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Gas adsorption applications of porous metal-organic frameworks.

机译:多孔金属有机骨架的气体吸附应用。

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摘要

Porous metal-organic frameworks (MOFs) represent a new type of functional materials and have been found to exhibit great potential in various applications such as catalysis, magnetism, gas storage/separation etc. This dissertation details the investigation of porous MOFs for gas adsorption applications, including hydrogen storage, methane storage, and selective gas adsorption.;The first section evaluates porous MOFs as promising candidates for hydrogen storage application. It discusses various strategies to improve hydrogen uptakes in porous MOFs, which includes mimicking hemoglobin to create entatic metal centers in PCN-9 resulting in a high hydrogen heat of adsorption of 10.1 kJ/mol, functionalizing the organic ligand with fused aromatic rings to achieve high hydrogen adsorption capacity of 2.7 wt% in PCN-14 at 77 K and1 bar, and utilizing catenation to generate PCN-6 with a hydrogen uptake of 9.5 wt% (absolute, at 77 K and 50 bar) as well as a surface area of 3800 m2/g in.;The second section discusses methane storage applications of porous MOFs. Constructed from a pre-designed ligand, the porous MOF, PCN-14 exhibits the highest methane uptake capacity among currently reported materials with a value of 230 v/v (absolute, at ambient temperature and 35 bar), which is 28% higher than the US DOE target (180 v/v) for methane storage.;The third section addresses microporous MOFs as molecular sieves for selective gas adsorption application. Increasing the bulkiness of the struts and introducing coordinatively linked interpenetration restrict the pore sizes of PCN-13 and PCN-17 respectively to selectively adsorb oxygen and hydrogen over nitrogen and carbon monoxide. Based on some amphiphilic ligands, a series of mesh-adjustable molecular sieves, whose pore sizes can be continuously tuned from 2.9 to 5.0 A, have been designed for various gas separation applications.
机译:多孔金属有机骨架(MOFs)代表了一种新型的功能材料,并且在催化,磁性,气体存储/分离等各种应用中显示出巨大的潜力。本文详细研究了多孔MOF在气体吸附应用中的研究。 ;包括氢存储,甲烷存储和选择性气体吸附。第一部分评估多孔MOF作为氢存储应用的有希望的候选者。它讨论了改善多孔MOF中氢吸收的各种策略,其中包括模仿血红蛋白在PCN-9中产生焓金属中心,从而产生高的10.1 kJ / mol的氢吸附热,将有机配体与稠合的芳环官能化以实现高在77 K和1 bar下在PCN-14中的氢吸附能力为2.7 wt%,并利用串联反应生成PCN-6,其吸氢量为9.5 wt%(在77 K和50 bar时是绝对的),表面积为3800 m2 / g in .;第二部分讨论了多孔MOF的甲烷存储应用。由预先设计的配体构造而成的多孔MOF PCN-14在当前报道的材料中显示出最高的甲烷吸收能力,值为230 v / v(在环境温度和35 bar下绝对压力),比28%高。美国能源部(US DOE)的甲烷存储目标(180 v / v)。第三部分介绍了微孔MOF作为分子筛的选择性气体吸附应用。增加支柱的体积并引入协调连接的互穿分别限制了PCN-13和PCN-17的孔径,以选择性地吸收氧气和氢气,使之超过氮气和一氧化碳。基于一些两亲性配体,已设计了一系列可调节孔径大小从2.9 A到5.0 A连续调节的分子筛,用于各种气体分离应用。

著录项

  • 作者

    Ma, Shengqian.;

  • 作者单位

    Miami University.;

  • 授予单位 Miami University.;
  • 学科 Chemistry Molecular.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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