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Synthesis, Characterization, and Memory Performance of Two Phenazine/Triphenylamine-Based Organic Small Molecules through Donor-Acceptor Design

机译:通过供体-受体设计的两种吩嗪/三苯胺基有机小分子的合成,表征和记忆性能

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摘要

Two organic small molecule memory materials, TPA-2BIPs and TPA-3BIPs, containing triphenylamine (TPA) as a donor and 4,11-bis((triisopropylsilyl)ethynyl)-1H-imidazo[4,5-b]phenazine (BIP) units as acceptors have been synthesized and characterized. Sandwich-structure memory devices based on these two molecules have been fabricated and the as-fabricated devices displayed similar switching behavior but different ON/OFF ratios. The analysis of AFM images indicates that increasing the numbers of acceptors changes the stacking of molecules in the solid state, which results in different morphology and microstructures in films. Although the switching behavior is not significantly different with increasing acceptor moieties, more acceptor groups do help to enhance the stacking of the molecules in the solid state to generate more consistent switching performance.
机译:两种有机小分子存储材料,TPA-2BIP和TPA-3BIP,包含三苯胺(TPA)作为供体和4,11-双((三异丙基甲硅烷基)乙炔基)-1H-咪唑并[4,5-b]吩嗪(BIP)已经合成并表征了作为受体的单元。已经制造了基于这两个分子的夹心结构存储器件,并且所制造的器件显示出相似的开关行为,但是具有不同的开/关比。对AFM图像的分析表明,增加受体数量会改变固态分子的堆积,从而导致薄膜的形态和微观结构不同。尽管开关行为随受体部分的增加而变化不大,但更多的受体基团确实有助于增强固态分子的堆积,从而产生更一致的开关性能。

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