首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Synthetic Architecture of Multiple Core-Shell and Yolk-Shell Structures of (Cu2O@)_nCu2O (n = 1-4) with Centricity and Eccentricity
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Synthetic Architecture of Multiple Core-Shell and Yolk-Shell Structures of (Cu2O@)_nCu2O (n = 1-4) with Centricity and Eccentricity

机译:(Cu2O @)_ nCu2O(n = 1-4)具有中心和偏心的多重核-壳和卵黄-壳结构的合成体系结构

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摘要

In this work, we describe a seed-mediated approach with successive Ostwald ripening to synthesize various multiple-shell core-shell and yolk-shell structures of (Cu2O@)_n-Cu2O (n = 1-4). In particular, the structure formed in a previous step can serve as a newer-generation seed for a subsequent shell growth; a total of 20 representative structures have been thus synthesized in a step-by-step manner. With an increase in shell number n, in principle, 2" shelled products can be fabricated, taking into account the centricity and eccentricity in their geometric symmetry. Synthetic chemistry and functions of chemical additives have also been investigated to explain the formation mechanism and to ensure the uniformity of the product. It has been found that symmetric or asymmetric Ostwald ripening during the hollowing process can be manipulated by controlling stirring conditions. Furthermore, optical properties of the resultant samples can be closely related to structural aspects of the products, such as the overall size, the thickness of shells, the number of shells, and, importantly, the centricity and eccentricity in the final products. To test their applicability, we have also studied the electrocatalytic properties of these complex structures in nonenzymatic glucose sensing. Quite encouragingly, (Cu2O@)_nCu2O samples have shown an improved sensitivity as the number of thin shells increased.
机译:在这项工作中,我们描述了一种种子介导的方法,该方法通过连续奥斯特瓦尔德(Ostwald)成熟来合成(Cu2O @)_ n-Cu2​​O(n = 1-4)的各种多壳核壳和卵黄壳结构。特别是,在先前步骤中形成的结构可以用作后续壳生长的新一代种子。因此,已经逐步地合成了总共20个代表性结构。随着壳数n的增加,原则上可以在考虑几何对称性的偏心和偏心的情况下制造2英寸的带壳产品。还对合成化学和化学添加剂的功能进行了研究,以解释其形成机理并确保已经发现,可以通过控制搅拌条件来控制中空过程中对称或不对称的奥斯特瓦尔德熟化,此外,所得样品的光学性质可以与产品的结构方面密切相关,例如总体大小,壳的厚度,壳的数量,以及重要的是最终产品的中心度和偏心率。为了测试它们的适用性,我们还研究了这些复杂结构在非酶促葡萄糖传感中的电催化性能。 (Cu2O @)_ nCu2O样品随着薄壳数量的增加显示出更高的灵敏度安抚。

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