首页> 外文会议>International Symposium on Current Progress in Functional Materials >Ligand 4'-(4-carboxyphenyl)-2,2':6',2'-terpyridine grafted with TiO2-complexation with the ions metal transition and application as fluorosensor for Na~+ ion
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Ligand 4'-(4-carboxyphenyl)-2,2':6',2'-terpyridine grafted with TiO2-complexation with the ions metal transition and application as fluorosensor for Na~+ ion

机译:配体4' - (4-羧基苯基)-2,2':6',2“ - 用TiO 2络合与离子金属转变和应用作为Na〜+离子的含氟体传感器

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Ligand 4'-(4-Carboxyphenyl)-2,2':6',2"-Terpyridine (Hcptpy) has been synthesized using reaction of aldol condensation. The result was white-yellowish precipitate with yield of 62%. The Ligand hcptpy was grafted with TiO2 by mass ratio 0.15 : 1 (wt/wt). The Hcptpy-TiO2 was reacted in complexation reaction with transition metals (Fe, Mn, Ni) by chelating method, with the best mole chelating ratio of 0.15 : 1 (mole/mole). The ligand Hcptpy, Hcptpy-TiCb and complex assembly M-Hcptpy-TiO2 were characterized by CHN Analyzer, HNMR, FT-IR, UV-VIS, and UV-DRS. The application of this research was to apply it as fluorosensor for sodium metal ion in sodium chloride. The study was conducted by spectrofluorometer. Types of fluorescent for sodium metal ion detection are Chelation Quenching Effect (on-off signal) and the Chelation Enhanced Fluorescence effect (off-on signal). The type of on-off signal causes a quenching in fluorescence intensity, while the off-on signal causes an increase in fluorescence intensity. The result showed that Hcptpy-TiCb, Ni-Hcptpy-TiCb were the off-on fluorescence type with the ability to respond the presence of sodium ion at concentration 3 x 10~(-10) M and 3 x 10~(-9) M, respectively. While Mn-Hcptpy-TiCb and Fe-Hcptpy-TiCb were the on-off signal type with the ability to respond the presence of sodium metal ion at concentration 3 x 10~(-8)M and 3 x 10~(-8) M, respectively. The process of sodium metal ions detection was carried out by substitution reaction of metal ion in complex with sodium metal ions.
机译:使用醛醇缩合的反应合成配体4' - (4-羧基苯基)-2,2':6',2“ - 吡啶(HCPTPY)。结果是白黄沉淀物,产率为62%。配体HCPTPY通过质量比0.15:1(wt / wt)接枝。通过螯合方法,通过螯合方法与过渡金属(Fe,Mn,Ni)反应,最佳摩尔螯合率为0.15:1(摩尔/摩尔)。配体HCPTPY,HCPTPY-TICB和复杂组装M-HCPTPY-TiO2的特征在于CHN分析仪,HNMR,FT-IR,UV-Vis和UV-DRS。本研究的应用是应用它作为氯化钠钠金属离子的荧光传感器。该研究通过光谱荧光仪进行。用于钠金属离子检测的荧光类型是螯合猝灭效应(开关信号)和螯合增强荧光效应(OFF-ON信号)。该类型开关信号导致荧光强度淬火,而断开信号导致荧光的增加强度。结果表明,HCPTPY-TICB,Ni-HCPTPY-TICB是脱离荧光型,具有响应浓度为3×10〜( - 10)m和3×10〜(-9)的钠离子存在的能力m分别。虽然Mn-HCPTPY-TICB和FE-HCPTPY-TICB是开关信号类型,但能够在浓度为3×10〜(-8)m和3×10〜(-8)时响应金属离子的存在的能力m分别。通过将金属离子与钠金属离子的复合物取代反应进行钠金属离子检测的方法。

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