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Experimental and theoretical studies of novel hydroxynaphthalene based chemosensor, and construction of molecular logic gates

机译:新型基于羟基萘的化学传感器的实验和理论研究以及分子逻辑门的构建

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2-Hydroxynaphthalenyl-N(4)-cyclohexyl thiosemicarbazone (CHNT) was synthesized and characterized for selective sensing of fluoride, cyanide and copper ions. The interaction between CHNT with fluoride, cyanide and copper ions have been investigated through their absorption, fluorescence and electrochemical behavior, and binding constants of corresponding ions have been calculated, which is in order of Cu2+ < CN- < F-. The H-1 NMR titration study strongly support the deprotonation was takes place from the N-2-H-8 proton which is near to the naphthalene group. The fluoride and copper sensing mechanism of CHNT has been investigated by DFT and TDDFT methods The theoretical results indicate that the proton of the N-2-H in thiosemicarbazone group is captured by the added fluoride ion and then deprotonated in excited state. The excited state proton transition mechanism was further confirmed with NBO and PES analysis. The CHNT found good reversibility character with the alternative addition of Ca2+ and F-. The multi ion detection of CHNT was used to construct the NOR, XNOR and NAND molecular logic gates. (C) 2016 Elsevier B.V. All rights reserved.
机译:合成了2-羟基萘基-N(4)-环己基硫代半碳酸盐(CHNT),并对其进行选择性检测,以用于氟化物,氰化物和铜离子的传感。通过其吸收,荧光和电化学行为研究了CHNT与氟离子,氰离子和铜离子之间的相互作用,并计算了相应离子的结合常数,其顺序为Cu2 +

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