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Dehydration Process of Hofmann-Type Layered Solids

机译:霍夫曼型层状固体的脱水过程

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In the present work the dehydration process of layered solids with formula unit M(H2O)2[Ni(CN)4]·nH2O, M = Ni, Co, Mn; n = 1, 2, 4 is studied using modulated thermogravimetry. The results show that water molecules need to overcome an energetic barrier (activation energy between 63 and 500 kJ/mol) in order to diffuse through the interlayer region. The related kinetic parameters show a dependence on the water partial pressure. On the other hand, X-ray diffraction results provide evidence that the dehydration process is accompanied by framework collapse, limiting the structural reversibility, except for heating below 80 °C where the ordered structure remains. Removal of water molecules from the interlayer region disrupts the long-range structural order of the solid.
机译:在本文中,分子式为M(H 2 O) 2 [Ni(CN) 4 ]·nH的层状固体的脱水过程 2 O,M = Ni,Co,Mn;使用调制热重法研究n = 1、2、4。结果表明,水分子需要克服高能垒(活化能在63至500 kJ / mol之间)才能扩散穿过中间层区域。相关的动力学参数显示出对水分压的依赖性。另一方面,X射线衍射结果提供了证据,表明脱水过程伴随着骨架塌陷,限制了结构的可逆性,只有在80°C以下加热时才保留有序结构。从夹层区域除去水分子会破坏固体的长程结构顺序。

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