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Studies on the exfoliation, reassembly and applications of layered materials.

机译:研究分层材料的剥离,重组和应用。

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This work investigates three research problems around a central theme of the chemistry of layered inorganic oxides. The first theme includes the exfoliation and reassembly of layered perovskites as well as the intercalation/exfoliation of graphite-like layered materials. The second concerns the design of anion-exchanging clay/polymer composites for use in environmental remediation. The third theme investigates the ionic/electronic conductivity of layered perovskites. The results of the experiments as well as their possible applications are described in detail within each chapter.;Chapter two describes research performed on the exfoliation and reassembly of layered perovskites. The reassembly (with in-plane registry) of exfoliated sheets was of particular interest. Multiple layered perovskites were synthesized and ion exchanged. While most of these materials did not exfoliate to a significant degree, it was observed that there are specific criteria required for sheets exfoliate and even more stringent requirements for reassembly. It was also observed that even with materials that exfoliate and restack completely, a mixture of sheets from two distinct compounds do not reassemble together. An interesting trend was observed in which the degree to which a material exfoliates is correlated to the acidity of the interlayer protons.;Chapter three describes a study of anion-exchanging clay/polymer composites designed as materials for the sequestration of environmentally hazardous anions such as perchlorate and pertechnetate. Exfoliated synthetic fluoromica was reassembled with cationic polymers to produce composites, which selectively bind perchlorate in solutions that contain both perchlorate and chloride. The focus of this chapter is the binding isotherms observed for numerous composite systems. Most of the composites exhibited cooperative binding, while one conformed to a Langmuirian isotherm. Experiments detailing the use of these composites as hosts for catalytic particles are also discussed in this chapter.;Chapter four focuses on the exfoliation of layered materials with uncharged sheets, such as tungsten disulfide and hexagonal boron nitride. Combining the methods in recent reports of the intercalation of phosphoric acid into hexagonal boron nitride with reports of solution based exfoliation of layered materials, an increase in the yield of exfoliated flakes was observed. There is a significant increase in the number of thin flakes obtained using acid-assisted exfoliation as compared to experiments without the acid. Interestingly, a small degree of exfoliation is observed by stirring the solids with ethylphosphonic acid in isopropyl alcohol solution.;Chapters five and six are discussions on the conductivity of several layered perovskites. Chapter four focuses on the layered perovskite HLa 2Ti2TaO10 and related phases formed by A-site substitution in the H1+xSrxLa2-xTi2 TaO10 series. Chapter five is a detailed study of the electronic/ionic conductivity of HCa2Nb3O10. Each material was found to be primarily an electronic conductor under reducing atmospheres, as opposed to an ionic (proton) conductor.
机译:这项工作围绕着层状无机氧化物化学的中心主题研究了三个研究问题。第一个主题包括层状钙钛矿的剥落和重新组装,以及类石墨层状材料的嵌入/剥落。第二个问题是用于环境修复的阴离子交换粘土/聚合物复合材料的设计。第三个主题研究层状钙钛矿的离子/电子传导性。实验的结果及其可能的应用将在每一章中详细介绍。第二章介绍了层状钙钛矿的剥离和重组研究。脱落薄片的重新组装(具有面内套准)尤其令人感兴趣。合成多层钙钛矿并进行离子交换。尽管这些材料大多数都没有明显剥离,但据观察,剥离片材有特殊的标准,甚至对组装的要求也更加严格。还观察到,即使使用了完全剥离并重新堆积的材料,来自两种不同化合物的薄片混合物也不会重新组装在一起。观察到一个有趣的趋势,其中材料剥落的程度与夹层质子的酸度相关。;第三章描述了阴离子交换粘土/聚合物复合材料的研究,该复合材料被设计为螯合环境有害阴离子(例如螯合)的材料。高氯酸盐和高tech酸盐。将脱落的合成氟云母与阳离子聚合物重新组装,以生产复合材料,该复合材料可在含有高氯酸盐和氯化物的溶液中选择性结合高氯酸盐。本章的重点是在许多复合系统中观察到的绑定等温线。大多数复合材料表现出协同结合,而一种符合朗缪尔等温线。在本章中还将详细讨论使用这些复合材料作为催化颗粒主体的实验。第四章着重研究层状材料与不带电薄片的剥离,例如二硫化钨和六方氮化硼。结合最近报道的将磷酸嵌入六方氮化硼中的方法与基于溶液的层状材料剥落的报道相结合,观察到剥落薄片的产率增加。与没有酸的实验相比,使用酸辅助剥落获得的薄片的数量有明显增加。有趣的是,将固体与乙基膦酸在异丙醇溶液中搅拌可观察到少量剥落。第五章和第六章讨论了几种层状钙钛矿的电导率。第四章重点研究层状钙钛矿HLa 2Ti2TaO10及其在H1 + xSrxLa2-xTi2 TaO10系列中由A位取代形成的相关相。第五章详细介绍了HCa2Nb3O10的电子/离子电导率。发现每种材料在还原性气氛下主要是电子导体,与离子(质子)导体相反。

著录项

  • 作者

    Henderson, Camden Neil.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Inorganic chemistry.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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