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首页> 外文期刊>RSC Advances >A cyanide-selective colorimetric “naked-eye” and fluorescent chemosensor based on a diketopyrrolopyrrole–hydrazone conjugate and its use for the design of a molecular-scale logic device
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A cyanide-selective colorimetric “naked-eye” and fluorescent chemosensor based on a diketopyrrolopyrrole–hydrazone conjugate and its use for the design of a molecular-scale logic device

机译:基于二酮吡咯吡咯 - 腙缀合物的氰化物选择性比色“裸眼”和荧光化学传感器及其用于设计分子尺度逻辑装置的用途

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A novel diketopyrrolopyrrole (DPP)–hydrazone based receptor 1 was designed and synthesized as a selective fluorescent and colorimetric chemosensor for cyanide without interference from other common anions including fluoride and acetate. The spectral responses of 1 to cyanide were studied: an approximately 130 nm red shift in absorption spectra (from λ _(max-ab) = 516 nm to λ _(max-ab) = 646 nm and the color change from pink to indigo) and “turn-off” emission response was observed. The experimental results revealed that the formation of anionic species from deprotonation of the hydrazone N–H moiety by cyanide was responsible for the spectral changes. Density function theory calculations were conducted to rationalize the optical response of the receptor 1 . In the presence of cyanide, receptor 1 could act as an “Off–On” fluorescent probe for trifluoroacetic acid (TFA) based on the reversible protonation process, which may be represented by a complementary “IMPLICATION/INHIBIT” logic gate at the molecular level employing CN ~(?) –TFA as the chemical inputs. The detection limit was 0.23 μM using the fluorescence spectra changes, which is far lower than the WHO guideline of 1.9 μM.
机译:设计并合成了一种新的二酮吡咯唑(DPP)基于基于氰基的受体1,作为氰化物的选择性荧光和比色测量传感器,而不会与其他常见阴离子的干扰,包括氟化物和乙酸酯。研究了1至氰化物的光谱响应:吸收光谱中大约130nm的红色偏移(来自λ_(max-ab)= 516nm至λ_(max-ab)= 646nm,从粉红色到靛蓝的颜色变化)观察到“关断”排放反应。实验结果表明,通过氰化物的腙N-H部分的去质子化的阴离子物种的形成负责光谱变化。进行密度函数理论计算以合理化受体1的光学响应。在氰化物的存在下,基于可逆质子化方法,受体1可作为三氟乙酸(TFA)的“OFF上”荧光探针,其可以通过分子水平的互补“含义/抑制”逻辑栅极表示使用CN〜(?)-TFA作为化学输入。使用荧光光谱的变化,检测限为0.23μm,远低于1.9μm的谁的指南。

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