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辊筒静电纺丝法操控与二氧化硅一维周期结构的形成机制。

Manipulation and formation mechanism of silica one-dimensional periodic structures by roller electrospinning.

机构信息

National Key Laboratory of Science and Technology on Advanced Composites in Special Environments, Harbin Institute of Technology , Harbin 150080, P. R. China.

出版信息

Langmuir. 2014 Mar 11;30(9):2335-45. doi: 10.1021/la4037277. Epub 2014 Feb 24.

Abstract

A roller electrospinning technique is combined with sol-gel chemistry to fabricate silica and polymeric materials on conductive and nonconductive substrates to verify its ability for controlling the long-range periodic structure of the final product. According to the experimental results, formation of the one-dimensional periodic silica structure was dependent on the electrical conductivity of the collector substrate. The periodic density seems to be related to the width of silica product. No effect from the electrical conductivity of collector substrate on the structure of polymeric system was observed. An energy transformation model was proposed to investigate the formation mechanism of this periodic structure. The theoretical simulation indicates that large width-to-thickness ratio of the product and high-energy transformation efficiency favor the formation of the long-range periodic structure.

摘要

滚轴式静电纺丝技术与溶胶-凝胶化学相结合,在导电和非导电衬底上制备二氧化硅和聚合材料,以验证其控制最终产品长程周期结构的能力。根据实验结果,一维周期性二氧化硅结构的形成取决于收集器衬底的电导率。周期性密度似乎与二氧化硅产物的宽度有关。在聚合体系中,收集器衬底的电导率对结构没有影响。提出了一种能量转换模型来研究这种周期性结构的形成机制。理论模拟表明,产物的宽高比大且能量转换效率高有利于长程周期结构的形成。

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