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Advanced opto-electronics materials by fullerene and acetylene scaffolding

机译:富勒烯和乙炔支架制造的先进光电材料

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摘要

Functional π-systems with unusual opto-electronic properties are intensively investigated from both fundamental research and technological application viewpoints. This article reports on novel π-conjugated systems obtained by acetylenic and fullerene scaffolding. Linearly conjugated acetylenic nanorods, consisting of monodisperse poly(triacetylene) (PTA) oligomers and extending up to 18 nm length, were prepared to investigate the limits of effective conjugation and to explore at which length a monodisperse oligomer reaches the properties of an infinite polydisperse polymer. With the cyanoethynylethenes (CEEs), a powerful new class of electron acceptors is introduced that undergo intense intramolecular charge-transfer (CT) interactions with appended donors. Macrocyclic scaffolds with unusual opto-electronic properties are perethynylated dehydroannulenes, expanded radialenes, and radiaannulenes bearing peripheral dialkylanilino donor groups. Extended porphyrin-fullerene conjugates are investigated for their novel photophysical and efficient multicharge storage properties. Self-assembly of fullerenes and porphyrins, governed by weak interactions between the two components, leads to unprecedented nanopatterned surfaces that are investigated by scanning tunneling microscopy (STM)
机译:从基础研究和技术应用的观点出发,对具有异常光电特性的功能π系统进行了深入研究。本文报道了通过炔和富勒烯骨架获得的新型π-共轭体系。制备了线性共轭炔纳米棒,该棒由单分散的聚(三乙炔)(PTA)低聚物组成,并延伸到18 nm长,以研究有效共轭的极限,并探索单分散的低聚物在什么长度上达到无限多分散聚合物的性能。使用氰基乙炔(CEE),引入了功能强大的新型电子受体,该电子受体与附加的供体进行强烈的分子内电荷转移(CT)相互作用。具有不寻常的光电性能的大环骨架是带有周边二烷基苯胺基供体基团的乙炔基化脱氢环戊烯,膨胀的radial烯和s基环戊烯。研究了扩展的卟啉-富勒烯共轭物的新型光物理和有效的多电荷存储特性。富勒烯和卟啉的自组装受两种组分之间弱相互作用的控制,导致了前所未有的纳米图案化表面,该表面已通过扫描隧道显微镜(STM)进行了研究

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    Diederich, François;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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