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首页> 外文期刊>Journal of Coordination Chemistry >A reversible fluorescence 'ON-OFF-ON' sensor for sequential detection of F- and Cu2+ ions and its application as a molecular-scale logic device and security keypad lock
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A reversible fluorescence 'ON-OFF-ON' sensor for sequential detection of F- and Cu2+ ions and its application as a molecular-scale logic device and security keypad lock

机译:一种可逆荧光“接开”传感器,用于顺序检测F-和Cu2 +离子及其作为分子尺度逻辑装置和安全键盘锁的应用

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摘要

A new azoimine receptor, R-1, was synthesized by Schiff base condensation of 4-(4-butylphenyl) azophenol and 2,6-diaminopyridine and acts as a colorimetric and fluorometric chemosensor for F- and also toward Cu2+ ions in aqueous environment. UV-Vis absorption and fluorescent emission spectra were employed to study the sensing process. Emission study was performed to examine the dual sensing ability of the obtained probe with sequential addition of F- followed by Cu2+ and vice versa. The receptor is an efficient ON-OFF fluorescent probe for the fluoride ion. Also, R-1 + F- operated as an OFF-ON fluorescent sensor for Cu2+ ions. Considering emission intensity and absorption wavelength for F- and Cu2+ ions, a molecular system was developed with the ability to mimic the functions of XNOR logic gating on the molecular level. In addition, R-1 behaved as a molecular security keypad lock with F- and Cu2+ inputs. The keypad lock operation is particularly important, as the output of the system depends not only on the proper combination but also on the order of input signals, creating the correct password that can be used to open this molecular keypad lock through strong fluorescence emission at 460nm.
机译:通过4-(4-丁基苯基)氮杂酚和2,6-二氨基酚的Schiff碱缩合合成了新的氮杂菊杂细胞受体R-1,并用作F-和含水环境中的Cu2 +离子的比色和荧光化学传感器。使用UV-Vis吸收和荧光发射光谱来研究传感过程。进行排放研究以检查所得探针的双重感测能力,顺序地添加F-后跟Cu2 +,反之亦然。受体是氟离子的有效的开关荧光探针。此外,R-1 + F-作为Cu2 +离子的Off-uncost荧光传感器操作。考虑到F-和Cu2 +离子的发射强度和吸收波长,具有模拟Xnor逻辑浇注在分子水平上的功能的能力。此外,R-1表现为分子安全键盘锁定具有F和CU2 +输入。键盘锁定操作尤为重要,因为系统的输出不仅取决于适当的组合,还取决于输入信号的顺序,创建了可用于打开该分子键盘锁定的正确密码,通过460nm的强荧光发射来打开该分子键盘锁定。

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