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Controlled isotropic or anisotropic nanoscale growth of coordination polymers: Formation of hybrid coordination polymer particles

机译:配位聚合物的受控各向同性或各向异性纳米级生长:杂化配位聚合物颗粒的形成

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The ability to fabricate multicompositional hybrid materials in a precise and controlled manner is one of the primary goals of modern materials science research. In addition, an understanding of the phenomena associated with the systematic growth of one material on another can facilitate the evolution of multifunctional hybrid materials. Here, we demonstrate precise manipulation of the isotropic and/or anisotropic nanoscale growth of various coordination polymers (CPs) to obtain heterocompositional hybrid coordination polymer particles. Chemical composition analyses conducted at every growth step reveal the formation of accurately assembled hybrid nanoscale CPs, and microscopy images are used to examine the morphology of the particles and visualize the hybrid structures. The dissimilar growth behavior, that is, growth in an isotropic or anisotropic fashion, is found to be dependent on the size of the metal ions involved within the CPs.
机译:以精确和受控的方式制造多元复合材料的能力是现代材料科学研究的主要目标之一。另外,对与一种材料在另一种材料上的系统生长有关的现象的理解可以促进多功能杂化材料的发展。在这里,我们演示了各种配位聚合物(CP)的各向同性和/或各向异性纳米级生长的精确控制,以获得异质杂化配位聚合物颗粒。在每个生长步骤进行的化学成分分析揭示了准确组装的杂化纳米级CP的形成,并使用显微镜图像检查了颗粒的形态并可视化了杂化结构。发现不同的生长行为,即以各向同性或各向异性的方式生长,取决于CP中涉及的金属离子的大小。

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