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Observation of cation ordering and anion-​mediated structure selection among the layered double hydroxides of Cu(II) and Cr(III) [Erratum to document cited in CA159:478042]

机译:在Cu(II)和Cr(III)的层状双氢氧化物中观察阳离子有序和阴离子介导的结构选择[来自Ca159:478042中引用的文献的勘误]

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摘要

Highly ordered Cl(-) and SO4(2-)-intercalated layered double hydroxides (LDHs) of Cu(II) and Cr(III) are obtained when coprecipitation is carried out at low pH ~ 5 and elevated temperature (60-80 °C). Precipitation under other conditions results in the formation of a gel. The SO4(2-)-LDH exhibits weak reflections which could be indexed to the 100 and 101 planes of a supercell corresponding to a = √3 ×a(o), providing direct evidence for cation ordering among LDHs by X-ray diffraction. The ordering of the M(II) and M'(III) in the metal hydroxide layer has been a subject of considerable debate in the LDH literature for the past several years and was earlier probed using short-range techniques such as NMR and EXAFS. Rietveld refinement indicates that the cation-ordered LDH adopts the structure of the 1H polytype (space group P3] a = 5.41 Å, c = 11.06 Å). In contrast the Cl(-)-intercalated LDH adopts the cation-disordered structure of the 3R1 polytype (space group R3[combining macron]m, a = 3.11 Å, c = 23.06 Å). The Cl(-)-LDH was used as a precursor to synthesize LDHs with other anions. While Br(-) and CO3(2-) (molecular symmetry, D3h) select for the 3R1 polytype, the XO3(-) (X = Br, I) ions (molecular symmetry, C3v) select for the rare 3R2 polytype. This work demonstrates the role of the intercalated anion in structure selection of the LDH.
机译:当在低pH〜5和升高的温度(60-80°C)下进行共沉淀时,可获得高度有序的Cl(-)和SO4(2-)插层的Cu(II)和Cr(III)的层状双氢氧化物(LDHs)。 C)。在其他条件下的沉淀导致形成凝胶。 SO4(2-)-LDH表现出微弱的反射,可以反射到对应于a =√3×a(o)的超级电池的100和101平面上,从而为XDH衍射中LDH之间的阳离子排序提供了直接的证据。在过去的几年中,LDH文献中金属氢氧化物层中M(II)和M'(III)的排列一直是一个颇有争议的话题,并且较早使用NMR和EXAFS等短程技术进行了探讨。 Rietveld改进表明,阳离子有序的LDH采用1H多型结构(空间群P3] a = 5.41Å,c = 11.06Å)。相反,Cl(-)-插入的LDH采用3R1多型的阳离子无序结构(空间群R3 [结合宏] m,a = 3.11埃,c = 23.06埃)。 Cl(-)-LDH用作与其他阴离子合成LDH的前体。 Br(-)和CO3(2-)(分子对称,D3h)选择3R1多型,而XO3(-)(X = Br,I)离子(分子对称,C3v)选择稀有的3R2多型。这项工作证明了嵌入阴离子在LDH结构选择中的作用。

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    Jayanthi, K.; Kamath, P.V.;

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  • 年度 2013
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