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首页> 外文期刊>Applied Surface Science >Covalent bonding of ZnO nanostructures with dispersible carbon nanotubes for self-assembly photocatalytic heterostructures
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Covalent bonding of ZnO nanostructures with dispersible carbon nanotubes for self-assembly photocatalytic heterostructures

机译:ZnO纳米结构与可分散碳纳米管的共价键用于自组装光催化异质结构

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摘要

This work demonstrates the fabrication of zinc oxide-carbon nanotube (ZnO/CNT) heterostructures with tunable photocatalytic activity via microstructure modulation. The ZnO/CNT heterostructures are constructed in one-step hydrothermal procedure consisting of in situ anchoring of ZnO nanostructures with dispersible CNTs in an aqueous alkali solution containing bile salts as a dispersant. Observation via scanning (SEM) and transmission (TEM) electron microscopy reveals self-assembled heterostructures of monodispersible CNTs tightly surrounding ZnO nanostructures with multimorphology. The XRD, FT-IR, Raman and XPS analysis confirm that the CNTs were successfully incorporated into the ZnO nanostructures with strong interfacial contact of covalent bonding rather than simple mixing. A series of ZnO/CNT heterostructures, which varies according to their degree of doping with dispersible CNTs, exhibit distinct sunlight-induced photocatalytic activity onto the degradation of Rhodamine B (RhB). The superior photocatalytic performance of ZnO/CNT heterostructures originates from synergistic effects of sufficient interfacial bonding, self-assembly microstructures, and continuous conducting pathways between ZnO nanostructures and CNTs, which acquires better sunlight utilization and more efficient separation of electron-hole pair, confirmed by UV-Visible diffuse reflectance spectra as well as photocurrent and photovoltage analysis. This study also proposes a photocatalytic degradation mechanism of RhB dyes through detection of active species confirmed by electron-spin-resonance analysis.
机译:这项工作演示了通过微结构调制具有可调光催化活性的氧化锌-碳纳米管(ZnO / CNT)异质结构的制造。 ZnO / CNT异质结构是通过一步水热程序构建的,该程序包括将ZnO纳米结构与可分散的CNT在含胆盐作为分散剂的碱性水溶液中原位锚固。通过扫描(SEM)和透射(TEM)电子显微镜观察发现,紧密分布在具有多种形态的ZnO纳米结构周围的单分散CNT的自组装异质结构。 XRD,FT-IR,Raman和XPS分析证实,CNTs通过共价键的强界面接触而不是简单混合而成功地掺入了ZnO纳米结构中。一系列ZnO / CNT异质结构随其对可分散CNT的掺杂程度而变化,它们对罗丹明B(RhB)的降解表现出明显的阳光诱导的光催化活性。 ZnO / CNT异质结构的优异光催化性能源于充分的界面键合,自组装微结构以及ZnO纳米结构与CNT之间连续的导电路径的协同效应,从而获得了更好的日光利用率和更有效的电子-空穴对分离,这一点已得到证实。紫外可见漫反射光谱以及光电流和光电压分析。这项研究还提出了通过检测电子自旋共振分析证实的活性物质,对RhB染料进行光催化降解的机制。

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