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Label-free, resettable, and multi-readout logic gates based on chemically induced fluorescence switching of gold nanoclusters

机译:基于金纳米团簇的化学诱导荧光转换的无标签,可重置和多读出逻辑门

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摘要

Herein, we present a label-free, resettable, multi-readout, and fluorescent logic system by employing bovine serum albumin (BSA) and 3-mercaptopropionic (MPA) co-stabilized gold nanoclusters (BSA/MPA-AuNCs) as a basic work unit. Small chemical molecules including Fe2+, Fe3+, H2O2 and H+/OH- are selected as the inputs to induce the change in fluorescence intensity of BSA/MPA-AuNCs through a non-radiative electron transfer mechanism. Using this novel strategy, a versatile logic system capable of performing elementary logic operations (NAND, NOR, and IMPLICATION) and integrative logic operations (NAND + NOR) can be successfully constructed. More importantly, the logic operations can be also performed on a solid surface in which BSA/MPA-AuNCs are complexed with polyelectrolytes and are coated on a glass slide. We envision that the current work will bring new ideas in establishing chemical logic gates in both liquid media and solid forms.
机译:在这里,我们通过采用牛血清白蛋白(BSA)和3-巯基丙酸(MPA)共稳定的金纳米簇(BSA / MPA-AuNCs)作为基础工作,提出了一种无标签,可重置,多读数和荧光逻辑系统单元。选择包括Fe2 +,Fe3 +,H2O2和H + / OH-的小化学分子作为输入,以通过非辐射电子转移机制诱导BSA / MPA-AuNCs荧光强度的变化。使用这种新颖的策略,可以成功构建能够执行基本逻辑运算(NAND,NOR和IMPLICATION)和集成逻辑运算(NAND + NOR)的通用逻辑系统。更重要的是,逻辑操作也可以在BSA / MPA-AuNCs与聚电解质复合并涂覆在载玻片上的固体表面上执行。我们设想当前的工作将为建立液体介质和固体形式的化学逻辑门带来新的思路。

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