2+ added in the addition of "off-on" and 2-silica of Zn +2. Use a mechanochemical method in all samples In addition to being stable in the bioenvironment, it is possible to use a 2-silica hybrid material with metal ions (Cu 2+ ) and Na 4 EDTA together as an “inhibitory” logic gate."/> Mechanochemical versus sol-gel silica loading of phenolate- and acetate-bridged dizinc Schiff base complexes: toward instant and inexpensive hybrids for controlled binding and release of Zn 2+ ion in pure water
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Mechanochemical versus sol-gel silica loading of phenolate- and acetate-bridged dizinc Schiff base complexes: toward instant and inexpensive hybrids for controlled binding and release of Zn 2+ ion in pure water

机译:酚盐和乙酸盐桥连的二价席夫碱配合物的机械化学与溶胶-凝胶二氧化硅负载量:向快速廉价的杂合体提供控制,以在纯水中控制Zn 2+离子的结合和释放

摘要

The present invention relates to a hybrid manufacturing method using mechanochemical methods of common and inexpensive silica and Schiff base compounds, and provides a simple manufacturing process while maintaining activity as a metal ion sensor. The present invention relates to commercially available silica gels [rlysH 2 ] (compound 1), [Zn 2 (slysH) 2 Cl 2 ] (compound 2), [Zn 2 (rslysH) 2 (μ-OAc) 2 ] (Compound 3) and [Cu 2 (rslysH) 2 (NO 3 ) 2 (H 2 O) 3 ] (Compound 4), respectively, and then synthesized a silica hybrid material by a mechanical chemical method. [Slys or rlys = 6-amino-2-{(2-hydroxy-benzylidene) amino} hexanoate] The synthesized samples were analyzed by SEM-EDS. Absorption constant is between 5 and 20 minutes, 1.99 × 10 -4 (Compound (2) the number of molecules / unit SiO 2)(min) showed a 1. In the hybrid material is silica 1 according to the present invention shows a change in fluorescence "on-off" when Cu 2+ added in the addition of "off-on" and 2-silica of Zn +2. Use a mechanochemical method in all samples In addition to being stable in the bioenvironment, it is possible to use a 2-silica hybrid material with metal ions (Cu 2+ ) and Na 4 EDTA together as an “inhibitory” logic gate.
机译:本发明涉及一种使用普通和廉价的二氧化硅和席夫碱化合物的机械化学方法的混合制造方法,并提供了一种简单的制造方法,同时保持了作为金属离子传感器的活性。本发明涉及市售硅胶[rlysH 2 ](化合物1),[Zn 2 (slysH) 2 Cl 2 ](化合物2),[Zn 2 (rslysH) 2 (μ-OAc) 2 ](化合物3)和[Cu 2 (rslysH) 2 (NO 3 2 (H 2 O) 3 ](化合物4),然后通过机械化学方法合成二氧化硅杂化材料。 [Slys或rlys = 6-氨基-2-{((2-羟基-亚苄基)氨基}己酸]己酸酯]通过SEM-EDS分析合成样品。吸收常数在5至20分钟之间,为1.99×10 -4 (化合物(2)分子数/单位SiO 2) (分钟)显示为 1。在杂化材料中,根据本发明的二氧化硅1在Cu 2 + <时显示荧光“开-关”的变化。 / Sup>添加到和Zn + 2的2-二氧化硅中。在所有样品中均采用机械化学方法,除了在在生物环境中,可以将含有金属离子(Cu 2 + )和Na 4 EDTA的2-二氧化硅杂化材料一起用作“抑制”逻辑门。

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