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Imidazolium-Based Organic Structure Directing Agents for the Synthesis of Microporous Materials

机译:咪唑基有机结构导向剂用于合成微孔材料

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摘要

The central theme of this thesis is the use of imidazolium-based organic structure directing agents (OSDAs) in microporous materials synthesis. Imidazoliums are advantageous OSDAs as they are relatively inexpensive and simple to prepare, show robust stability under microporous material synthesis conditions, have led to a wide range of products, and have many permutations in structure that can be explored. The work I present involves the use of mono-, di-, and triquaternary imidazolium-based OSDAs in a wide variety of microporous material syntheses. Much of this work was motivated by successful computational predictions (Chapter 2) that led me to continue to explore these types of OSDAs. Some of the important discoveries with these OSDAs include the following: 1) Experimental evaluation and confirmation of a computational method that predicted a new OSDA for pure-silica STW, a desired framework containing helical pores that was previously very difficult to synthesize. 2) Discovery of a number of new imidazolium OSDAs to synthesize zeolite RTH, a zeolite desired for both the methanol-to-olefins reaction as well as NOX reduction in exhaust gases. This discovery enables the use of RTH for many additional investigations as the previous OSDA used to make this framework was difficult to synthesize, such that no large scale preparations would be practical. 3) The synthesis of pure-silica RTH by topotactic condensation from a layered precursor (denoted CIT-10), that can also be pillared to make a new framework material with an expanded pore system, denoted CIT-11, that can be calcined to form a new microporous material, denoted CIT-12. CIT-10 is also interesting since it is the first layered material to contain 8 membered rings through the layers, making it potentially useful in separations if delamination methods can be developed. 4) The synthesis of a new microporous material, denoted CIT-7 (framework code CSV) that contains a 2-dimensional system of 8 and 10 membered rings with a large cage at channel intersections. This material is especially important since it can be synthesized as a pure-silica framework under low-water, fluoride-mediated synthesis conditions, and as an aluminosilicate material under hydroxide mediated conditions. 5) The synthesis of high-silica heulandite (HEU) by topotactic condensation as well as direct synthesis, demonstrating new, more hydrothermally stable compositions of a previously known framework. 6) The synthesis of germanosilicate and aluminophosphate LTA using a triquaternary OSDA. All of these materials show the diverse range of products that can be formed from OSDAs that can be prepared by straightforward syntheses and have made many of these materials accessible for the first time under facile zeolite synthesis conditions.
机译:本文的中心主题是在微孔材料合成中使用咪唑类有机结构导向剂(OSDA)。咪唑是有利的OSDA,因为它们相对便宜且易于制备,在微孔材料合成条件下显示出稳健的稳定性,已导致广泛的产物,并且在结构上具有许多可探索的变化。我目前的工作涉及在各种微孔材料合成中使用基于单,二和三季咪唑的OSDA。大部分工作是由成功的计算预测(第2章)推动的,该预测使我继续探索这些类型的OSDA。这些OSDA的一些重要发现包括:1)实验评估和计算方法的预测,该方法预测了纯二氧化硅STW的新OSDA,而纯二氧化硅STW是所需的包含螺旋孔的骨架,以前很难合成。 2)发现了许多新的咪唑OSDA,以合成RTH沸石,这是甲醇与烯烃反应以及废气中NOX还原所需的沸石。这个发现使得RTH可以用于许多其他研究,因为以前的OSDA用于使该框架难以合成,因此无法进行大规模准备。 3)通过层状前体(表示为CIT-10)的全位缩合反应合成纯硅RTH,也可将其柱化以制备具有扩大的孔系统的新骨架材料(表示为CIT-11),并可煅烧成形成一种新的微孔材料,称为CIT-12。 CIT-10也很有趣,因为它是第一层包含贯穿各层的8元环的层状材料,如果可以开发分层方法,则它可能在分离中有用。 4)合成了一种新的微孔材料,称为CIT-7(框架代码CSV),该材料包含一个二维系统,由8个和10个成员环组成,在通道交叉处有一个大的笼子。该材料特别重要,因为它可以在低水,氟化物介导的合成条件下合成为纯二氧化硅骨架,并在氢氧化物介导的条件下合成为铝硅酸盐材料。 5)通过全位缩合以及直接合成来合成高硅铝矾土(HEU),证明了先前已知骨架的新的,水热稳定的组成。 6)使用三级OSDA合成锗硅酸盐和铝磷酸盐LTA。所有这些材料都显示出可以通过直接合成制备的OSDA形成的产品范围很广,并且使这些材料中的许多材料在方便的沸石合成条件下首次可以使用。

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    Schmidt Joel Edward;

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  • 年度 2016
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