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Synthesis of ZnO/MWCNT Heterostructure via the Self-Assemble Route and Its Property

机译:通过自组装途径合成ZnO / MWCNT异质结构及其性能

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Multi-walled carbon nanotubes (MWCNT) attached on ZnO quantum dots named ZnO/MWCNT composites were synthesized by a multi-steps wet chemical self-assembling technique. The morphology of ZnO/MWCNT was also studied in details. The as-prepared ZnO and ZnO/ MWCNT composites had been characterized by XRD, SEM and TEM. It was found that the co-existence of MWCNTs and ZnO in ZnO/MWCNT sample. Monodispersed ZnO nanoparticles and the MWNTs/ZnO conjunction structure can be vividly observed from TEM image. TEM image also indicated that the decoration of MWCNTs did not cause any damage to the tubular shape and the conjunction occurred at the outershell of MWCNTs. Moreover, to assess the optoelectronic properties, photoluminescence (PL) spectra were also compared between monodispersed ZnO QDs and the ZnO /MWCNT composites. The relationship between PL spectra and structure was discussed. It was shown that the particular PL behavior of ZnO in the ZnO/MWCNT had been quenched, which meant the electron transformation between the ZnO and MWCNT had happened.
机译:通过多步骤湿化学自组装技术合成附着在名为ZnO / MWCNT复合材料的ZnO / MWCNT复合材料上的多壁碳纳米管(MWCNT)。还研究了ZnO / MWCNT的形态。由XRD,SEM和TEM的特征在于制备的ZnO和ZnO / MWCNT复合材料。结果发现,ZnO / MWCNT样品中MWCNT和ZnO的共存。可以从TEM图像生动地观察单分散的ZnO纳米粒子和MWNT / ZnO结合结构。 TEM图像还表明MWCNT的装饰不会对管状形状造成任何损坏,并且在MWCNT的超时发生的结合。此外,为了评估光电性能,还在单分散的ZnO QD和ZnO / MWCNT复合材料之间比较光致发光(PL)光谱。讨论了PL光谱与结构之间的关系。结果表明,ZnO / MWCNT中的ZnO的特定PL行为已经淬火,这意味着ZnO和MWCNT之间的电子变换发生。

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