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一种偏钛酸颗粒干凝胶:绿色合成、结构测定及详细表征

A Metatitanic Acid Particulate Xerogel: Green Synthesis, Structure Determination, and Detailed Characterization.

作者信息

Motlochová Monika, Vislocká Xenia, Lidin Sven, Čaplovičová Mária, Maršálek Roman, Šubrt Jan

机构信息

Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68 Řež, Czech Republic.

Centre for Analysis and Synthesis, Lunds Universitet, Naturvetarvägen 14, Lund 222-61, Sweden.

出版信息

Inorg Chem. 2024 Jul 15;63(28):12730-12739. doi: 10.1021/acs.inorgchem.4c00369. Epub 2024 Jun 29.

DOI:10.1021/acs.inorgchem.4c00369
PMID:38943595
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11256744/
Abstract

The manuscript focuses on an original method of preparation of metatitanic acid when only environmentally safe base substances are used in the synthesis process. The synthesis is based on the reaction of solid titanyl sulfate in an aqueous solution of sodium hydroxide. This method allows for (i) a full preservation of the morphology of the starting titanyl sulfate and (ii) a preparation of metatitanic acid substances with specific parameters. This can be achieved via a precise control of the alkali metal/titanyl sulfate ratio resulting in substances with varying contents of alkali metals or even sulfate anions. The prepared metatitanic acid then also contains very small weakly crystalline particles (2-3 nm) and forms pseudomorphic aggregates whose shape and dimensions correspond to those of the starting titanyl sulfate. These aggregates exhibit regular nanoporosity with a high surface area of up to 500 m·g, have no tendency to form colloids, and are mechanically highly resistant even by high-energy ultrasound. The characterization of the resulting products is done via their chemical composition and methods of structural analysis, as well as by electron microscopy and local analysis. The mechanism of product formation is discussed based on the structure of the precursor, including the so far unknown structure of metatitanic acid.

摘要

该手稿聚焦于在合成过程中仅使用环境安全的碱性物质制备偏钛酸的原始方法。合成基于固体硫酸氧钛在氢氧化钠水溶液中的反应。这种方法能够(i)完全保留起始硫酸氧钛的形态,以及(ii)制备具有特定参数的偏钛酸物质。这可以通过精确控制碱金属/硫酸氧钛的比例来实现,从而得到具有不同碱金属含量甚至硫酸根阴离子含量的物质。所制备的偏钛酸还包含非常小的弱结晶颗粒(2 - 3纳米),并形成假晶聚集体,其形状和尺寸与起始硫酸氧钛的形状和尺寸相对应。这些聚集体具有高达500 m·g的高比表面积的规则纳米孔隙率,没有形成胶体的倾向,并且即使受到高能超声作用,机械抗性也很强。通过产物的化学成分、结构分析方法以及电子显微镜和局部分析对所得产物进行表征。基于前体的结构,包括迄今未知的偏钛酸结构,对产物形成机制进行了讨论。

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