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傅 强 (Qiang Fu)
研究员 硕士生导师
(Professor, Ph. D.)
电话:+86-411-84379976
传真:+86-411-84694447
Email:qfu@dicp.ac.cn
Web: http://fruit.dicp.ac.cn/sic
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1996.7在北京理工大学化工与材料学院获学士学位;2000.7在北京理工大学材料科学研究中心获博士学位;2000.9 - 2005.3:德国马普学会金属研究所(Max Planck Institute for Metal Research, Stuttgart), 博士后研究;2005.4 - 2006.5:德国马普学会柏林Fritz Haber研究所(Fritz Haber Institute of the Max Planck Society, Berlin),博士后研究;2006.5受聘到中国科学院大连化学物理研究所工作,现为催化基础国家重点实验室研究员。1999年获中国科学院奖学金;2000年获德国马普学会奖学金(Max Planck Fellowship);2001年获北京理工大学优秀博士论文奖;2003年获全国优秀博士论文提名论文奖;2007年4月入选中国科学院"百人计划",享受“百人计划”入选者荣誉称号。
主要从事表面和界面催化的研究,即在纳米尺度上控制催化体系(包括纳米团簇金属催化剂、纳米薄膜催化剂)的制备,采用不同的原位和动态的表征手段研究表面催化反应过程,探讨多相催化中的微观反应机制及对催化反应(主要与能源化学相关的反应)的调控。
近期研究项目:
1.两维纳米薄膜体系(2D nanofilm catalysts)的表面催化研究:采用MBE法在原子和纳米尺度上精确控制2D薄膜催化剂的制备,通过改变薄膜的厚度来调控薄膜催化剂的表面电子态,考察薄膜厚度对催化性能的影响,理解多相催化中的纳米尺寸效应。
2.双组分催化体系(Binary Catalysts)的界面催化研究:设计和调控双组分催化体系的组成和界面结构,运用原位的谱学和显微学手段考察各组分在表面反应中的作用,在原子和分子层次上研究活性组分间的协同作用,设计新型高效催化剂并实现贵金属替代。
3.发展表面催化研究新技术:发展新型动态表面催化研究新技术,实现表面催化过程的原位高压研究和催化反应的实时监测。
主要研究手段:
Omicron超高真空多功能纳米探针系统(Omicron UHV Multiprobe system )一套:包括分子束外延生长室、X射线光电子能谱仪、紫外光电子能谱仪、离子散射谱仪、高分辨电子能量损失谱仪、扫描隧穿显微镜、原子力显微镜、光电子发射显微镜、高压反应室。
Leybold超高真空表面分析系统一套:包括X射线光电子能谱仪、紫外光电子能谱仪、离子散射谱仪、高分辨电子能量损失谱仪、程序升温热脱附谱仪。
Dr. Fu obtained his Ph.D. in 2000 from Beijing Institute of Technology. Subsequently, he joined the Max Planck Institute for Metal Research, Stuttgart, Germany for his postdoctoral studies under the sponsorship of the Max Planck Fellowship. In 2005, he moved to Fritz Haber Institute of the Max Planck Society, Berlin. In 2006, he joined the State Key Laboratory of Catalysis (SKLC) at Dalian Institute of Chemical Physics (DICP), the Chinese Academy of Sciences (CAS). His current research programs are concerned with the surface and interface catalysis. The main topic is to study the relationship between the catalyst surface electronics and the surface catalytic reactions.
His specific research interest includes: 1) the surface catalysis at confined nano-catalyst systems including metal clusters and ultrathin catalyst films; 2) the surface catalysis at bimetallic catalyst systems; 3) development of new characterization techniques for surface catalysis study. The experimental facilities include an Omicron UHV multiprobe system (with MBE sources, XPS, UPS, ISS, HREELS, STM/AFM, PEEM, and high pressure cell) and a Leobold surface analysis system (with MBE sources, XPS, UPS, AES, ISS, HREELS, and TPD).
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| 代表性文章 REPRESENTATIVE PUBLICATIONS |
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Qiang Fu, Thomas Wagner, “Interaction of nanostructured metal overlayers with oxide surfaces”, Surface Science Reports 62 431-498 (2007) (Invited review) |
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Zhen Zhang, Qiang Fu, Hui Zhang, Yong Li, Yunxi Yao, Dali Tan, Xinhe Bao, “Enhanced methanol dissociation on nanostructured 2D Al overlayers”, Journal of Physical Chemistry C 111, 13524-13530 (2007). |
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Qiang Fu, Thomas Wagner, Metal-oxide interfacial reactions: Oxidation of metals on SrTiO3 (100) and TiO2 (110), Journal of Physical Chemistry B 109, 11697-11705 (2005). |
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Qiang Fu, Thomas Wagner, Diffusion-corrected simultaneous multilayer growth model, Physical Review Letters, 90, 106105 (2003). |
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Qiang Fu, Thomas Wagner, Sven Olliges, Heinz-Dieter Carstanjen, “Metal-oxide interfacial reactions: Encapsulation of Pd on TiO2 (110)”, Journal of Physical Chemistry B 109, 944-951 (2005). |
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