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首页> 外文期刊>Journal of Molecular Liquids >Aqueous solutions of triblock copolymers used as the media affecting the magnetic relaxation properties of gadolinium ions trapped by metal-oxide nanostructures
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Aqueous solutions of triblock copolymers used as the media affecting the magnetic relaxation properties of gadolinium ions trapped by metal-oxide nanostructures

机译:三嵌段共聚物的水溶液用作影响由金属氧化物纳米结构捕获的钆离子的磁性弛豫特性的介质

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The present work introduces the optimization of the oxidative degradation, complex formation and aggregation of the water-soluble metal oxide nanostructures (the so-called keplerates) -[{W6O21(H2O)(5)(OAC)(0.5)}(12){Mo2O4(OAC)}(30)](48-) (W72Mo60), [{Mo6O21(H2O)(3)(SO4)}(12)(VO)(30)(H2O20](26-)(Mo72V30), and [{Mo6O21}(12)Fe-30(OAC)(12){Mo2O7(H2O)}(2){H2Mo2O8(H2O)}(H2O)(91)] (Mo72Fe30) in aqueous solutions containing Gd 3 + ions and triblock copolymers, which can be used as a tool to enhance magnetic relaxivity of the gadolinium-bound nanostructures. The particularly significant enhancement in the magnetic relaxivity of the Gd3+ ions bound with W72Mo60 versus Mo72Fe30/V-3(0) is due to the more convenient size of the external pores in the keplerate framework, which are the binding sites for Gd3+ aqua ions. The structure of the W72Mo60 keplerate is also responsible for the high stabilities of its gadolinium complexes against oxidative degradation in the solutions. The aggregation of the gadolinium-bound W72Mo60 keplerates controlled by the Gd:keplerate molar ratio is a factor in addition to the structure affecting the relaxivity. The assembly of the gadolinium-bound keplerates with the triblock copolymers enhances the relaxivity values by limiting the size of the aggregates, while the relaxivity of the molecular complexes is insignificantly affected by the assembly with the triblock copolymers. The gadolinium complexes exhibiting competitively high magnetic relaxivity values, coupled with their high chemical stability and low cytotoxicity, are introduced herein as the result of the structural optimization, both on molecular and supramolecular levels. (C) 2019 Elsevier B.V. All rights reserved.
机译:本作者介绍了水溶性金属氧化物纳米结构的氧化降解,复杂的形成和聚集的优化(所谓的孔) - [{W6O21(H 2 O)(5)(0.5)(0.5)}(12) {Mo2O4(OAC)}(30)](48-)(W72MO60),[{Mo6O21(H 2 O)(3)(SO 4)}(12)(VO)(30)(H2O20](26 - )(MO72V30) ,[{Mo6O21}(12)Fe-30(OAC)(12){Mo2O7(H 2 O)}(2){H 2 O 2 O 8(H 2 O)}(H2O)(91)](MO72FE30),其含有Gd 3 +的水溶液中离子和三嵌段共聚物,可用作增强钆纳米结构的磁性松弛率的工具。Gd3 +离子与W72MO60与MO72FE30 / V-3(0)结合的Gd3 +离子的磁性松弛率特别显着增强是由于在孔框架中更方便的外部孔的尺寸更方便,即GD3 + Aqua离子的结合位点。W72MO60佩服的结构也负责其钆配合物的高稳定性,溶液中的氧化降解。的聚集G.由GD控制的Adolinium-Bound W72MO60孔:孔比例是除了影响松弛率的结构之外的因素。通过限制聚集体的尺寸,使钆与三嵌段共聚物的漂浮物的组装增强了松弛率值,而分子复合物的松弛率是通过与三嵌段共聚物的组件的影响微不平关。钆配合物具有竞争力的高磁性放松值,与其高化学稳定性和低细胞毒性相结合,在本文中引入了分子和超分子水平的结构优化的结果。 (c)2019 Elsevier B.v.保留所有权利。

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  • 来源
    《Journal of Molecular Liquids 》 |2019年第2019期| 共9页
  • 作者单位

    Russian Acad Sci FRC Kazan Sci Ctr Arbuzov Inst Organ &

    Phys Chem Arbuzov Str 8 Kazan 420088 Russia;

    Kazan Volga Reg Fed Univ Kremlyovskaya Str 18 Kazan 420008 Russia;

    Nikolaev Inst Inorgan Chem 3 Acad LavrentievProsp Novosibirsk Russia;

    Nikolaev Inst Inorgan Chem 3 Acad LavrentievProsp Novosibirsk Russia;

    Russian Acad Sci FRC Kazan Sci Ctr Arbuzov Inst Organ &

    Phys Chem Arbuzov Str 8 Kazan 420088 Russia;

    AN Tupolev Kazan Natl Res Tech Univ 10 K Marx St Kazan 420111 Russia;

    Russian Acad Sci FRC Kazan Sci Ctr Arbuzov Inst Organ &

    Phys Chem Arbuzov Str 8 Kazan 420088 Russia;

    Russian Acad Sci FRC Kazan Sci Ctr Arbuzov Inst Organ &

    Phys Chem Arbuzov Str 8 Kazan 420088 Russia;

    Russian Acad Sci FRC Kazan Sci Ctr Arbuzov Inst Organ &

    Phys Chem Arbuzov Str 8 Kazan 420088 Russia;

    Kazan Volga Reg Fed Univ Kremlyovskaya Str 18 Kazan 420008 Russia;

    Russian Acad Sci FRC Kazan Sci Ctr Arbuzov Inst Organ &

    Phys Chem Arbuzov Str 8 Kazan 420088 Russia;

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  • 正文语种 eng
  • 中图分类 理论物理学 ;
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