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首页> 外文期刊>Angewandte Chemie >Bottom-Up Construction of Mesoporous Nanotubes from 78-Component Self-Assembled Nanobarrels
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Bottom-Up Construction of Mesoporous Nanotubes from 78-Component Self-Assembled Nanobarrels

机译:从78组件自组装的纳米管的介孔纳米管的自下而上的构造。

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摘要

Segmental and continuous hexagonal-packed mesoporous metal-organic nanotubes (MMONTs) with outside diameters of up to 4.5 nm and channel sizes of 2.4 nm were hierarchically constructed by a rational multicomponent self-assembly process involving starting from [L2Pd2(NO3)(2)] (L=o-phenanthroline or 2,2'-bipyridine) and 4-pyridinyl-3-pyrazole. An unprecedented crystallization-driven cross-linking between discrete nanobarrel building units by spontaneous loss of the capping ligands to form infinite nanotubes was observed. Such a barrel-to-tube transformation provides new possibilities for the fabrication of MMONTs using the solution bottom-up approach.
机译:通过从[L2Pd2(NO3)(2)开始的合理的多组分自组装过程,分层构建了分段和连续六角堆积的介孔金属有机纳米管(MMONT),其外径最大为4.5 nm,通道尺寸为2.4 nm。 ](L =邻菲咯啉或2,2′-联吡啶)和4-吡啶基-3-吡唑。观察到空前的结晶驱动的交联在离散的纳米桶构建单元之间通过封盖配体的自发损失形成无限的纳米管。这种从桶到管的转换为使用解决方案自下而上的方法制造MMONT提供了新的可能性。

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