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Photoactivatable Anthracenes

机译:可光活化的蒽

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Fifteen substituted maleimide cycloadducts of anthracene derivatives were synthesized in one or two steps from available precursors in yields ranging from 32 to 63%. They differ in the nature of the group on the maleimide nitrogen atom and of the substituents on the anthracene platform. In all instances, the introduction of a maleimide bridge across positions 9 and 10 of the anthracene skeleton isolates electronically its peripheral phenylene rings and suppresses its characteristic fluorescence. The cycloadducts with a 4- (dimethylamino)phenyl group on the maleimide nitrogen atom undergo retro-cycloaddition upon ultraviolet illumination with quantum yields ranging from 0.001 to 0.01. This structural transformation restores the aromatic character of the central ring of the oligoacene chromophore and activates its emission with fluorescence quantum yields ranging from 0.07 to 0.85. Thus, this particular choice of building blocks for the construction of photoresponsive compounds can translate into viable operating principles for fluorescence activation and, ultimately, lead to the realization of valuable photoactivatable fluorophores for imaging applications.
机译:从可用的前体以一到两个步骤合成十五个蒽衍生物的取代马来酰亚胺环加合物,产率为32%至63%。它们在马来酰亚胺氮原子上的基团和蒽平台上的取代基的性质上不同。在所有情况下,在蒽骨架的9和10位上引入马来酰亚胺桥可将其周围的亚苯基环电隔离,并抑制其特征性的荧光。马来酰亚胺氮原子上具有4-(二甲基氨基)苯基的环加合物在紫外线照射下进行逆环加成,其量子产率为0.001至0.01。这种结构转变恢复了并茂发色团中心环的芳香特性,并以0.07至0.85的荧光量子产率激活了其发射。因此,用于构建光敏化合物的构建基块的这种特定选择可以转化为荧光激活的可行操作原理,并最终导致实现用于成像应用的有价值的可光激活的荧光团。

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