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首页> 外文期刊>CrystEngComm >Flux and surfactant directed facile thermal conversion synthesis of hierarchical porous MgO for efficient adsorption and catalytic growth of carbon nanotubes
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Flux and surfactant directed facile thermal conversion synthesis of hierarchical porous MgO for efficient adsorption and catalytic growth of carbon nanotubes

机译:助焊剂和表面活性剂指导的高效热转化合成多层多孔MgO,以有效吸附和催化生长碳纳米管

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摘要

Three-dimensional (3D) hierarchical porous structures have attracted extensive attention owing to their versatile applications. Herein, 3D hierarchical porous MgO superstructures with a well faceted profile and high crystallinity were successfully obtained via a facile flux and surfactant directed decomposition of metal oxalates. As a nonionic surfactant, NP-9 served as the dispersing agent and prevented the porous MgO particles from aggregating with each other. The flux NaCl induced vapor migration through the porous structure, favoring the in situ crystallization of MgO after the phase conversion from the oxalate precursor, enhancing the toughness of the backbone and further realizing the preservation of the polyhedron-like morphology. The as-obtained hierarchical porous MgO superstructures were very efficient and effective as adsorbents for methylene blue (MB) and a catalyst support for single-walled carbon nanotube (SWCNTs) growth. The as-obtained SWCNTs afford an ultrahigh surface area of 1232 m2 g-1. Such superstructures could be employed as great potential candidates in dye-containing water treatment as well as heterogeneous catalysis.
机译:三维(3D)分层多孔结构由于其用途广泛而引起了广泛的关注。本文中,通过草酸金属的易熔剂和表面活性剂定向分解,成功获得了具有良好刻面轮廓和高结晶度的3D分层多孔MgO超结构。作为非离子表面活性剂,NP-9用作分散剂并防止多孔MgO颗粒彼此聚集。 NaCl助熔剂引起蒸汽迁移通过多孔结构,有利于从草酸盐前体进行相转化后MgO的原位结晶,增强了骨架的韧性,并进一步实现了多面体状形态的保存。所获得的分层多孔MgO超结构非常有效,可作为亚甲基蓝(MB)的吸附剂和单壁碳纳米管(SWCNTs)生长的催化剂载体。如此获得的SWCNT提供了1232 m2 g-1的超高表面积。这种超结构可以用作含染料的水处理以及非均相催化中的巨大潜在候选物。

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