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首页> 外文期刊>Angewandte Chemie >Molecular Design of Bisphosphonates To Adjust Their Reactivity toward Metal Sources for the Surfactant-Assisted Synthesis of Mesoporous Films
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Molecular Design of Bisphosphonates To Adjust Their Reactivity toward Metal Sources for the Surfactant-Assisted Synthesis of Mesoporous Films

机译:双膦酸盐的分子设计,以调节其对金属源的反应性,用于表面活性剂辅助合成的介孔膜

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摘要

The precise control of primary reactions in solutions is one of the most significant steps for the nanoscale design of inorganic solids in multidisciplinary fields. However, further growth of the inorganic species to give bulkier species disturbs such designs. The surfactant-assisted synthesis of mesoporous materials is a good strategy for addressing such concerns because pores formed by supramolecularly mediated processes are surrounded by nanometer-sized continuous frameworks. Many experiments are generally conducted to optimize the reaction conditions for the synthesis of highly ordered mesostructures. Herein, to minimize such trial-and-error efforts, a new and practical concept is proposed for the precise design of porous materials. By adjusting the reactivity between bisphosphonates and metal sources through molecular design of the starting bisphosphonate compound, it was possible to synthesize mesoporous films with unique compositions by a surfactant-assisted approach.
机译:溶液中主要反应的精确控制是多学科领域无机固体纳米级设计最重要的步骤之一。 然而,无机物种的进一步生长使笨重物种扰乱这种设计。 表面活性剂辅助合成介孔材料是解决这些问题的良好策略,因为通过Scmrametulary介导的方法形成的孔被纳米尺寸的连续框架包围。 通常进行许多实验以优化用于合成高度有序的腹腔的反应条件。 这里,为了使这种试误努力最小化,提出了一种新的实际概念,用于精确设计多孔材料。 通过通过起始双膦酸盐化合物的分子设计调节双膦酸盐和金属源之间的反应性,可以通过表面活性剂辅助方法用独特的组合物合成中孔膜。

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