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Metal-organic porous frameworks designed from zinc(II), terbium(III), europium(III), and organic carboxylate building blocks.

机译:由锌(II),b(III),euro(III)和有机羧酸盐结构单元设计的金属有机多孔骨架。

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摘要

The body of this thesis focuses on constructing novel, metal-organic open framework (MOF) materials by the copolymerization in solution of Zn(II), Tb(III) Eu(III) metal ions with the organic building blocks: acetylenedicarboxylic acid (ADC), 4,4-bipyridine (BPY), 1-hydroxyethylidene-1,1-diphosphonic acid (HEDP), 2,6-naphthalenedicarboxylic acid (NDC), 4,4-azodibenzoic acid (ADC), 1,3,5,7-adamantanetetracarboxylic acid (ATC), and 1,4-benzenedicarboxylic acid (BDC). Several new open structures with the formulas Th(BDC)(NO 3)·[HCON(CH3)2]2 (MOF6 ), Th2(BDC)Y(H2O)4 (MOF-7), Tb 2(ADC)3·(CH3OH)2[(CH3) 2SO]2 (MOF-8), Tb2(ADB)3·[(CH 3)2SO]20 (MOF-9), Zn(ADC)2·[BN(CH 2CH3)3]2 (MOF-10), Zn 2(ATC)·(H2O)2(CH3Ch2OH) 2 (MOF-12), and Zn(NDC)·(H2O)[HCON(CH3) 2](C6H5Cl)0.5 (INSOFAR) have been characterized through single crystal x-ray diffraction. Other non porous crystal structures have also been characterized: Zn(ADC)(H2O)[HCON(CH3) 2], Eu(NO3)4 (BPY)(HBPY), and Tb(HEDP)2(C 5H5N), and the preparation of these structures have been compared to the synthesis of the porous structures. In addition, the properties, porosity, and inclusion chemistry of the MOFs have been explored by gas and liquid sorption, thermal gravimetric analysis, elemental analysis, Fourier transform infrared spectroscopy, and x-ray powder diffraction techniques.; Several challenges in the area of MOF materials have been addressed in this work. By using solvo-thermal and room temperature vapor diffusion techniques, effective methods of synthesis and crystallization have been developed for these systems. By using the large amount of data available on Zn(II) chemistry, as well as the work of previous researchers in our group, many novel Zn(II) - carboxylate open frameworks can now be designed for certain structural attributes. This is accomplished through using known atom clusters or secondary building units (SBUs) of the metal ion employed in constructing the framework. Furthermore, by implementing this design technique, SBUs can be utilized to minimize the amount of interpenetration that occurs within these structures. Finally, the lanthanide metals, Tb(II) and Eu(II) were used to design in functionality into the framework structures. The unique fluorescence of many of the lanthanides in the visible region can be used to create open framework sensor materials.
机译:本文的主体致力于通过在有机结构单元中的Zn(II),Tb(III)Eu(III)金属离子与乙炔基二羧酸(ADC)的溶液共聚来构建新颖的金属有机开放框架(MOF)材料。 ),4,4 '-联吡啶(BPY),1-羟基亚乙基-1,1-二膦酸(HEDP),2,6-萘二甲酸(NDC),4,4 ' -偶氮二苯甲酸(ADC),1,3,5,7-金刚烷四羧酸(ATC)和1,4-苯二甲酸(BDC)。分子式为Th(BDC)(NO 3 )·[HCON(CH 3 2 ] 2 < / sub>(MOF 6 ),Th 2 (BDC)Y(H 2 O) 4 (MOF -7),Tb 2 (ADC) 3 ·(CH 3 OH) 2 [(CH 3 2 SO] 2 (MOF-8),Tb 2 (ADB) 3 ·[(CH 3 2 SO] 20 (MOF-9),Zn(ADC) 2 ·[BN(CH 2 CH 3 3 ] 2 (MOF-10),Zn 2 (ATC)·(H 2 O) 2 (CH 3 Ch 2 OH) 2 (MOF-12)和Zn(NDC)·(H 2 O)[HCON(CH 3 2 < / sub>](C 6 H 5 Cl) 0.5 (INSOFAR)已通过单晶X射线衍射进行了表征。还表征了其他非多孔晶体结构:Zn(ADC)(H 2 O)[HCON(CH 3 2 ],Eu (NO 3 4 (BPY)(HBPY)和Tb(HEDP) 2 (C 5 H 5 N),并将这些结构的制备与多孔结构的合成进行了比较。此外,还通过气体和液体吸附,热重分析,元素分析,傅立叶变换红外光谱和X射线粉末衍射技术探索了MOF的性质,孔隙率和夹杂化学。这项工作解决了MOF材料领域的几个挑战。通过使用溶剂热和室温蒸汽扩散技术,已经为这些系统开发了有效的合成和结晶方法。通过使用大量有关Zn(II)化学的数据以及我们小组中先前研究人员的工作,现在可以针对某些结构属性设计许多新颖的Zn(II)-羧酸盐开放骨架。这是通过使用已知的金属离子原子簇或用于构架的金属离子的二级结构单元(SBU)来完成的。此外,通过实施此设计技术,可以利用SBU来最小化这些结构中发生的互穿量。最后,使用镧系金属Tb(II)和Eu(II)将功能性设计到框架结构中。许多镧系元素在可见光区域的独特荧光可用于创建开放式框架传感器材料。

著录项

  • 作者

    Reineke, Theresa Marie.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Chemistry Inorganic.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 246 p.
  • 总页数 246
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;工程材料学;
  • 关键词

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