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首页> 外文期刊>Angewandte Chemie >Direct Synthesis and Pseudomorphic Transformation of Mixed Metal Oxide Nanostructures with Non-Close-Packed Hollow Sphere Arrays
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Direct Synthesis and Pseudomorphic Transformation of Mixed Metal Oxide Nanostructures with Non-Close-Packed Hollow Sphere Arrays

机译:非封闭空心球阵列的混合金属氧化物纳米结构的直接合成和假形转化

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摘要

While bottom-up syntheses of ordered nanostructured materials at colloidal length scales have been successful at producing close-packed materials, it is more challenging to synthesize non-close-packed (ncp) structures. Here, a metal oxide nanostructure with ncp hollow sphere arrays was synthesized by combining a polymeric colloidal crystal template (CCT) with a Pechini precursor The CCT provided defined confinement through its tetrahedral (T-d) and octahedral (O-h) voids where the three-dimensionally (3D) ordered, ncp hollow sphere arrays formed as a result of a crystallization-induced rearrangement. This nanostructure, consisting of alternating, interconnected large and small hollow spheres, is distinct from the inverse opal structures typically generated from these CCTs. The morphology of the ncp hollow sphere arrays was retained in pseudomorphic transformations involving sulfidation and reoxidaiion cycling despite the segregation of zinc during these steps.
机译:虽然在胶体长度鳞片上的有序纳米结构材料的自下而上合成在生产封闭材料时成功地成功,但是合成非封闭填充(NCP)结构更具挑战性。 这里,通过将聚合物胶体晶体模板(CCT)与Pechini前体组合通过其四维(TD)和八面体(OH)空隙来合成具有NCP中空球形阵列的金属氧化物纳米结构。 3D)订购,NCP中空球体阵列形成为结晶诱导的重排。 该纳米结构由交替,互连的大和小空心球组成,与通常由这些CCT产生的逆蛋白石结构不同。 尽管在这些步骤中,尽管在这些步骤中偏析锌,但仍然存在NCP中空球体阵列的形态。

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