Atisme Tsegaye Belege, Yu Chin-Yang, Tseng Eric Nestor, Chen Yi-Che, Hsu Pei-Kai, Chen Shih-Yun
Department of Materials Science and Engineering, National Taiwan University of Science and Technology, 43, Section 4, Keelung Road, Taipei 10607, Taiwan.
Nanomaterials (Basel). 2019 Oct 29;9(11):1534. doi: 10.3390/nano9111534.
This study presents the preparation, characterization, and properties of a new composite containing cerium oxide nanoparticles and a conjugated polymer. CeO nanoparticles prepared using the co-precipitation method were dispersed into the conjugated polymer, prepared using the palladium-catalyzed Suzuki-Miyaura cross-coupling reaction. The interface interactions between the two components and the resultant optoelectronic properties of the composite are demonstrated. According to transmission electron microscopy and X-ray absorption spectroscopy, the dispersion of CeO nanoparticles in the polymer matrix strongly depends on the CeO nanoparticle concentration and results in different degrees of charge transfer. The photo-induced charge transfer and recombination processes were studied using steady-state optical spectroscopy, which shows a significant fluorescence quenching and red shifting in the composite. The higher photo-activity of the composite as compared to the single components was observed and explained. Unexpected room temperature ferromagnetism was observed in both components and all composites, of which the origin was attributed to the topology and defects.
本研究介绍了一种包含氧化铈纳米颗粒和共轭聚合物的新型复合材料的制备、表征及性能。采用共沉淀法制备的CeO纳米颗粒被分散到通过钯催化的铃木-宫浦交叉偶联反应制备的共轭聚合物中。展示了两种组分之间的界面相互作用以及复合材料由此产生的光电性能。根据透射电子显微镜和X射线吸收光谱,CeO纳米颗粒在聚合物基体中的分散强烈依赖于CeO纳米颗粒的浓度,并导致不同程度的电荷转移。使用稳态光谱研究了光致电荷转移和复合过程,结果表明复合材料中出现了显著的荧光猝灭和红移。观察并解释了复合材料相对于单一组分具有更高的光活性。在两种组分以及所有复合材料中均观察到了意外的室温铁磁性,其起源归因于拓扑结构和缺陷。