Physical properties of fixed-charge layer double hydroxides

被引:55
作者
Hines, DR
Solin, SA
Costantino, U
Nocchetti, M
机构
[1] NEC Res Inst, Princeton, NJ 08540 USA
[2] Univ Perugia, Dipartimento Chim, I-06123 Perugia, Italy
关键词
D O I
10.1103/PhysRevB.61.11348
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The physical properties of a series of layer double hydroxides (LHD) of the farm [(CO3)(0.195(1-x))Cl-0.39x(H2O)(y)]:[Zn0.61Al0.39(OH)(2)], 0 less than or equal to x less than or equal to 1, 0 less than or equal to y less than or equal to(0.4+0.2x) have been studied. The hydration dynamics of these materials indicate that the guest layer water molecules form a hydration ring which defines the height of the solvated, nested Cl anion. The water molecules can tilt around their Ct, axis such that the height of the solvated Cl ion is a function of the number of molecules forming the hydration ring. The composition dependence of the basal spacing, determined from x-ray-diffraction powder patterns measured as a function of humidity and temperature for these materials, is a function of both the Cl concentration (x) and the number of guest layer water molecules (y). Distinct basal spacing curves are observed for fully hydrated, partially hydrated, and dehydrated materials. At x = 1 the Cl end-member material exhibits a change in stacking sequence from a 3R polytype to a 2H polytype upon dehydration. The dehydrated farm of this material also exhibits a (root 3 x root 3)R30 degrees superlattice ordering of the Cl ions. Due to the nesting of the Cl ion and the active nature of the water molecules, the basal spacing vs x curve for the dehydrated materials is the only curve that can be fit by the discrete finite layer rigidity model. The interlayer rigidity parameter for LDH materials has been determined to be p = 4.84+/- 0.06 indicating that these materials are stiffer than class-II layered solids but not as stiff as class-III layered solids.
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页码:11348 / 11358
页数:11
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