, T. Mori, F. Ye, J. Zou and J. Drennan, “Influence of sintering processes on microstructure and electrical properties of yttrium-doped ceria”, 24th Japan-Korea International Seminar on Ceramics (Kakegawa, Shizuoka, Japan, Nov 20-22, 2007), Oral presentation.
3. D. R. Ou, T. Mori, F. Ye, J. Zou and J. Drennan, “TEM study of the microstructures in Y-doped ceria and Ho-doped ceria electrolytes”, 16th International Microscopy Congress (Sapporo, Japan, Sep 3-8, 2006), Oral presentation.
4. D. R. Ou, T. Mori, F. Ye, J. Zou, and J. Drennan, “Aggregation of dopant cations and their effect on electrolytic properties of yttrium doped ceria”, 1st International Congress on Ceramics (Toronto, Canada, Jun 25-29, 2006), Poster.
5. D. R. Ou, T. Mori, F. Ye, J Zou and J. Drennan, “Comparison between Y-doped ceria and Ho-doped ceria: Electrolytic properties and microstructure”, E-MRS Spring Meeting 2006 (Nice, France, May 29-Jun 2, 2006), Oral presentation
6. D. R. Ou, T. Mori, F. Ye, J Zou, and J. Drennan, “Microstructural features in Y-doped CeO2 electrolytes”, 4th International Conference on Materials Processing for Properties and Performance (Tsukuba, Japan, Nov 30-Dec 2, 2005), Oral presentation.
7. D. R. Ou, T. Mori, R. Buchanan, F. Ye, J. Zou, and J. Drennan, “Influence of microstructural features on electrolytic properties in Y2O3 doped CeO2 electrolytes”, 15th International Conference on Solid State Ionics (Baden-Beden, Germany, Jul 17-22, 2005), Oral presentation.
合作情况与日本物质材料研究所建立了良好的合作关系,已签订合作备忘录
指导学生
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