Acrylic resins with complexes of guanidyl groups and copper(II)

B.N. Kolarz , J. Jezierska , D. Bartkowiak , A. Gontarczyk
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引用次数: 34

Abstract

Heating of acrylonitrile, vinyl acetate and divinylbenzene porous copolymers (AN-VA-DVB) with aminoguanidine salts in alkaline medium leads to aminolysis and hydrolysis of the nitrile groups and hydrolysis of acetyl groups. As a result, an amphoteric chelating resin with guanidyl and carboxyl groups at a concentration of ca. 13and 2–4 mmol/g, respectively, is obtained. The resin possesses a porous structure with a mean pore radius of 5.6 nm in swollen state. The sorption of Cu(II) ions increases with increasing content of functional groups, and reaches 120–170 mg/g at pH 5. The equilibrium sorption is attained after 300 min. The infrared (IR) spectra of resins confirm that both guanidyl and carboxyl groups form complexes with Cu(II) ions. From analysis of the sorption degree of Cu(II) ions it can be concluded that statistically two groups (carboxyl or/and guanidyl) participate in the complexation. Electron paramagnetic resonance (EPR) spectra of the resins suggest that at low pH the complexes of Cu(II) ions with carboxyl groups dominate. At the pH range 3–8 the formation of Cu(II) complexes with carboxyl and guanidyl groups is evident. At pH > 9 three or four nitrogen atoms participate in coordination sphere around Cu(II).

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胍基-铜配合物丙烯酸树脂
丙烯腈、醋酸乙烯和二乙烯基苯多孔共聚物(AN-VA-DVB)与氨基胍盐在碱性介质中加热,导致腈基和乙酰基的氨解和水解。结果,得到了具有胍基和羧基的两性螯合树脂,其浓度分别为约13和2-4 mmol/g。树脂具有多孔结构,膨胀状态下平均孔半径为5.6 nm。随着官能团含量的增加,Cu(II)离子的吸附量增加,pH为5时Cu(II)离子的吸附量达到120 ~ 170 mg/g。树脂的红外光谱证实,胍基和羧基都与Cu(II)离子形成配合物。从Cu(II)离子的吸附程度分析可以得出统计上有两个基团(羧基或/和胍基)参与络合。树脂的电子顺磁共振(EPR)谱表明,在低pH下,Cu(II)离子与羧基的配合物占主导地位。在3 ~ 8的pH范围内,Cu(II)与羧基和胍基的配合物形成是明显的。pH >3或4个氮原子参与Cu(II)周围的配位球。
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