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Morphological Material and Optical Properties of ZnO/ZnS/CNTs Nanocomposites on SiO2 Substrate

机译:SiO2基板上ZnO / ZnS / CNT纳米复合材料的形态学材料和光学性质

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摘要

Ultraviolet A light (UV-A, 320–400 nm), which is unblockable by sunscreen, requires careful detection for disease avoidance. In this study, we propose a novel photosensing device capable of detecting UV-A. Cancer-causing UV light can be simultaneously monitored with tiny rapid response sensors for a high carrier transition speed. In our research, a multifunctional ZnO/ZnS nanomaterial hybrid-sprinkled carbon nanotube (CNT) was created for the purpose of fabricating a multipurpose, semiconductorbased application. For our research, ZnO nanorods (NRs) were grown by using a facile hydrothermal method on SiO substrate, then vulcanized to form ZnO/ZnS coreshell nanorods, which were sprinkled with carbon nanotubes (CNTs). Results indicate that SiO2/ZnO/ZnS/CNT structures exhibited a stronger conducting current with and without light than those samples without CNTs. Multiple material characterizations of the nanostructures, including of atomic force microscopy (AFM) surface morphology evaluation, scanning electron microscopy (SEM), and transmission electron microscopy (TEM) indicate that CNTs could be successfully spread on top of the ZnO/ZnS coreshell structures. Furthermore, chemical binding properties, material crystallinity, and optical properties were examined by X-ray diffraction (XRD), energy dispersive spectroscopy (EDS), and photoluminescence (PL). Owing to their compact size, simple fabrication, and low cost, ZnO/ZnS coreshell NRs/CNT/SiO -based nanocomposites are promising for future industrial optoelectronic applications.
机译:紫外线灯(UV-A,320-400nm),其被防晒剂不可阻挡,需要仔细检测避免疾病。在这项研究中,我们提出了一种能够检测UV-A的新型光电装置。可以使用微小的快速响应传感器同时监测癌症的UV光,用于高载波过渡速度。在我们的研究中,为制造多功能,半导体施用的应用,产生多官能ZnO / ZnS纳米材料杂交洒碳纳米管(CNT)。对于我们的研究,通过在SiO衬底上使用容易水热法生长ZnO纳米棒(NRS),然后硫化以形成ZnO / ZnS CoreShell纳米棒,其撒上碳纳米管(CNT)。结果表明,SiO2 / ZnO / ZnS / CNT结构表现出具有而不是光的较强的导电电流,而不是没有CNT的样品。纳米结构的多种材料表征,包括原子力显微镜(AFM)表面形态学评估,扫描电子显微镜(SEM)和透射电子显微镜(TEM)表明CNT可以在ZnO / ZnS CoreShell结构的顶部成功地扩展。此外,通过X射线衍射(XRD),能量分散光谱(EDS)和光致发光(PL)检查化学结合性质,材料结晶度和光学性质。由于其紧凑的尺寸,简单的制造和低成本,ZnO / ZnS CoreShell NRS / CNT / SIO基纳米复合材料是未来的工业光电应用的希望。

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