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Synthesis and study of the use of heterocyclic thiosemicarbazones as signaling scaffolding for the recognition of anions

机译:杂环硫代半氨基甲酮类化合物作为阴离子识别信号转导支架的合成与研究

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A family of heterocyclic thiosemicarbazone dyes (1-9) linked to different furan, thiazole, (bi)thiophene, and arylthiophene π-conjugated bridges were synthesized in good yields, and their response toward anions was studied. Acetonitrile solutions of 1-9 show bands in the 326-407 region that are modulated by the electron-donor or -acceptor strength of the heterocyclic systems appended to the phenylthiosemicarbazone moiety. Anions of different shape such as fluoride, chloride, bromide, iodide, dihydrogen phosphate, hydrogen sulfate, nitrate, acetate, cyanide, and thiocyanate were employed for the recognition studies. From these anions, only fluoride, cyanide, acetate, and dihydrogen phosphate displayed sensing features. Two different effects were observed, (i) a low bathochromic shift of the absorption band due to coordination of the anions with the thiourea protons and (ii) the growth of a new red-shifted band with a concomitant change of the solution from yellow or pale yellow to orange-red due to deprotonation. The extent of each process is a balance between the acidity tendency of the thioureido-NH donors modulated by the donor or acceptor groups in the structure of the receptors and the basicity of the anions. Fluorescence studies were also in agreement with the different effects observed on the UV/vis titrations. Stability constants for the two processes (complex formation + deprotonation) for selected receptors and the anions fluoride and acetate were determined spectrophotometrically using the program HYPERQUAD. Semiempirical calculations to evaluate the hydrogen-donating ability of the dyes and ~1H NMR titrations experiments with fluoride were carried out. A prospective electrochemical characterization of compound 3 in the presence of anions was also performed.
机译:以高收率合成了与不同的呋喃,噻唑,(双)噻吩和芳基噻吩π共轭桥连接的杂环硫代半碳酸盐染料(1-9)系列,并研究了其对阴离子的响应。 1-9的乙腈溶液在326-407区域中显示出条带,该条带由附加到苯硫代半碳脲部分上的杂环系统的电子给体或-受体强度调节。识别研究使用了不同形状的阴离子,例如氟化物,氯离子,溴离子,碘离子,磷酸二氢根,硫酸氢根,硝酸根,乙酸根,氰根和硫氰酸根。从这些阴离子中,仅氟化物,氰化物,乙酸盐和磷酸二氢盐显示出传感特征。观察到两种不同的影响:(i)由于阴离子与硫脲质子的配位,吸收带的红移很小,并且(ii)新的红移带的生长伴随溶液从黄色或黄色的变化。由于去质子作用,浅黄色至橙红色。每个过程的程度是受体结构中供体或受体基团调节的硫脲基-NH供体的酸度趋势与阴离子碱度之间的平衡。荧光研究也与对UV / vis滴定法观察到的不同影响相一致。使用程序HYPERQUAD用分光光度法确定选定受体和阴离子阴离子氟和乙酸酯的两个过程(复合物形成+去质子化)的稳定性常数。进行了半经验计算以评估染料的给氢能力,并进行了氟化物的〜1H NMR滴定实验。还进行了在阴离子存在下化合物3的预期电化学表征。

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