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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Controlled Synthesis of the Tricontinuous Mesoporous Material IBN-9 and Its Carbon and Platinum Derivatives
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Controlled Synthesis of the Tricontinuous Mesoporous Material IBN-9 and Its Carbon and Platinum Derivatives

机译:三连续介孔材料IBN-9及其碳和铂衍生物的受控合成

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摘要

Controlled synthesis of mesoporous materials with ultracomplicated pore configurations is of great importance for both fundamental research of nanostructures and the development of novel applications. IBN-9, which is the only tricontinuous mesoporous silica with three sets of interpenetrating three-dimensional channel systems, appears to be an excellent model mesophase for such study. The extensive study of synthesis space diagrams proves mesophase transition among the cylindrical MCM-41, tricontinuous IBN-9 and bicontinuous MCM-48, and also allows a more precise control of phase-pure synthesis. On the other hand, rational design of structure-directing agents offers a possibility to extend the synthesis conditions of IBN-9, as well as tailor its pore size. Moreover, an unprecedented helical structure consisting of twisted 3-fold interwoven mesoporous channels is reported here for the first time. The unique tricontinuous mesostructure of IBN-9 has been well-replicated by other functional materials (e.g., carbon and platinum) via a "hard-templating" synthesis route. The obtained carbon material possesses large surface area (~1900 m~2 /g), high pore volume (1.56 cm /g), and remarkable gas adsorption capability at both cryogenic temperatures and room temperature. The platinum material has an ordered mesostructure composed of highly oriented nano crystals.
机译:具有超复杂孔构型的介孔材料的受控合成对于纳米结构的基础研究和新应用的开发都非常重要。 IBN-9是唯一具有三套互穿的三维通道系统的三连续介孔二氧化硅,似乎是此类研究的极好模型中间相。对合成空间图的广泛研究证明了圆柱形MCM-41,三连续IBN-9和双连续MCM-48之间的中间相转变,并且还允许更精确地控制纯相合成。另一方面,结构导向剂的合理设计为扩展IBN-9的合成条件以及调整其孔径提供了可能性。此外,首次报道了由扭曲的3倍交织的中孔通道组成的前所未有的螺旋结构。 IBN-9独特的三连续介观结构已通过“硬模板”合成路线被其他功能性材料(例如碳和铂)很好地复制。所获得的碳材料具有大的表面积(〜1900 m〜2 / g),高的孔容(1.56 cm / g),并且在低温和室温下均具有出色的气体吸附能力。铂材料具有由高度取向的纳米晶体组成的有序介观结构。

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