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High-resolution Crvo-EM Studies of Amyloid Fibrils in Neurodegenerative Diseases
Recent Advances of Phosphorescent Metal Complexes
环境学术沙龙第702期:城市大气新粒子生成与生长
最优潮流的可行性恢复映射深度神经网络
报告题目:
Interface-controlled materials for solar energy conversion: semiconducting nanocrystal-solids
 报告人:
Prof. Stefan Martin Wippermann
Max-Planck Institute for Iron Research, Germany
报告时间:
2016-06-07 10:00
报告地点:
理科楼三楼报告厅(C302)
主办单位:
量子物质科学协同创新中心&物理系
  简介:

Recent experimental advances demonstrate the synthesis of Colloidal nanocrystals (NCs), their arrangement in superlattices and subsequent embedding in a host matrix completely by inexpensive chemical solution processing. However, experimental techniques to probe such nanointerfaces at the microscopic level are largely unavailable. In this talk we discuss strategies how to model such NC-composites from first principles, identify relevant structural motifs and processes by atomistic thermodynamics, their impact on the resulting composite's properties and validation by experiment. We highlight approaches towards efficient solar energy conversion, such as multi-exciton generation (MEG), where a single high energy photon creates several electron-hole pairs. Focusing on Si-based nanostructures, "exotic" Si allotropes, and III-V compounds we discuss ideas to tailor the properties of NC-composites towards such novel photovoltaic architectures. 

个人简介:Professor Stefan Martin Wippermann got Ph.D at Paderborn University on atomic wire arrays with quasi one-dimensional electronic properties. He is now a group leader at Max-Planck Institute for Iron Research, Duesseldorf, Germany in Interface Chemistry and Surface Engineering department, electrochemical solid-liquid interfaces. His research interests are energy materials, surface chemistry in nanostructures, electron transport, theoretical vibrational and excitation, et. al.


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