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天然碱的压缩性与各向异性:揭示致密NaH(CO)·2HO多晶型物的结构

Compressibility and Anisotropy of Trona: Unveiling the Structure of a Dense NaH(CO)·2HO Polymorph.

作者信息

Botan-Neto Benedito Donizeti, Santamaria-Perez David, Wedek Lena, Bayarjargal Lkhamsuren, Bera Ganesh, Botella Pablo, Pellicer-Porres Julio, Otero-de-la-Roza Alberto, Popescu Catalin, Alabarse Frederico G

机构信息

Departamento de Física Aplicada-ICMUV, MALTA Consolider Team, Universitat de València, Valencia 46100, Spain.

Institute of Geosciences, Goethe University Frankfurt, Frankfurt 60438, Germany.

出版信息

Inorg Chem. 2025 May 26;64(20):10067-10077. doi: 10.1021/acs.inorgchem.5c00642. Epub 2025 May 15.

Abstract

Understanding the structural stability of hydrated carbonates and bicarbonates under different thermodynamic conditions is crucial, as they play an important role in the carbon cycle, in environmental chemistry, and geochemistry. Sodium sesquicarbonate dihydrate, NaH(CO)·2HO trona, is a naturally occurring evaporite mineral also found in magmatic environments. In this work, we carried out high-pressure (HP) in situ synchrotron powder and single-crystal X-ray diffraction (XRD) measurements on a naturally occurring trona specimen. A high-pressure monoclinic to triclinic phase transition occurred at 12.8 GPa, and the structure of the dense HP trona phase was solved. The coordination number of sodium atoms increased from 6 in the low-pressure polymorph to 7-8 in the HP one. Additionally, our results did not show any indication of the phase transition previously reported at 7 GPa based on Raman spectroscopy. The compressibility and anisotropy of low- and high-pressure phases were determined. Birch-Murnaghan equation of state parameters were fitted to the pressure-volume data sets, yielding a bulk modulus of 35(2) GPa (' = 4.4(9)) for trona using neon as pressure-transmitting medium. Density functional theory calculations supported the experimental results, confirming the structural stability of the phases obtained by XRD.

摘要

了解水合碳酸盐和碳酸氢盐在不同热力学条件下的结构稳定性至关重要,因为它们在碳循环、环境化学和地球化学中发挥着重要作用。倍半碳酸钠二水合物,即NaH(CO)·2HO天然碱,是一种天然存在的蒸发盐矿物,也存在于岩浆环境中。在这项工作中,我们对一个天然存在的天然碱样本进行了高压(HP)原位同步辐射粉末和单晶X射线衍射(XRD)测量。在12.8 GPa时发生了从高压单斜相到三斜相的转变,并且解析了致密高压天然碱相的结构。钠原子的配位数从低压多晶型物中的6增加到高压多晶型物中的7至8。此外,我们的结果没有显示出基于拉曼光谱先前报道的在7 GPa时相变的任何迹象。测定了低压和高压相的压缩性和各向异性。将Birch-Murnaghan状态方程参数拟合到压力-体积数据集,以氖作为压力传递介质时,天然碱的体积模量为35(2) GPa(' = 4.4(9))。密度泛函理论计算支持了实验结果,证实了通过XRD获得的相的结构稳定性。

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