π-Extended Diphosphonium-Bridged Ladder Stilbenes: Water-Soluble Fluorophores with up to Eight Annulated Rings

IF 7.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Sebastian Senn, Jean-Marc Mörsdorf, Maria-Sophie Bertrams, Christoph Kerzig, Joachim Ballmann
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Abstract

Diphosphapentalene-derived P-heterocyclic materials with two directly fused phospholes are fairly scarce, at least in comparison to their simpler congeners containing only one phosphole entity. To fill that void, π-conjugated naphtho-fused phospholo[3,2-b]phosphole dications were prepared via in-situ oxidation of the corresponding diphosphines. In the case of one specific naphtho-annulation pattern, a hitherto unprecedented bis-(Δ2-phosphetene) dication was formed selectively and isolated as a colorless powder. DFT modelling studies revealed that this bis-(Δ2-phosphetenium) salt is produced via single electron transfer steps, while all the phospholo[3,2-b]phosphole salts may either be generated via their P-diylidic counterparts or via similar radical mechanisms. Exploiting this knowledge, the dicationic phospholo[3,2-b]phosphole isomer of the bis-(Δ2-phosphetenium) salt was isolated as well. In view of the high fluorescence quantum yields of these naphtho-fused phospholo[3,2-b]phosphole salts in aqueous solution, linearly π-extended anthraceno-fused derivatives were developed in order to bathochromically shift their emissions into the biological window. While detailed optoelectronic studies confirmed our expectations, the utmost remarkable observation is that even the anthraceno-fused materials were found to be sufficiently soluble in water, despite the fact that these fluorophores comprise up to eight fused rings.
π-扩展二磷桥梯形二苯乙烯:最多八个环的水溶性荧光团
具有两个直接融合的磷孔的二磷五烯衍生的p -杂环材料相当稀少,至少与仅含有一个磷孔实体的更简单的同族材料相比是如此。为了填补这一空白,通过原位氧化相应的二膦,制备了π共轭萘融合膦[3,2-b]膦孔指示物。在一种特殊的萘环模式的情况下,一个迄今为止前所未有的bis-(Δ2-phosphetene)被选择性地形成并分离为无色粉末。DFT模型研究表明,双-(Δ2-phosphetenium)盐是通过单电子转移步骤产生的,而所有的磷[3,2-b]磷孔盐可以通过它们的p -二烷基对立物或通过类似的自由基机制产生。利用这一知识,双-(Δ2-phosphetenium)盐的指示磷酸[3,2-b]磷孔异构体也被分离出来。鉴于这些萘-融合磷[3,2-b]磷盐在水溶液中具有较高的荧光量子产率,我们开发了线性π扩展蒽酮融合衍生物,以便将它们的发射色移到生物窗口中。虽然详细的光电研究证实了我们的期望,但最引人注目的观察结果是,即使是蒽融合材料也被发现在水中充分溶解,尽管这些荧光团由多达八个融合环组成。
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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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