首页> 外文期刊>Коллоидный журнал: Журн. физико-химии поверхност. явлений и дисперс. систем >ZnO MICRORODS PHOTODEPOSITED WITH Au-Ag NANOPARTICLES: SYNTHESIS, CHARACTERIZATION AND APPLICATION IN SERS
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ZnO MICRORODS PHOTODEPOSITED WITH Au-Ag NANOPARTICLES: SYNTHESIS, CHARACTERIZATION AND APPLICATION IN SERS

机译:Au-Ag纳米粒子光沉积的ZnO微粉的合成,表征及在SERS中的应用

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摘要

Decorating one-dimensional micromaterials with nanoparticles provides an effective method to manipulate and integrate their phy sicochemical and optoelectronic properties. Here, we demonstrate an example of photochemical deposition of Au core/Ag shell nanoparticles onto ZnO microrods (ZnO/Au-Ag). The as-prepared micro-materials were characterized and confirmed by UV-vis spectra, XRD, XPS, FE-SEM and EDX analysis. Raman spectra revealed that the vibration energy of oxygen sublattice decreased after deposition of metallic nanoparticles. Their apparent Fermi level was calculated to be 156.9 mV from a Nernstian equilibrium with a redox couple in solution and primary investigation indicated their potential application as an active surface enhanced Raman spectroscopy substrate. The proposed method could extend to synthesize a series of core-shell nanoparticles decorated one-dimensional composite micromaterials and the as-prepared multifunctional micromaterials may also find their application in photocatalysis, gas sensor and so on.
机译:用纳米粒子装饰一维微材料提供了一种有效的方法来操纵和整合其物理化学和光电特性。在这里,我们展示了一个将Au核/ Ag壳纳米粒子光化学沉积到ZnO微棒(ZnO / Au-Ag)上的示例。通过紫外-可见光谱,XRD,XPS,FE-SEM和EDX分析对所制备的微材料进行表征和确认。拉曼光谱表明,沉积金属纳米粒子后,氧亚晶格的振动能下降。从Nernstian平衡计算出它们的表观费米能级为156.9 mV,在溶液中存在氧化还原对,初步研究表明它们作为活性表面增强拉曼光谱底物的潜在应用。该方法可以扩展为合成一系列装饰一维复合微材料的核壳纳米粒子,并且所制备的多功能微材料还可在光催化,气体传感器等方面找到应用。

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