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首页> 外文期刊>The Journal of Organic Chemistry >Expanding the Subporphyrazine Chromophore by Conjugation of Phenylene and Vinylene Substituents: Rainbow SubPzs
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Expanding the Subporphyrazine Chromophore by Conjugation of Phenylene and Vinylene Substituents: Rainbow SubPzs

机译:通过亚苯基和乙烯基取代基缀合出少孢子杂嗪发色团:彩虹Subpzs

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摘要

The efficiency of the vinylene moiety as a linker to intercommunicate the subporphyrazine (SubPz) core with other chromophores and redox active systems has been examined. In addition, different substitution patterns for hexaarylated SubPzs have been explored in order to control the absorption, fluorescence, and redox properties independently of one another. Besides X-ray crystallography, complete spectroscopic and electrochemical characterizations have been performed, and the conclusions have been supported by density functional theory calculations. The absorption and emission profiles, as well as the organization of the macrocycles in the crystalline state, are strongly determined by the substitution pattern. Within the hexaarylated family, para-substitution with electron-rich moieties (i.e., phenylene or ether) red-shifts both the SubPz absorption and emission bands. Progressive fading of these effects upon extending oligophenylene branches from one to three units evidences the less efficient electronic delocalization over the phenyl ends as the oligophenylene branch is enlarged. Contrasting, meta-substitution produces little variation or blue shift of the SubPz Q-band, while bathochromic shifts are always observed for the emission bands. In hexavinylene-SubPzs, peripheral vinylene moieties adopt a coplanar configuration with the aromatic SubPz core, resulting in a pi-extended chromophore that preserves the unique electronic tunability of SubPzs. This is reflected by the strong alteration of the SubPz electronic properties produced by phenyl and biphenyl moieties attached to the vinylene ends.
机译:已经研究了亚乙烯基部分作为与其他发色团和氧化还原活性体系互通的链接剂与跨杂沙杂嗪(SubPZ)核的接头的效率。此外,已经探讨了用于六季亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚芳基的替代模式,以控制彼此独立地控制吸收,荧光和氧化还原性能。除了X射线晶体学,还进行了完整的光谱和电化学表征,并且在密度泛函理论计算中得到了结论。吸收和排放型材以及晶体状态中的宏杂种的组织被替代模式强烈确定。在六亚芳基的家族内,使用富含电子的部分(即亚苯基或醚)的替代替换,Subpz吸收和发射带。当寡缩蛋白分支扩大时,在延伸寡缩蛋白分支对寡缩蛋白分支延伸的渐进式电子临床化的逐渐消退。对比度,元取代产生了Subpz Q波段的几乎变化或蓝色偏移,而始终观察到发射带的碱度偏移。在六烷基 - Subpz中,外周乙烯基部分采用芳香族亚核核心采用共面构型,导致PI-扩展发色团,这些发色团保留了Subpz的独特电子可调性。这反映了通过苯基和附着在乙烯基端的苯基和联苯基部分产生的Subpz电子性质的强烈改变反映。

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