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Nanoscale Metal-Organic Frameworks: Recent developments in synthesis, modifications and bioimaging applications

机译:纳米级金属 - 有机框架:近期开发在合成,修改和生物影像机应用中

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摘要

Porous Metal-Organic Frameworks (MOFs) have emerged as eye-catching materials in recent years. They are widely used in numerous fields of chemistry thanks to their desirable properties. MOFs have a key role in the development of bioimaging platforms that are hopefully expected to effectually pave the way for accurate and selective detection and diagnosis of abnormalities. Recently, many types of MOFs have been employed for detection of RNA, DNA, enzyme activity and small-biomolecules, as well as for magnetic resonance imaging (MRI) and computed tomography (CT), which are valuable methods for clinical analysis. The optimal performance of the MOF in the bio-imaging field depends on the core structure, synthesis method and modifications processes. In this review, we have attempted to present crucial parameters for designing and achieving an efficient MOF as bioimaging platforms, and provide a roadmap for researchers in this field. Moreover, the influence of modifications/fractionalizations on MOFs performance has been thoroughly discussed and challenging problems have been extensively addressed. Consideration is mainly focused on the principal concepts and applications that have been achieved to modify and synthesize advanced MOFs for future applications.
机译:近年来,多孔金属 - 有机框架(MOFS)已成为引人注目的材料。由于其理想的性质,它们广泛应用于许多化学领域。 MOF在开发生物影像平台方面具有关键作用,希望有效地为准确和选择性检测和诊断异常而有效地铺平道路。最近,已经采用了许多类型的MOF用于检测RNA,DNA,酶活性和小生物分子,以及磁共振成像(MRI)和计算机断层扫描(CT),这是临床分析的有价值的方法。生物成像场中的MOF的最佳性能取决于核心结构,合成方法和修改过程。在本综述中,我们试图呈现用于设计和实现高效MOF作为生物体平台的重要参数,并为该领域的研究人员提供路线图。此外,已经彻底讨论了对MOFS性能的修改/渐变性的影响,并有挑战性的问题得到了广泛的解决。考虑主要专注于已实现的主要概念和应用,以修改和综合未来应用程序的先进MOF。

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