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Hollow Ferrocenyl Coordination Polymer Microspheres with Micropores in Shells Prepared by Ostwald Ripening

机译:Ostwald熟化制备的空心二茂铁配位聚合物微球壳中的微孔

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摘要

Hollow microspheres with pores in their shells have received much attention owing to their hierarchically porous structures and advanced applications in electrochemical capacitive energy storage, hydrogen storage, drug delivery, sensing, and catalysis. For example, Lou et al. reported that hollow SnO2 nanospheres with nanoporous shells showed high reversible charge capacity and good cycling performance. Zhu et al. investigated the drug-delivery properties of hollow silica spheres with mesoporous shells and found that the hollow microspheres were able to store significantly more molecules with higher release rates than conventional mesoporous silica.
机译:空心微球的外壳具有孔,这是由于它们具有分层的多孔结构以及在电化学电容能量存储,氢存储,药物输送,传感和催化方面的先进应用而备受关注。例如,Lou等。报告指出,具有纳米多孔壳的空心SnO2纳米球显示出高可逆电荷容量和良好的循环性能。朱等。研究了带有中孔壳的空心二氧化硅球的药物传递特性,发现中空微球比常规中孔二氧化硅能够以更高的释放速率存储更多的分子。

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