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A fluorescent AND logic gate based on a ferrocene-naphthalimide-piperazine format responsive to acidity and oxidizability

机译:响应于酸度和氧化性的荧光和逻辑栅极基于二茂铁 - 萘酰亚胺 - 哌嗪形式的荧光和逻辑栅极

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摘要

A novel fluorescent molecular logic gate 1 is demonstrated as a two-input AND logic gate for the detection of acidity and oxidizability. Designed according to an electron-donor-spacer fluorophore-spacer-receptor' format, the modules are represented by ferrocene as the electron donor, 1,8-naphthalimide as the fluorophore and piperazine as the proton receptor. In the presence of elevated concentrations of H+ and Fe3+, the molecule switches 'on' emitting at lambda(max), = 530 nm with Phi(f) = 0.060 at 10(-4) MH+ and 50 mu M Fe3+. The H+ binding and apparent Fe3+ binding constants determined by fluorimetric titrations in 1:1 (v/v) methanol/water are log beta(H+) = 8.1 and log beta(Fe3+) = 4.7. Modulation of the fluorescence output results from controlling competing photoinduced electron transfer (PET) at the ferrocene end and internal charge transfer (ICT) at the piperazine end. Time-resolved fluorescence spectroscopy reveals a single fluorescent lifetime of 5.8 ns, while from absorption transient spectroscopy a remarkable fast decay signal 2 ps is observed. Comparison is made with methylpiperazine 2 and piperazine fluorescent pH indicator 3 as model compounds.
机译:新颖的荧光分子逻辑栅极1被证明为用于检测酸度和氧化性的两输入和逻辑栅极。根据电子供体 - 间隔荧光团 - 间隔受体的形式设计,模块由二茂烯作为电子供体,1,8-萘二甲醚表示为荧光团和哌嗪作为质子受体。在存在升高的H +和Fe3 +的H +和Fe3 +的情况下,分子在λ(MAX)上发出'发射,= 530nm,PHI(f)= 0.060,在10(-4)MH +和50μmF3+下。通过荧光滴定在1:1(v / v)甲醇/水中测定的H +结合和表观Fe3 +结合常数是Logβ(H +)= 8.1和logβ(Fe3 +)= 4.7。荧光输出的调节通过在哌嗪末端的铁茂末端和内部电荷转移(ICT)处的竞争光致电子转移(PET)。时间分离的荧光光谱揭示了5.8ns的单个荧光寿命,而从吸收瞬态光谱到显着的快速衰减信号。观察到2 ps。用甲基哌嗪2和哌嗪荧光pH指示剂3作为模型化合物进行比较。

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