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Using the Structural Versatility of Lanthanide Metallacrowns to Tune Anion Recognition, Self-Assembly, and Luminescence Properties.

机译:使用镧系金属漆的结构多功能性来调节阴离子的识别,自组装和发光特性。

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摘要

Natural and artificial supramolecular systems utilize weak, reversible interactions to control the organization of matter and facilitate separations, catalysis, and materials design. Metallacrowns are metal dense macrocycles assembled through dative bonds. This thesis explores how structural changes to the building blocks can enhance the solid state organization, anion recognition, structure, and physical properties of the metallacrown.;A systematic crystallographic study was performed to assess how the side chain and central metal influences the size and selectivity of dimeric Ln(III)[15-MC-5] compartments. Phenyl side chains with 0-2 methylene spacers generate dimeric compartments ranging from 9.7 to 15.2 Å in height that selectively encapsulate 4.3 to 9.2 Å long dicarboxylate guests. Up to five carboxylate guests can be encapsulated based on considerations of side chain sterics and the coordination number of the central metal. Solution studies were performed with a novel voltammetric binding assay. Chiral Gd(III)[15-MCCu(II),L-pheHA -5]Cl3 metallocavitands bind a-amino acid analogs with affinity constants ranging from 70 ± 7 to 3260 ± 70 M-1 in 50% aqueous methanol for N-acetyl-R-phenylalanine and S-mandelate, respectively. Increasing the methylene spacers in the phenyl side chain from 0 to 2 increases the binding constant for benzoate from 800 ± 100 to 300 ± 300 M-1 in 40% aqueous acetonitrile. Mandelate enantioselectivity is enhanced (KS/KR up to 2.2 ± 0.6) by changing the phenyl side chain.;Optically transparent lanthanide metallacrowns with Zn(II) ring metals were assembled for their luminescence properties. Six distinct metallacrown motifs were assembled from picoline hydroxamic acid, Zn(II), Ln(III) through a strict solvent dependence and structurally characterized: Zn(H)[12-MC-4], Ln(III)[12-MC-4], Ln(III)[15-MC-5], Ln(III)[12-MC-4]2, Ln(III)[12-MC-4]2[24-MC-8], and Ln(III)2Zn9. The Yb(III)[12-MC-4]2[24-MC-8] is luminescent in methanol, emitting at 980 nm upon excitation at 325 nm with a quantum yield of 0.89 % and lifetime of 14 μs. This complex is the brightest near-infrared emitting lanthanide coordination complex in protic solvents due to reduced vibrational quenching through the removal of C-H oscillators from the proximity of the lanthanide ion by the metallacrown. These results reveal that the unique topology and structural versatility of metallacrowns create great promise for chiral separations, catalysis, and molecular materials.
机译:天然和人工的超分子系统利用微弱的可逆相互作用来控制物质的组织,并促进分离,催化和材料设计。金属催乳素是通过稠合键组装的金属致密大环。本文探讨了构建基团的结构变化如何增强金属催眠素的固态组织,阴离子识别,结构和物理性质。;进行了系统的晶体学研究,以评估侧链和中心金属如何影响尺寸和选择性。 Ln(III)[15-MC-5]二聚体的组成。带有0-2个亚甲基间隔基的苯基侧链产生高度为9.7至15.2Å的二聚体区室,可选择性封装4.3至9.2Å长的二羧酸盐客体。根据侧链空间位和中心金属的配位数,最多可以封装5个羧酸盐客体。用新型伏安法结合测定法进行溶液研究。手性Gd(III)[15-MC Cu(II),L-pheHA -5] Cl 3 金属配体结合亲和常数为70±的a-氨基酸类似物在50%的甲醇水溶液中,N-乙酰基-R-苯丙氨酸和S-扁桃酸酯的浓度为7至3260±70 M -1 。在40%乙腈水溶液中,将苯侧链中的亚甲基间隔基从0增加到2,可使苯甲酸酯的结合常数从800±100增加到300±300 M -1 。通过改变苯基侧链,可提高扁桃酸酯的对映选择性(K S / K R 最高可达2.2±0.6)。具有Zn(II)环金属的光学透明镧系金属漆根据其发光特性进行组装。通过严格的溶剂依赖性,从甲基吡啶异羟肟酸,Zn(II),Ln(III)组装了六个不同的金属漆基序,并在结构上进行了表征:Zn(H)[12-MC-4],Ln(III)[12-MC- 4],Ln(III)[15-MC-5],Ln(III)[12-MC-4] 2 ,Ln(III)[12-MC-4] 2 [24- MC-8]和Ln(III)2Zn9。 Yb(III)[12-MC-4] 2 [24-MC-8]在甲醇中发光,在325 nm激发时在980 nm发射,量子产率为0.89%,寿命为14μs该复合物是质子溶剂中最亮的近红外发射镧系元素配位化合物,这是因为通过金属镧系元素从镧系元素离子附近除去C-H振荡器,从而减少了振动猝灭。这些结果表明,金属漆row的独特拓扑结构和结构通用性为手性分离,催化和分子材料创造了广阔的前景。

著录项

  • 作者

    Jankolovits, Joseph M.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Chemistry Molecular.;Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 259 p.
  • 总页数 259
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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