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Unsymmetrical Cruciforms

机译:不对称十字形

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Five new, unsymmetrical 1,4-distyry1-2,5-bisphenylethynylbenzenes (cruciforms, XF) have been prepared by a sequential Horner reaction of the bisphosphonate of 2.5-diiodo-1,4-xylene with two different aromatic aldehydes. The obtained diiodide was coupled to phenylacetylene under Sonogashira conditions with (Ph_3P)_2PdCl_2 as catalyst. The resulting XFs carry dibutylamino, pyridyl, cyano, and diphenylamino residues on their styryl arms to give rise to donor-, acceptor-, and donoracceptor-substituted XFs. The optical properties of these XFs were investigated. Titration studies using trifluoroacetic acid tracked changes in the electronic structure of the XFs upon protonation. Donor XFs display a blue shift in absorption and emission upon protonation, while the pyridyl-substituted XF displays red shift in absorption and emission upon protonation. In the case of the donor-acceptor XF carrying a pyridyl and an aminostyryl arm, the first protonation occurs either on the pyridine or on the dibutylamino arm; a red shift is seen in absorption (for the former) and a blue shift is observed in emission (for the latter). The titration studies indicate that the protonated XFs do not display kinetic photoacidity when operating either in dichloromethane or acetonitrile solutions. The trends observed for protonation were mirrored when the XFs bind to metal cations. While the binding constants of the metal cations to the XFs were lower than for that for protons, as in some cases full metalation of the XF could not be obtained, the results were qualitatively the same. We did not find dynamic excited-state decomplexation events in the XFs that we have investigated. The XFs, stilbene derivatives, are different from other reported, similarly structured fluorophores as they show significant ratiometric changes in emission upon metal complexation; thus, distyrylbenzene-derived fluorophores may be, in the end, viable choices as platforms for metal ion detection.
机译:通过2.5-二碘-1,4-二甲苯的双膦酸酯与两种不同的芳族醛的连续Horner反应制备了五个新的不对称1,4-二甲苯基1,2,5-双苯基乙炔基苯(十字形,XF)。以(Ph_3P)_2PdCl_2为催化剂,在Sonogashira条件下将获得的二碘化物与苯乙炔偶联。所得的XF在其苯乙烯基臂上带有二丁基氨基,吡啶基,氰基和二苯基氨基残基,从而产生供体,受体和供体受体取代的XF。研究了这些XF的光学性质。使用三氟乙酸的滴定研究追踪了质子化后XFs电子结构的变化。供体XF在质子化时显示吸收和发射的蓝移,而吡啶基取代的XF在质子化时显示吸收和发射的红移。在供体-受体XF带有吡啶基和氨基苯乙烯基臂的情况下,第一个质子化发生在吡啶或二丁基氨基臂上。在吸收(对于前者)中观察到红移,而在发射(对于后者)中观察到蓝移。滴定研究表明,在二氯甲烷或乙腈溶液中操作时,质子化的XF不会显示出动力学光酸度。当XF与金属阳离子结合时,观察到的质子化趋势得到反映。尽管金属阳离子与XF的结合常数低于质子的结合常数,但在某些情况下无法获得XF的完全金属化,结果在质量上是相同的。在我们研究的XF中,我们没有发现动态激发态分解事件。 XF,二苯乙烯衍生物,与其他报道的结构相似的荧光团不同,因为它们在金属络合时显示出显着的比例发光变化。因此,二苯乙烯基苯衍生的荧光团最终可以作为金属离子检测平台的可行选择。

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