首页> 外文会议>International Conference on Advanced Materials for Better Future >Synthesis of Optode Thin Layer using Sol Gel Hybrid of Trietoxysiloxane monomer and 3-(Trimethoxysilyl) Propilamine with Ionophore 4-(2-Pyridilazo)-l,3-Benzenadiol (PAR)
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Synthesis of Optode Thin Layer using Sol Gel Hybrid of Trietoxysiloxane monomer and 3-(Trimethoxysilyl) Propilamine with Ionophore 4-(2-Pyridilazo)-l,3-Benzenadiol (PAR)

机译:用甲基硅氧烷单体和3-(三甲氧基甲硅烷基)丙胺的溶胶凝胶杂交层与离子煤4-(2-Pyridilazo)-L,3-苯并二醇(PAR)合成

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Optode (Optical sensors) is one of the modern chemical sensors in the field of analytical chemistry that has utilized of inorganic polymers. The optode based on MLCT (Metal to Ligand Charge Transfer) (or MMLL'CT, Mixing Metal-Ligand to Ligand Charge Transfer) or LMCT (Ligand to Metal Charge Transfer) phenomenons have beed generated from oktyltrietxysilane, aminopropyltrimethoxysilane and 4-(2-pyrydilazo) resorcinol (abbreviated as OTES-APTS-PAR) for Cu(II), Cr(III), Ni(II), Fe(III), Cd(II), and Zn(II) ions target. The syntheses of thin layer optode were performed by sol gel method followed by evaporation in glass substrat. The formation of 4-(2-pyrydilazo) resorcinol complexes with ions target have gained strong absorption spectras in visible region because of charge transfer phenomenons. The optical sensor of OTES-APTS-PAR was analysed thermal properties using Differential Thermal Analysis (DTA). DTA thermogram showed a glass transition peaks at a temperature of 315.5 °C. Fourier transform Infrared (FTIR) spectras have showed that the optode materials consisted NH aryl groups indicated IR absorption at 1577.7 cm~(-1) and also -CH aromatic at 1469.0 cm~(-1). Synthesized optode materials have strong broad visible absorption with the maximum wavelengths (λ_(max)) = 405 nm and 508.5 nm, respectively. This material have excellent optical responds to several metal ions such as Cu(II), Cr(III), Ni(II), Fe(III), Cd(II), and Zn(II) that was showed from huge △λ_(max) and the increase of K_(total).
机译:光电(光学传感器)是使用无机聚合物的分析化学领域的现代化学传感器之一。基于MLCT(金属与配体电荷转移的金属)(或混合金属 - 配体与配体电荷转移)或LMCT(配体到金属电荷转移)现象的光电沸秒从OktyltritXysilane,氨基丙基三甲氧基硅烷和4-(2-钙唑唑(缩写为Cu(II),Cr(III),Ni(II),Fe(III),CD(II)和Zn(II)离子靶标的间苯二酚(缩写为OTES-APTS-PAR)。通过溶胶凝胶法进行薄层光学沸秒的合成,然后在玻璃基质中蒸发。由于电荷转移现象,4-(2-钙唑氮杂唑啉络合物的形成具有离子靶标在可见区域中的强吸收光谱。使用差分热分析(DTA)分析OTES-APTS-PAR的光学传感器。 DTA热法在315.5℃的温度下显示玻璃过渡峰。傅里叶变换红外(FTIR)光谱显示光电极材料组合NH芳基指示在1577.7cm〜(-1)下的IR吸收,并且在1469.0cm〜(-1)下也是-CH芳族。合成光电极材料具有强大的宽可见吸收,具有最大波长(λ_(最大))= 405nm和508.5nm。该材料具有优异的光学响应于几种金属离子,例如来自巨大△λ_的Cu(II),Cr(III),Ni(II),Fe(III),CD(II)和Zn(II))(最大值)和k_(总计)的增加。

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