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n(Mg)/n(Al)=3的水滑石层板结构及层间距的阴离子调控
引用本文:刘亚辉,郭玉华,吴静怡,刘灵燕,何静,陈标华,蒲敏.n(Mg)/n(Al)=3的水滑石层板结构及层间距的阴离子调控[J].高等学校化学学报,2008,29(6):1171-1175.
作者姓名:刘亚辉  郭玉华  吴静怡  刘灵燕  何静  陈标华  蒲敏
作者单位:北京化工大学化工资源有效利用国家重点实验室,北京,100029
摘    要:利用密度泛函理论(DFT)的B3PW91方法在Lanl2dz水平上研究了镁铝摩尔比为3的水滑石层板分子簇模型Mg30Al7(OH)72]9+的几何构型, 优化得到的结构参数和采用Reflex模块模拟得到的XRD图谱分别与实验观测结果相符, 由此确定了水滑石层板沿第三维方向的有序堆积, 该结构符合空间群R3m(166), 其晶胞参数a=1.2552 nm, c=2.3400 nm. 进一步构造了具有R3m空间群对称性的Mg-Al-CO32--LDH晶体结构模型, 选取其中的簇模型, 经优化得到了一种稳定构型, 脱除结晶水的水滑石层间距为0.7260 nm, 键参数的变化表明碳酸根离子与层板间存在较强的超分子作用.

关 键 词:水滑石  密度泛函方法  XRD模拟  空间群
收稿时间:2007-07-18

Geometry of Hydrotalcite Slab with n(Mg)/n(Al)=3 and Regulation Effect of Interlayer Spacing with Anion
LIU Ya-Hui,GUO Yu-Hua,WU Jing-Yi,LIU Ling-Yan,HE Jing,CHEN Biao-Hua,PU Min.Geometry of Hydrotalcite Slab with n(Mg)/n(Al)=3 and Regulation Effect of Interlayer Spacing with Anion[J].Chemical Research In Chinese Universities,2008,29(6):1171-1175.
Authors:LIU Ya-Hui  GUO Yu-Hua  WU Jing-Yi  LIU Ling-Yan  HE Jing  CHEN Biao-Hua  PU Min
Institution:State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, China
Abstract:The slab microstructure of layered double hydroxide(LDH) with n(Mg)/n(Al)=3 is studied via density functional theory at the B3PWP91/Lanl2dz level. The optimized geometric parameters and the simulated XRD patterns of hydrotalcite are in agreement with experimental results. The structural simulations of hydrotalcite show that the host layers stack along the c-axis according to space group R3m,a=1.2552 nm,c=2.3400 nm. On the basis of the stacking multilayer model,the carbonate anion is introduced into the interlayer space and one special cluster structure is obtained through optimization under the condition of keeping space group R3m. The computation results indicate that the interlayer spacing of hydrotalcite with removed crystal water is 0.7260 nm. The changes of bond parameters of cluster suggest that there are strong supramolecular interactions between the slabs and anion.
Keywords:Layered double hydroxide  Density functional theory  XRD simulation  Space group
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