穿越阿特兰路线,材料软合成的多功能工具:二十五年展望

Nano Select Pub Date : 2024-02-17 DOI:10.1002/nano.202300169
María Dolores Garrido, Miriam Benítez, J. Ros-Lis, Pedro Amorós
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引用次数: 0

摘要

过去几十年来,三乙醇胺在材料制备中的应用一直是一个富饶的研究领域。由于三乙醇胺能够调节 pH 值、充当结构引导剂并与多种元素形成阿坦络合物,因此被用于溶胶-凝胶合成。阿坦烷能协调无机物的水解和缩合过程以及它们与表面活性剂分子或胶束的相互作用,从而获得均质材料。本综述介绍了形成阿坦络合物的基本原理及其在材料合成中的应用,随后汇编了参考书目中的主要实例。这些材料包括使用胶束作为成孔物质(MCM-41、SBA-15、UVM-7 等)或不使用模板剂(TUD-1、UVM-11 等)的纯硅和掺杂硅、非硅氧化物(Al2O3、TiO2、ZrO2 等)、介孔磷酸盐和膦酸盐、沸石(沸石、铝磷酸盐或硅铝磷酸盐)和层状双氢氧化物。阿特兰路线展示了一种多用途方法,可同时用三种元素制备这些材料。综述的重点是材料的合成及其主要应用的讨论。这些实例丰富了对该主题未来前景的讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A travel though the atrane route, a versatile tool for the materials soft‐synthesis: A twenty‐five years perspective
The use of triethanolamine in the preparation of materials has been a fertile area of research during the last decades. It is used in sol‐gel synthesis because of its ability to regulate pH, act as a structure‐directing agent, and form atrane complexes with a wide variety of elements. The atranes harmonize the hydrolysis and condensation processes of inorganic species with their interaction with surfactant molecules or micelles for the obtention of homogeneous materials. This review describes the basic principles of the formation of atrane complexes and their use in material synthesis, followed by a compilation of the main examples found in the bibliography. These materials include pure and doped silicas by using micelles as porogen species (MCM‐41, SBA‐15, UVM‐7, etc.), or without using template agents (TUD‐1, UVM‐11, etc.), non‐silica oxides (Al2O3, TiO2, ZrO2, etc.), mesoporous phosphates and phosphonates, zeotypes (zeolites, aluminophosphates or silicoaluminophosphates, and layered double hydroxides. The atrane route shows a versatile approach for the preparation of these materials with up to three elements simultaneously. The focus of the review centers on the synthesis of the materials and the discussion of their main applications. These examples enrich with a discussion about the future perspective of the topic.
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