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An Elaborate Supramolecular Assembly for a Smart Nanodevice for Ratiometric Molecular Recognition and Logic Gates

机译:用于比例分子识别和逻辑门的智能纳米设备的精细超分子组件

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Ingenious approaches to supramolecular assembly for fabricating smart nanodevices is one of the more significant topics in nanomaterials research. Herein, by using surface quaternized cationic carbon dots (CDots) as the assembly and fluorescence platform, anionic sulfonatocalix[4]arene with modifiable lower and upper rims as a connector, as well as in situ coordination of Tb3+ ions, we propose an elaborate supramolecular assembly strategy for the facile fabrication of a multifunctional nanodevice. The dynamic equilibrium characteristics of the supramolecular interaction can eventually endow this nanodevice with functions of fluorescent ratiometric molecular recognition and as a nanologic gate with two output channels.
机译:用于制造智能纳米器件的超分子组装的巧妙方法是纳米材料研究中更重要的主题之一。在本文中,通过使用表面季铵化阳离子碳点(CDots)作为组装和荧光平台,将具有可调节下缘和上缘的阴离子磺砜杯[4]芳烃作为连接体,以及Tb3 +离子的原位配位,我们提出了一种精细的超分子轻松制造多功能纳米器件的组装策略。超分子相互作用的动态平衡特性最终可以使这种纳米器件具有荧光比率分子识别功能,并具有两个输出通道,成为纳米门。

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