首页> 外文期刊>Physics and chemistry of minerals >Thermal expansion and structural transformations of stuffed derivatives of quartz along the LiAlSiO_4-SiO_2 join: a variable-temperature powder synchrotron XRD study
【24h】

Thermal expansion and structural transformations of stuffed derivatives of quartz along the LiAlSiO_4-SiO_2 join: a variable-temperature powder synchrotron XRD study

机译:沿LiAlSiO_4-SiO_2连接的石英填充衍生物的热膨胀和结构转变:变温粉末同步加速器XRD研究

获取原文
获取原文并翻译 | 示例
       

摘要

The structural behavior of stuffed derivatives of quartz within the Li_(1-x)Al_(1-x)Si_(1+x)O_4 system (0 ≤ x ≤ 1) has been studied in the temperature range 20 to 873 K using high-resolution powder synchrotron X-ray diffraction (XRD). Rietveld analysis reveals three distinct regimes whose boundaries are defined by an Al/Si order-disorder transition at x = ~0.3 and a β-α displacive transformation at x = ~0.65. Compounds that are topologically identical to β-quartz (0 ≤ x < ~0.65) expand within the (0 0 1) plane and contract along c with increasing temperature; however, this thermal anisotropy is significantly higher for structures within the regime 0 ≤ x < ~0.3 than for those with compositions ~0.3 ≤ x < ~0.65. We attribute this disparity to a tetrahedral tilting mechanism that occurs only in the ordered structures (0 ≤ x < ~0.3). The phases with ~0.65 ≤ x ≤ 1 adopt the α-quartz structure at room temperature, and they display positive thermal expansion along both a and c from 20 K to their α-β transition temperatures. This behavior arises mainly from a rotation of rigid Si(Al)-tetrahedra about the <100> axes. Landau analysis provides quantitative evidence that the charge-coupled substitution of Li + Al for Si in quartz dampens the α-β transition. With increasing Li + Al content, the low-temperature modifications exhibit a marked decrease in spontaneous strain; this behavior reflects a weakening of the first-order character of the transition. In addition, we observe a linear decrease in the α-β critical temperature from 846 K to near 0 K as the Li + Al content increases from x = 0 to x = ~0.5.
机译:在20至873 K的温度范围内,研究了Li_(1-x)Al_(1-x)Si_(1 + x)O_4系统(0≤x≤1)中石英填充衍生物的结构行为。分辨率粉末同步加速器X射线衍射(XRD)。 Rietveld分析揭示了三种不同的状态,它们的边界由x /〜0.3时的Al / Si有序-无序跃迁和x =〜0.65时的β-α置换转变确定。在拓扑上与β石英(0≤x <〜0.65)相同的化合物在(0 0 1)平面内扩展,并随着温度的升高沿c收缩;然而,在0≤x <〜0.3范围内的结构,其热各向异性明显高于组成在〜0.3≤x <〜0.65范围内的结构。我们将此差异归因于仅在有序结构(0≤x <〜0.3)中出现的四面体倾斜机制。 〜0.65≤x≤1的相在室温下采用α-石英结构,并且从20 K到其α-β转变温度沿a和c均显示正热膨胀。此行为主要是由于刚性Si(Al)-四面体绕<100>轴旋转而引起的。兰道(Landau)分析提供了定量的证据,表明石英中的Si用Li + Al进行电荷耦合取代会抑制α-β跃迁。随着Li + Al含量的增加,低温改性表现出自发应变的显着降低。这种行为反映了过渡的一阶特征的减弱。另外,随着Li + Al含量从x = 0增加到x =〜0.5,我们观察到α-β临界温度从846 K线性降低到接近0K。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号