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首页> 外文期刊>Clays and clay minerals >EFFECT OF HYDRATION ON POLYTYPISM AND DISORDER IN THE SULFATE-INTERCALATED LAYERED DOUBLE HYDROXIDES OF Li and Al
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EFFECT OF HYDRATION ON POLYTYPISM AND DISORDER IN THE SULFATE-INTERCALATED LAYERED DOUBLE HYDROXIDES OF Li and Al

机译:水合对硫酸盐插层Li和Al双层氢氧化物中多态性和紊乱的影响

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摘要

The double hydroxide of Li+ and Al3+ is an anionic clay comprising positively charged metal hydroxide layers and intercalated anions. While the structure of the iono-covalently bonded metal hydroxide layer is well known, relatively less knowledge is available regarding the manner in which the anions and water molecules are packed in the interlayer region. The sulfate ion is of special interest as it can potentially intercalate in a multiplicity of orientations and grow an extended hydration sphere. The sulfate-intercalated double hydroxide was synthesized by the imbibition of Li2SO4 into both the gibbsite and bayerite forms of Al(OH)(3) to obtain layered double hydroxides with the nominal formula Li2Al4(OH)(12)SO4 center dot nH(2)O (n = 4-8). The as-prepared compounds were poorly ordered and did not yield any structural information. Temperature-induced partial dehydration yielded ordered phases of different structures in the two systems. Simulation of the powder patterns of different model structures, followed by structure refinement in both direct and reciprocal spaces, showed that the gibbsite-derived phase yielded a two-layer polytype of hexagonal symmetry (space group P6(3)/m). The local symmetry of the sulfate ion was close to D-2d with one of the C-2 axes of the SO42- being nearly parallel to the c axis of the crystal. The bayerite-derived phase yielded a one-layer polytype of monoclinic symmetry (space group C2/m). The sulfate ion was oriented with its C-3 axes tilted away from the stacking direction. Cooling and rehydration (relative humidity similar to 70%) resulted in a reversible expansion of the basal spacing due to the ingress of water molecules from the ambient humidity into the interlayer region. Hydration in both cases resulted in turbostratic disorder. The disorder in the bayerite-derived phase was a result of random intergrowth of motifs with rhombohedral and monoclinic symmetries.
机译:Li +和Al3 +的双氢氧化物是一种阴离子粘土,包括带正电的金属氢氧化物层和嵌入的阴离子。尽管离子共价键合的金属氢氧化物层的结构是众所周知的,但是关于阴离子和水分子在中间层区域中的填充方式的知识相对较少。硫酸根离子特别受关注,因为它可能会插入多个方向并生长一个扩展的水化球。硫酸盐插层的双氢氧化物是通过将Li2SO4吸水到三水铝石形式和三水铝石形式的Al(OH)(3)来合成的,得到层状双氢氧化物,其名义分子式为Li2Al4(OH)(12)SO4中心点nH(2) )O(n = 4-8)。所制备的化合物排列不良,并且不产生任何结构信息。温度引起的部分脱水在两个系统中产生了不同结构的有序相。模拟不同模型结构的粉末模式,然后在直接空间和倒数空间中进行结构优化,结果表明,三水铝石衍生相产生了六层对称的两层多型(空间群P6(3)/ m)。硫酸根离子的局部对称性接近于D-2d,SO42-的C-2轴之一几乎平行于晶体的c轴。钙铝石衍生相产生单斜对称的多层多型体(空间群C2 / m)。硫酸根离子以其C-3轴远离堆叠方向倾斜的方式取向。冷却和补液(相对湿度类似于70%)由于水分子从环境湿度进入中间层区域而导致基本间距的可逆扩展。两种情况下的水合作用都会导致涡轮层紊乱。钙铝石衍生相的无序是菱形和单斜对称的图案随机共生的结果。

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