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A gold nanorod-based plasmonic platform for multi-logic operation and detection

机译:基于金纳罗因子的多逻辑操作等离子体平台

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A multi-logic gate platform was designed based on morphological changes of gold nanorods (AuNRs) resulted from the iodine-mediated etching. By utilizing the anti-etching effects of mercapto compounds and Au-Hg amalgams as well as the etch-promoting effect of Cu2+, we successfully built five logic gates, namely, AND, NOR, XNOR, YES and IMPLY, along with a three-input combinational logic gate XNOR-IMPLY. The platform was versatile and easy to use, did not require complex surface modification or separation/purification steps as the conventional AuNR-based logic gates did. The logic operations, accompanied by distinct color changes, enabled multi-task detection by naked-eye for 'have' or 'none' discrimination or highly sensitive and selective analysis by spectroscopy with wide linear ranges.
机译:根据碘介导的蚀刻产生的金纳米棒(AUNR)的形态变化设计了一种多逻辑门平台。 通过利用巯基化合物和Au-Hg汞杆菌的抗蚀刻效果以及Cu2 +的蚀刻促进效果,我们成功地建造了五个逻辑门,即,也不,Xnor,是和暗示,以及三 - 输入组合逻辑门Xnor-Imply。 该平台易于多功能且易于使用,不需要复杂的表面改造或分离/纯化步骤,因为传统的基于AUNR基逻辑门。 逻辑操作伴随着不同的颜色变化,通过裸眼或“无”识别或“无”识别或高度敏感和选择性分析,通过具有宽线性范围的光谱,使能量检测。

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