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Luminescence Properties of Fullerene

机译:富勒烯的发光特性

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The increasing miniaturisation on the field of electronics and information generation requires evaluation of new concepts and technologies. One method to fulfil the demands is use of single molecular units for data storage and processing. The primary research field of our work group are the properties of conducting polymers and switching molecules. The work includes synthesis of new organic materials for molecular electronics as well as the study of conductivity under different conditions, their dynamics upon optical excitation and their suitability for electronic devices. Materials to be studied are, above all, molecules with extended systems of conjugated double bonds. It covers one-dimensional conductors like polyacetylene and related polymers or oligomers whose structure are based on a polyacetylene backbone, but also more complex structures like graphite1-4.
机译:电子和信息生成领域的日益小型化需要对新概念和新技术进行评估。满足这些需求的一种方法是使用单分子单元进行数据存储和处理。我们工作组的主要研究领域是导电聚合物和开关分子的特性。工作包括合成用于分子电子学的新型有机材料,以及研究不同条件下的电导率、它们在光激发下的动力学及其对电子设备的适用性。首先,要研究的材料是具有扩展共轭双键系统的分子。它涵盖了聚乙炔等一维导体和相关聚合物或低聚物,其结构基于聚乙炔主链,但也包括更复杂的结构,如石墨[1-4]。

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