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水热合成如何改善(Zr,Ce)SiO固溶体的合成。

How hydrothermal synthesis improves the synthesis of (Zr,Ce)SiO solid solutions.

作者信息

Barral Thomas, Estevenon Paul, Chanteau Yann, Kaczmarek Thibault, Strzelecki Andrew C, Menut Denis, Welcomme Eleonore, Szenknect Stephanie, Moisy Philippe, Guo Xiaofeng, Dacheux Nicolas

机构信息

ICSM, Univ Montpellier, CNRS, CEA, ENSCM, Bagnols-sur-Cèze, France.

CEA, DES, ISEC, DMRC, Univ Montpellier, Marcoule, France.

出版信息

Dalton Trans. 2023 Jul 25;52(29):10023-10037. doi: 10.1039/d3dt01524f.

Abstract

Although ZrSiO is the most well-known compound in the zircon-structured family (space group 4/), the experimental conditions for preparing pure and well-crystallized phases that are doped with a tetravalent element hydrothermal synthesis have never been clearly discussed in the literature. With the aim to answer this question, the experimental conditions of the preparation of ZrSiO and (Zr,Ce)SiO were investigated in order to synthesize well-crystallized and pure phases. A multiparametric study has been carried out using soft hydrothermal conditions with variables including reactant concentration, initial pH of the reactive medium, and duration of the hydrothermal treatment. Pure ZrSiO was obtained through hydrothermal treatment for 7 days at 250 °C, within a large acidity range (1.0 ≤ pH ≤ 9.0) and starting from ≈ ≥ 0.2 mol L. As hydrothermally prepared zircon structured phases can be both hydrated and hydroxylated, its annealed form was also studied after heating to 1000 °C. Based on these results, the synthesis of (Zr,Ce)SiO solid solutions was also investigated. The optimal hydrothermal conditions to acquire pure and crystallized phases were as follows: 7 days at 250 °C with initial pH = 1 and concentration of the reactants equal to 0.2 mol L. This led to ZrCeSiO solid solutions with the incorporated Ce content up to 40 mol%. Samples were characterized using multiple methods, including laboratory and synchrotron PXRD, IR and Raman spectroscopies, SEM, and TGA. Moreover, it was found that these phases were thermally stable in air up to at least 1000 °C.

摘要

虽然ZrSiO是锆石结构族(空间群4/)中最知名的化合物,但文献中从未明确讨论过通过水热合成制备掺杂四价元素的纯且结晶良好相的实验条件。为了回答这个问题,研究了ZrSiO和(Zr,Ce)SiO的制备实验条件,以合成结晶良好的纯相。使用软水热条件进行了多参数研究,变量包括反应物浓度、反应介质的初始pH值和水热处理时间。在250°C下进行7天的水热处理,在较大的酸度范围(1.0≤pH≤9.0)且起始浓度≈≥0.2 mol/L的条件下获得了纯ZrSiO。由于水热制备的锆石结构相既可以水合也可以羟基化,还研究了其在加热到1000°C后的退火形式。基于这些结果,还研究了(Zr,Ce)SiO固溶体的合成。获得纯且结晶相的最佳水热条件如下:在250°C下7天,初始pH = 1,反应物浓度等于0.2 mol/L。这导致了ZrCeSiO固溶体,其中掺入的Ce含量高达40 mol%。使用多种方法对样品进行了表征,包括实验室和同步加速器PXRD、红外和拉曼光谱、扫描电子显微镜和热重分析。此外,发现这些相在空气中至少在1000°C下是热稳定的。

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