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A diarylethene-based fluorescent chemosensor for the sequential recognition of Fe3+ and cysteine

机译:基于二芳基乙烯的荧光化学传感器,用于顺序识别Fe3 +和半胱氨酸

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A new fluorescent chemosensor for the sequential recognition of Fe ~(3+) and cysteine has been constructed based on photochromic diarylethene. It exhibits sequential recognition of Fe ~(3+) and cysteine via an “on–off–on” molecular switch. The title compound can selectively and sensitively recognize Fe ~(3+) in methanol, causing quenching of the fluorescence. Then, the formed complex was found to be a fluorescent chemosensor for cysteine with an increase in the fluorescence intensity. A detection limit as low as 4.09 × 10 ~(?8) mol L ~(?1) for Fe ~(3+) and 2.89 × 10 ~(?8) mol L ~(?1) for cysteine was obtained. Moreover, a two input INHIBIT logic gate was fabricated by using Fe ~(3+) and cysteine as inputs and taking I439 as the output.
机译:基于光致变色二芳基甲基构建了一种用于Fe〜(3+)和半胱氨酸的顺序识别的新荧光化学传感器。它通过“On-Off-on”分子开关显示出Fe〜(3+)和半胱氨酸的顺序识别。标题化合物可以选择性和敏感地识别甲醇中的Fe〜(3+),导致荧光猝灭。然后,发现形成的复合物是半胱氨酸的荧光化学传感器,随着荧光强度的增加而增加。获得的检测限为低至4.09×10〜(?8)mol L〜(α1)的Fe〜(3+)和2.89×10〜(Δ8)mol l〜(α1)的半胱氨酸。此外,通过使用Fe〜(3+)和半胱氨酸作为输入并将I439作为输出来制造两个输入抑制逻辑门。

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