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首页> 外文期刊>International Journal of Quantum Chemistry >Partial exchange of the Li+, Na+ and K+ alkaline cations in the HNi(PO4) center dot H2O layered compound
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Partial exchange of the Li+, Na+ and K+ alkaline cations in the HNi(PO4) center dot H2O layered compound

机译:HNi(PO4)中心点H2O层状化合物中Li +,Na +和K +碱性阳离子的部分交换

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The exchange of the Li+ (1), Na+ (2) and K+ (3) alkaline cations in the layered HNi(PO4) center dot H2O was carried out starting from a methanolic solution containing the Li(OH) center dot H2O hydroxide for (1) and the M(OH) (M = Na and K) hydroxides together with the (C6H13NH2)(0.75)HNiPO4 degrees H2O phases for (2) and (3). The compounds are stable until, approximately, 280 degrees C for (1) and 400 degrees C for phases (2) and (3), respectively. The I R spectra show the bands belonging to the water molecule and the (PO4)(3-) oxoanion. The diffuse reflectance spectra indicate the existence of Ni(II), d(8), cations in slightly distorted octahedral geometry. The calculated Dq and Racah (B and Q parameters have a mean value of Dq = 765, B = 905 and C = 3895 cm(-1), respectively, in accordance with the values obtained habitually for this octahedral Ni(II) cation. The study of the exchange process performed by X-ray powder diffraction indicates that the exchange of the Li+ cation in the lamellar HNi(PO4) center dot H2O phase is the minor rapid reaction, whereas the exchange of the Na+ and K+ cations needs the presence of the intermediate (C6H13NH2)(0.75)NiPO4 center dot H2O intercalate in order to obtain the required product with the sodium and potassium ions. The Scanning electronic microscopy (SEM) images show a mean size of particle of 5 mu m. The L-i+ exchanged compound exhibits small ionic conductivity (Omega cm(-1) is in the 10(-8)-10(-9) range) probably restrained by the methanol solvent. Magnetic measurements carried out from 5 K to room temperature indicate antiferromagnetic coupling as the major interaction in the three phases. Notwithstanding the Li and K phases show a weak ferromagnetism at low temperatures. (c) 2006 Elsevier Inc. All rights reserved.
机译:层状HNi(PO4)中心点H2O中的Li +(1),Na +(2)和K +(3)碱性阳离子的交换是从含有Li(OH)中心点H2O氢氧化物的甲醇溶液开始的( 1)和M(OH)(M = Na和K)氢氧化物以及(2)和(3)的(C6H13NH2)(0.75)HNiPO4度H2O相。化合物稳定,直到阶段(2)和阶段(3)分别大约为280摄氏度和400摄氏度为止。 I R光谱显示了属于水分子和(PO4)(3-)氧阴离子的谱带。漫反射光谱表明,镍(II),d(8)阳离子以稍微扭曲的八面体几何形状存在。计算得出的Dq和Racah(B和Q参数的平均值分别为Dq = 765,B = 905和C = 3895 cm(-1),这与该八面体Ni(II)阳离子的常规值相对应。 X射线粉末衍射对交换过程的研究表明,层状HNi(PO4)中心点H2O相中Li +阳离子的交换是次要的快速反应,而Na +和K +阳离子的交换需要存在(C6H13NH2)(0.75)NiPO4中心点H2O的层间插入,以得到所需的钠和钾离子产物。扫描电子显微镜(SEM)图像显示平均粒径为5微米。 i +交换的化合物显示出较小的离子电导率(Omega cm(-1)在10(-8)-10(-9)范围内)可能受到甲醇溶剂的限制,从5 K到室温的磁性测量表明反铁磁耦合作为三个阶段的主要互动。尽管Li和K相在低温下显示出弱的铁磁性。 (c)2006 Elsevier Inc.保留所有权利。

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