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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:
Combining intra- and intermolecular charge-transfer: a new strategy towards molecular ferromagnets and multiferroics
 报告人:
Prof. Anna Painelli
University of Parma, Italy
报告时间:
2016-06-22 10:00
报告地点:
清华大学蒙民伟科技大楼 南楼 S-527
主办单位:
化学系帅志刚课题组
  简介:
Abstract:  

Multiferroic materials represent a fascinating research field with enormous technological potential. Most of research is presently focused on inorganic multiferroics, whose physics and intrinsic limitations are fairly well understood. Comparatively, investigation on molecular multiferroics is still limited. Here [1] we introduce a new family of multifunctional molecular materials where new physics and new properties, including ferromagnetic and multiferroic behavior, emerge due to a subtle interplay between intramolecular electron transfer (IET) and intermolecular charge transfer (CT). Intermolecular CT interactions govern the behavior of CT salts, a large and widely investigated family of molecular materials, whose physics is driven by strongly correlated electrons on soft lattices in reduced dimensions, leading to multistability, photoinduced phase transitions, structural and electrical instabilities, charge ordering etc. CT salts span the whole range from insulators to metals and superconductors. Ferroelectricity was demonstrated and is actively investigated in several families of CT salts. IET is the key phenomenon in a variety of dyes and conjugated polymers that find use in OLED, organic solar cells and are exploited for their large nonlinear optical responses in bioimaging, nanofabrication, etc. The large nonlinearity of the responses of conjugated materials with low lying IET degrees of freedom shows up with a large and nontrivial sensitivity to the environment that eventually drives the system towards the rare, intriguing and technologically relevant phenomenon of multistability. Starting from chargetransfer crystals with a mixed stack motif, widely investigate for their ferroelectric behavior, we demonstrate via theoretical modelling that, decorating the crystal with stable organic radicals, it is possible to fine tune the CT and IET interplay as to obtain molecular materials with ferromagnetic as well as multiferroic behavior.

[1] Di Maiolo, F.; Sissa, C.; Painelli, A.; Combining intra- and intermolecular charge-transfer: a new strategy towards molecular ferromagnets and multiferroics. Sci. Rep. 6, 19682; doi: 10.1038/srep19682 (2016).


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