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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Triple-signaling mechanisms-based three-in-one multi-channel chemosensor for discriminating Cu2+, acetate and ion pair mimicking AND, NOR, INH and IMP logic functions
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Triple-signaling mechanisms-based three-in-one multi-channel chemosensor for discriminating Cu2+, acetate and ion pair mimicking AND, NOR, INH and IMP logic functions

机译:基于三信号机制的三合一多通道化学传感器,用于区分模仿AND,NOR,INH和IMP逻辑功能的Cu2 +,乙酸盐和离子对

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摘要

Chemosensor 1 shows three different responses towards Cu2+, acetate and Cu(OAc)(2) ion pair at different wavelengths independently in its absorption and fluorescence behaviour following a triple-signaling mechanism, namely, internal charge transfer (ICT), CQN rotation and excited state intramolecular proton transfer (ESIPT). Chemosensor 1 shows a blue shift of the absorption band from 337 nm to 308 nm in the presence of Cu2+ ions (ICT). It exhibits a fluorescence 'urn-off' response at lambda(em) 458 nm in the presence of 1 equivalent of Cu2+ ions. The further addition of Cu2+ (6 equivalents) results in similar to 24 times enhancement in the emission intensity at lem 427 nm, mimicking an 'N-OFF-ON' molecular switch (ESIPT and CQN rotation). The addition of acetate ions to a solution of 1 results in a red shift of the absorption band from 337 to 360 nm (ICT) and similar to 4 times enhancement of the emission intensity at lambda(em) 458 nm (ESIPT). On the addition of a Cu(OAc)(2) ion pair, 1 shows the apparent effect of Cu2+ (blue shift, 337 to 308 nm) and acetate (red shift, 337 to 380 nm), which indicates the synergistic effect of both Cu2+ and AcO- on each other's binding. The potential application of chemosensor 1 for the construction of INHIBIT (INH), IMPLICATION (IMP), AND, NOR, YES and NOT logic gates using Cu2+ and acetate as the inputs and absorbance/emission as the outputs is elaborated.
机译:化学传感器1遵循三态信号机制,即内部电荷转移(ICT),CQN旋转和激发,在三种波长下分别对Cu2 +,乙酸盐和Cu(OAc)(2)离子对表现出三种不同的响应,分别独立于其吸收和荧光行为状态分子内质子转移(ESIPT)。化学传感器1在存在Cu2 +离子(ICT)的情况下显示出吸收带从337 nm到308 nm的蓝移。在1当量的Cu2 +离子存在下,它在458nm处表现出荧光“ fluorescence离”响应。进一步添加Cu2 +(6当量)会导致lem 427 nm处的发射强度提高24倍,类似于“ N-OFF-ON”分子开关(ESIPT和CQN旋转)。将乙酸根离子添加到1的溶液中会导致吸收带从337到360 nm(ICT)发生红移,并且在458 nm处的发射强度(ESIPT)增强了4倍。添加Cu(OAc)(2)离子对后,图1显示了Cu2 +(蓝移337至308 nm)和乙酸盐(红移337至380 nm)的表观效果,这表明了两者的协同作用Cu2 +和AcO-彼此结合。详细说明了化学传感器1在使用Cu2 +和乙酸盐作为输入以及吸收/发射作为输出的INHIBIT(INH),IMPLICATION(IMP),AND,NOR,YES和NOT逻辑门的构造中的潜在应用。

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