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ZnO long fibers: large scale fabrication, precursor and the transformation process, microstructure and catalytic performance

机译:ZnO长纤维:大规模制造,前驱体和转化过程,微观结构和催化性能

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The development of effective and low-cost catalysts for the synthesis of chemical energy and for the photo-assisted elimination of pollution is of great importance for the sustainable development of human society. This work designs a fibrous ZnO catalyst, which was composed of stacked ZnO nanoparticles. Photocatalysis investigations demonstrated that the fibers possess higher catalytic ability compared to their powder counterparts. Moreover, the fibrous form is more suitable for application in a continuous mode and simple separation operation. The ZnO fibers were fabricated by the centrifugal spinning of a molecular precursor sol into gel fibers, followed by heat treatment. The viscous precursor sol was synthesized by concentrating a zinc citrate aqueous solution, which was made from citric acid and ZnO powders. The mechanism of formation of the organozinc sol was investigated by a series of characterizations of the precursor solution, gel precursor, and the decomposition of the gel precursor. The results indicate that zinc citrate monomers in precursor solution were assembled into a multinuclear structure induced by solvent evaporation.
机译:开发有效和低成本的催化剂以合成化学能和光辅助消除污染对人类社会的可持续发展具有重要意义。这项工作设计了一种纤维状的ZnO催化剂,它由堆叠的ZnO纳米颗粒组成。光催化研究表明,与粉末相比,纤维具有更高的催化能力。而且,纤维形式更适合于以连续模式和简单的分离操作应用。通过将分子前体溶胶离心纺丝成凝胶纤维,然后进行热处理来制造ZnO纤维。通过浓缩柠檬酸锌水溶液合成粘稠的前体溶胶,柠檬酸锌水溶液由柠檬酸和ZnO粉制成。通过对前体溶液,凝胶前体和凝胶前体的分解进行了一系列表征,研究了有机锌溶胶的形成机理。结果表明,前驱体溶液中的柠檬酸锌单体被组装成由溶剂蒸发诱导的多核结构。

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