首页> 外文期刊>The Journal of Organic Chemistry >Modular functional integration of a two-input INH logic gate with a fluorophore-spacer-receptor(1)-spacer-receptor(2) conjugate
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Modular functional integration of a two-input INH logic gate with a fluorophore-spacer-receptor(1)-spacer-receptor(2) conjugate

机译:两输入INH逻辑门与荧光团-间隔子受体(1)-间隔子受体(2)共轭物的模块化功能集成

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The synthesis and photophysical characterization of a fluorophore-spacer-receptor(1)spacer-receptor(2) system, which combines the 1,8-naphthalimide fluorophore with amine and urea receptor units, is reported. Photoinduced electron transfer (PET) from the amino group was blocked by protonation, leading to a drastic fluorescence enhancement (ca. 20 times). Interaction of the urea receptor with anions (F-, AcO-, H2PO4-) via hydrogen bonding or urea NH deprotonation resulted in significant fluorescence quenching of the 1,8-naphthalimide chromophore in an appropriately chosen model compound (ca. 30-45%). In the presence of both chemical input species, protons and anions, the fluorescence was also quenched. The binding of the anions by NH+ ammonium receptor has been assumed. The apparent anion binding constants of the protonated conjugate follow the basicity trend of the anions: AcO- similar to F- > H2PO4-. The investigated system constitutes an example for the flexible and modular realization of functionally integrated INH logic at the molecular level, using protons and anions as chemical input species and the fluorescence of a PET-active signaling unit as output.
机译:报道了结合了1,8-萘二甲酰亚胺荧光团与胺和尿素受体单元的荧光团-间隔基受体(1)-间隔基(2)系统的合成和光物理特性。来自氨基的光致电子转移(PET)被质子化阻止,导致荧光急剧增强(约20倍)。尿素受体通过氢键或尿素NH脱质子与阴离子(F-,AcO-,H2PO4-)的相互作用导致在适当选择的模型化合物(约30-45%)中1,8-萘二甲酰亚胺生色团的荧光猝灭。 )。在两种化学输入物质,质子和阴离子的存在下,荧光也被淬灭。假定NH +铵受体与阴离子结合。质子化缀合物的表观阴离子结合常数遵循阴离子的碱性趋势:AcO-类似于F-> H2PO4-。所研究的系统构成了一个在分子水平上灵活集成功能性INH逻辑的模块化示例,使用质子和阴离子作为化学输入物质,并使用PET活性信号单元的荧光作为输出。

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