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壳聚糖基金属配合物材料及其应用现状 被引量:14
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作者 尹学琼 孙中亮 +1 位作者 林强 张岐 《昆明理工大学学报(理工版)》 2002年第3期78-93,共16页
壳聚糖是从虾、蟹等甲壳纲动物中提取的一种天然碱性高分子多糖 ,对过渡金属及稀土金属具有良好的配位作用 ,以壳聚糖及改性壳聚糖为基质 ,络合金属离子所得壳聚糖基金属配合物材料具有许多优异的性能 ,做为一种配合物材料在酶固定化剂... 壳聚糖是从虾、蟹等甲壳纲动物中提取的一种天然碱性高分子多糖 ,对过渡金属及稀土金属具有良好的配位作用 ,以壳聚糖及改性壳聚糖为基质 ,络合金属离子所得壳聚糖基金属配合物材料具有许多优异的性能 ,做为一种配合物材料在酶固定化剂、分离膜、人工尿素吸附剂、纳米微晶的生长诱导剂、化学催化剂、植物生长调节剂以及金属分离及含量检测等领域有着良好的应用前景 ,本文对壳聚糖基金属配合物的结构、性质及在上述领域的应用进行了简要综述 . 展开更多
关键词 壳聚糖 金属络合 结构 催化活 配位络合性 生理活
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Theoretical studies on the complexation of uranyl with typical carboxylate and amidoximate ligands 被引量:5
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作者 XU ChaoFei SU Jing +1 位作者 XU Xiang LI Jun 《Science China Chemistry》 SCIE EI CAS 2013年第11期1525-1532,共8页
Understanding of the bonding nature of uranyl and various ligands is the key for designing robust sequestering agents for uranium extraction from seawater. In this paper thermodynamic properties related to the complex... Understanding of the bonding nature of uranyl and various ligands is the key for designing robust sequestering agents for uranium extraction from seawater. In this paper thermodynamic properties related to the complexation reaction of uranyl(VI) in aqueous solution (i.e. existing in the form of UO2(H20)52+) by several typical ligands (L) including acetate (CH3CO2), bicar- bonate (HOCO2-), carbonate (CO32-), CH3(NH2)CNO- (acetamidoximate, AO-) and glutarimidedioximate (denoted as GDO2-) have been investigated by using relativistic density functional theory (DFT). The geometries, vibrational frequencies, natural net charges, and bond orders of the formed uranyl-L complexes in aqueous solution are studied. Based on the DFT analysis we show that the binding interaction between uranyl and amidoximate ligand is the strongest among the selected complexes. The thermodynamics of the complexation reaction are examined, and the calculated results show that complexation of uranyl with amidoximate ligands is most preferred thermodynamically. Besides, reaction paths of the substitution complexation of solvated uranyl by acetate and AO have been studied, respectively. We have obtained two minima along the reaction path of solvated uranyl with acetate, the monodentate-acetate complex and the bidentate-acetate one, while only one minimum involving monodentate-AO complex has been located for AO- ligand. Comparing the energy barriers of the two reaction paths, we find that complexation of uranyl with AO is more difficult in kinetics, though it is more preferable in thermodynamics. These results show that theoretical studies can help to select efficient ligands with fine-tuned thermodynamic and kinetic properties for binding uranyl in seawater. 展开更多
关键词 URANYL seawater CARBOXYLATE amidoximate COMPLEXATION THERMODYNAMICS density functional theory
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