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Synthesis of mesoporous silica by sol-gel mineralisation of cellulose nanorod nematic suspensions

机译:纤维素纳米棒向列悬浮液的溶胶-凝胶矿化法合成介孔二氧化硅

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Mesoporous silica was synthesised by sol-gel mineralisation using nematic liquid crystalline templates consisting of partially ordered suspensions of cellulose rod-like nanocrystals, ca. 145 x 13 nm in size. The nanorods were prepared by acid hydrolysis of cellulose powder and concentrated droplets evaporated onto glass slides to form nematic liquid crystals. Addition of an aqueous alkaline solution of pre-hydrolysed tetramethoxysilane to the droplets resulted in a birefringent cellulose-silica composite that was subsequently calcined at 400 degreesC for 2 h. Removal of the cellulose nanorod template produced a birefringent silica replica that exhibited patterned mesoporosity due to the presence of co-aligned cylindrical pores, approximately 15 nm in diameter and 10 nm in wall thickness. TEM studies suggest that a chiral imprint of the helically ordered cellulose nanorods was imposed on the silica structure, although further studies are required to confirm these preliminary observations. As cellulose nanorods can be prepared from renewable, inexpensive sources, they offer a cost-effective, environmentally benign route to the template-directed synthesis of mesoporous materials. [References: 22]
机译:介孔二氧化硅是通过使用向列型液晶模板通过溶胶-凝胶矿化法合成的,该模板由纤维素棒状纳米晶体的部分有序悬浮液组成。尺寸为145 x 13 nm。通过纤维素粉末的酸水解制备纳米棒,并将浓缩的液滴蒸发到载玻片上以形成向列型液晶。向液滴中加入预水解的四甲氧基硅烷的碱性水溶液,得到双折射纤维素-二氧化硅复合物,随后将其在400℃下煅烧2小时。除去纤维素纳米棒模板产生了双折射二氧化硅复制品,由于存在共排列的圆柱孔,直径约15nm,壁厚10nm,因此显示出图案化的中孔性。 TEM研究表明,螺旋结构的纤维素纳米棒的手性印迹被强加在二氧化硅结构上,尽管还需要进一步的研究来证实这些初步的观察结果。由于纤维素纳米棒可以从可再生的廉价来源中制备,因此它们为介孔材料的模板指导合成提供了一种经济高效的环境友好途径。 [参考:22]

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