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德国慕尼黑工业大学Dr. Yiqi Zhang 6月14日上午学术报告
发布时间:2017-6-9 14:04:44 点击:

Presenter: Dr. Yiqi Zhang (Technical University of Munich

Topic: Design functional molecular nanomaterials at interfaces 

Time: 10:00 AM, Jun. 14th (Wednesday)

Location: Conference Room B, BLDG 909-1F

 

Abstract

Interfacial molecular nanoscience is an interdisciplinary field where physics, chemistry and material science merge together. It is of great interest to explore novel molecule-based nanomaterials using design principles in analogy to inorganic solid-state compounds, targeting comparable or even superior functionalities and properties. The fabrication route is based on bottom-up supramolecular engineering [1,2] and on-surface synthesis [3], aiming towards molecular-level control of complex matters [4]. The physical and chemical properties of molecular nanomaterials are characterized using complementary surface science techniques [5]. Five topics will be addressed to demonstrate the potential of such design principle.

 

Biography:

 

EDUCATION

 

2003-2008    Ph.D. in Condensed Matter Physics, University of Science and Technology of China, Supervisor: Prof. Xiaoguang Li (李晓光)

 

1999-2003    B.S. in Physics, East China University of Science and Technology

 

ACADEMIC TRACK

 

2011-present

Postdoctoral researcher, Department of Physics, Technical University of

Munich, “On-surface synthesis of carbon-based nanomaterials

2008-2011

Postdoctoral researcher, Max Planck Institute of Microstructure Physics

 

 

Nanoscale spin mapping on magnetic overlayers

2003-2008

Postgraduate student, University of Science and Technology of China

 

 

Vortex dynamics in stripe-ordered high-temperature superconductors

 

SELECTED PUBLICATIONS (Researcher ID: N-2399-2014)

 

1. Y. -Q. Zhang, M. Paszkiewicz, P. Du, L. Zhang, T. Lin, M. Ruben, A. P. Seitsonen, J. V. Barth, and F. Klappenberger Nature Chemistry, under revision.

 

2. Y. -Q. Zhang, T. Lin, et al., Angew. Chem. Int. Ed. 10.1002/anie.201702771

 

3. Y. -Q. Zhang, J. Björk, J. V. Barth, and F. Klappenberger, Nano Lett. 16, 4274 (2016).

 

4. F. Klappenberger, Y.-Q. Zhang, J. Björk, S. Klyatskaya, M. Ruben, and J. V. Barth, Acc. Chem. Res. 48, 2140 (2015).

 

 

5. Y. -Q. Zhang, N. Kepčija, M. Kleinschrodt, K. Diller, S. Fischer, A. C. Papageorgiou, F. Allegretti, J. Björk,S. Klyatskaya, F. Klappenberger, M. Ruben, and J. V. Barth, Nat. Commun. 3, 1286 (2012).

 



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