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首页> 外文期刊>International Journal of Quantum Chemistry >Structural, microstructural and vibrational characterization of apatite-type lanthanum silicates prepared by mechanical milling
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Structural, microstructural and vibrational characterization of apatite-type lanthanum silicates prepared by mechanical milling

机译:通过机械研磨制备的磷灰石型硅酸镧硅酸盐的结构,微观结构和振动特性

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摘要

Apatite-type lanthanum silicates have been successfully prepared at room temperature by dry milling hexagonal A-La2O3 and either amorphous or low cristobalite SiO2. Milling a stochiometric mixture of these chemicals in a planetary ball mill with a moderate rotating disc speed (350 rpm), allows the formation of the target phase after only 3 h although longer milling times are needed to eliminate all SiO2 and La2O3 traces. Thus, the mechanically activated chemical reaction proceeds faster when using amorphous silica instead of low cristobalite as silicon source and pure phases are obtained after only 9 and 18 h, respectively. As obtained powder phases are not amorphous and show an XRD pattern as well as IR and Raman bands characteristic of the lanthanum silicate. The domain size of the as-prepared phases varies gradually with the temperature of post-milling thermal treatment with activation energies of about 26(8) and 52(10) kJ mol(-1) K-1 for the apatites obtained from amorphous silica and low-cristobalite, respectively. These values suggest crystallite growth to be favored when using amorphous silica as reactant. (C) 2005 Elsevier Inc. All rights reserved.
机译:磷灰石型硅酸镧已通过在室温下通过干磨六角形A-La2O3和无定形或低方英石SiO2的方法成功制备。在行星式球磨机中以适中的转盘速度(350 rpm)研磨这些化学计量的混合物,尽管仅需要更长的研磨时间才能消除所有SiO2和La2O3痕迹,但仅需3小时即可形成目标相。因此,当使用无定形二氧化硅代替低方英石作为硅源时,机械活化的化学反应进行得更快,分别在9和18小时后即可获得纯相。所获得的粉末相不是非晶态的,并显示出X射线衍射图以及硅酸镧的特征IR和拉曼能带。制备后的相的畴尺寸随铣削后热处理温度的变化而逐渐变化,对于非晶硅石获得的磷灰石,活化能分别约为26(8)和52(10)kJ mol(-1)K-1和低方英石。这些值表明当使用无定形二氧化硅作为反应物时,微晶的生长是有利的。 (C)2005 Elsevier Inc.保留所有权利。

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