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叠氮铅金属有机配位聚合物:合成、结构及其在氧化铅纳米材料制备中的应用

Lead(II)-Azido Metal-Organic Coordination Polymers: Synthesis, Structure and Application in PbO Nanomaterials Preparation.

作者信息

Dadashi Jaber, Khaleghian Mohammad, Hanifehpour Younes, Mirtamizdoust Babak, Joo Sang Woo

机构信息

Department of Chemistry, Faculty of Science, University of Qom, Qom P.O. Box 37185-359, Iran.

Department of Chemistry, Sayyed Jamaleddin Asadabadi University, Asadabad 6541861841, Iran.

出版信息

Nanomaterials (Basel). 2022 Jun 30;12(13):2257. doi: 10.3390/nano12132257.

Abstract

The current study aims to explain recent developments in the synthesis of Pb(II)-azido metal-organic coordination polymers. Coordination polymers are defined as hybrid materials encompassing metal-ion-based, organic linkers, vertices, and ligands, serving to link the vertices to 1D, 2D, or 3D periodic configurations. The coordination polymers have many applications and potential properties in many research fields, primarily dependent on particular host-guest interactions. Metal coordination polymers (CPs) and complexes have fascinating structural topologies. Therefore, they have found numerous applications in different areas over the past two decades. Azido-bridged complexes are inorganic coordination ligands with higher fascination that have been the subject of intense research because of their coordination adaptability and magnetic diversity. Several sonochemical methods have been developed to synthesize nanostructures. Researchers have recently been interested in using ultrasound in organic chemistry synthetics, since ultrasonic waves in liquids accelerate chemical reactions in heterogeneous and homogeneous systems. The sonochemical synthesis of lead-azide coordination compounds resulted from very fantastic morphologies, and some of these compounds are used as precursors for preparing nano lead oxide. The ultrasonic sonochemistry approach has been extensively applied in different research fields, such as medical imaging, biological cell disruption, thermoplastic welding, food processing, and waste treatment. CPs serve as appropriate precursors for preparing favorable materials at the nanoscale. Using these polymers as precursors is beneficial for preparing inorganic nanomaterials such as metal oxides.

摘要

当前的研究旨在解释Pb(II)-叠氮金属有机配位聚合物合成方面的最新进展。配位聚合物被定义为包含基于金属离子的有机连接体、顶点和配体的杂化材料,用于将顶点连接成一维、二维或三维周期性结构。配位聚合物在许多研究领域有诸多应用和潜在特性,主要取决于特定的主客体相互作用。金属配位聚合物(CPs)和配合物具有迷人的结构拓扑。因此,在过去二十年里它们在不同领域得到了广泛应用。叠氮桥联配合物是具有较高吸引力的无机配位配体,由于其配位适应性和磁学多样性,一直是深入研究的对象。已经开发了几种声化学方法来合成纳米结构。近来研究人员对在有机化学合成中使用超声波感兴趣,因为液体中的超声波能加速多相和均相体系中的化学反应。叠氮化铅配位化合物的声化学合成产生了非常奇特的形态,其中一些化合物被用作制备纳米氧化铅的前驱体。超声声化学方法已广泛应用于不同的研究领域,如医学成像、生物细胞破碎、热塑性焊接、食品加工和废物处理。配位聚合物是在纳米尺度制备优良材料的合适前驱体。将这些聚合物用作前驱体有利于制备诸如金属氧化物之类的无机纳米材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd21/9268566/90efd12745cc/nanomaterials-12-02257-g001.jpg

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