...
首页> 外文期刊>Biomacromolecules >Structure of Alginate Gels: Interaction of Diuronate Units with Divalent Cations from Density Functional Calculations
【24h】

Structure of Alginate Gels: Interaction of Diuronate Units with Divalent Cations from Density Functional Calculations

机译:海藻酸盐凝胶的结构:密度函数计算中的二价阳离子与双脲酸酯单元的相互作用。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The complexation of (l→4) linked α-L> guluronate (G) and β-D-mannuronate (M) disaccharides with Mg~(+2), Ca~(+2), St~(+2), Mn~(+2), Co~(+2), Cu~(+2), and Zn~(+2) cations have been studied with quantum chemical density functional theory (DFT)-based method. A large number of possible cation-diuronate complexes, with one and two GG or MM disaccharide units and with or without water molecules in the inner coordination shells have been considered. The computed bond distances, cation interaction energies, and molecularorbital composition analysis revealed that the complexation of the transition metal (TM) ions to the disaccharides occurs via the formation of strong coordination-covalent bonds. On the contrary, the alkaline earth cations form ionic bonds with the uronates. The unidentate binding is found to be the most favored one in the TM hydrated and water-free complexes. By removing water molecules, the bidentate chelating binding also occurs, although it is found to be energetically less favored by 1 to 1.5 eV than the unidentate one. A good correlation is obtained between the alginate affinity trend toward TM cations and the. interaction energies of the TM cations in all studied complexes, which suggests that the alginate affinities are strongly related to the chemical interaction strength of TM cations-uronate complexes. The trend of the interaction energies of the alkaline earth cations in the ionic complexes is opposite to the alginate affinity order. The binding strength is thus not a limiting factor in the alginate gelation in the presence of alkaline earth cations at variance with the TM cations.
机译:(l→4)连接的α-L>古龙糖(G)和β-D-甘露糖酸酯(M)二糖与Mg〜(+2),Ca〜(+2),St〜(+2),Mn的络合使用基于量子化学密度泛函理论(DFT)的方法研究了〜(+2),Co〜(+2),Cu〜(+2)和Zn〜(+2)阳离子。已经考虑了许多可能的阳离子-二尿酸酯配合物,在内部配位壳中具有一个和两个GG或MM二糖单元,并且带有或没有水分子。计算的键距,阳离子相互作用能和分子轨道组成分析表明,过渡金属离子与二糖的络合是通过形成强配位共价键而发生的。相反,碱土金属阳离子与尿酸盐形成离子键。在TM水合和无水的复合物中,发现不明结合是最优选的结合。通过去除水分子,也发生了二齿螯合键合,尽管发现它在能量上比未鉴定的低1至1.5 eV。在藻酸盐对TM阳离子的亲和力趋势和对TM阳离子的亲和力趋势之间获得良好的相关性。 TM阳离子在所有研究的配合物中的相互作用能,这表明藻酸盐亲和力与TM阳离子-尿酸盐配合物的化学相互作用强度密切相关。离子络合物中碱土金属阳离子相互作用能的趋势与藻酸盐亲和力顺序相反。因此,在碱土金属阳离子与TM阳离子不同的情况下,结合强度不是藻酸盐胶凝中的限制因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号