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Fluorimetric naphthalimide-based polymer logic beads responsive to acidity and oxidisability

机译:荧光萘硫代亚胺基聚合物逻辑珠响应于酸度和氧化性

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Molecular logic gates were synthesised and surface immobilised onto TentaGel (R) MB-NH2 (amino terminal functionalised polyethylene glycol ligands on polystyrene beads). Four naphthalimide-based tagged polymer solid beads are demonstrated expressing two-input H+, Fe3+-driven PASS 1, TRANSFER (H+) and AND Boolean logic functions. The photophysical properties of the model molecular compounds were studied by UV-visible absorption and fluorescence spectroscopy in 1 : 1 (v/v) methanol/water. TD-DFT calculations of the molecular Pourbaix sensors give insight into the mechanistic details of fluorescence modulation controlled by internal charge transfer (ICT) and photoinduced electron transfer (PET). Both colour and fluorescence emission can be used to distinguish the heterogeneous polymer beads. Stimulated by H+ and/or an oxidant input(s) we demonstrate blue emitting two-input H+, Fe3+-driven PASS 1, and green emitting H+, Fe3+-driven two-input TRANSFER (H+) and H+, Fe3+-driven two-input AND tagged solid beads.
机译:合成分子逻辑栅极并将表面固定在Tentagel(R)Mb-NH 2上(氨基末端官能化聚乙二醇配体上的聚苯乙烯珠子)。表现出两输入H +,Fe3 + -drive PASS 1,转移(H +)和BOOLEAN逻辑功能,证明了四种基于萘的标记聚合物固体珠。通过UV可见的吸收和荧光光谱法在1:1(v / v)甲醇/水中研究了模型分子化合物的光物理性质。分子浇注型传感器的TD-DFT计算能够深入了解由内部电荷转移(ICT)控制的荧光调制的机械细节和光突出的电子转移(PET)。颜色和荧光发射可用于区分异质聚合物珠粒。由H +和/或氧化剂输入刺激,我们展示了蓝色发射两输入H +,FE3 + -DRIVEN PASS 1,绿色发射H +,FE3 + -DRIVIVE二输入转移(H +)和H +,FE3 + -DRIVEN二 - 输入和标记的固体珠子。

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