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首页> 外文期刊>Journal of nanoscience and nanotechnology >Localized Surface Plasmon Resonance Studies on Pd/C Nano-Composite System: Effect of Metal Concentration and Annealing Temperature
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Localized Surface Plasmon Resonance Studies on Pd/C Nano-Composite System: Effect of Metal Concentration and Annealing Temperature

机译:PD / C纳米复合系统的局部表面等离子体共振研究:金属浓度和退火温度的影响

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The effects of metal concentration and annealing temperature on the localized surface plasmon resonance (LSPR) properties of the Pd nanoparticles (NP) dispersed in carbon were investigated. The Pd/C nano-composite thin films with 7 to 39 atomic % concentration of metal content were deposited using the atom beam co-sputtering techniques and subjected to annealing at temperature varying from 300 degrees C to 600 degrees C. The UV-vis spectroscopy studies on as-prepared films displayed a Mie scattering profile, but not well-defined LSPR bands were observed for all the values of Pd concentration. This is attributed to the smaller size (3-4 nm) of Pd NPs and rough Pd/C interface, as confirmed from TEM studies. When samples were annealed at a temperature of 300 degrees C, three broad LSPR absorption bands in the visible region, along with a sharp peak at 210 nm, were observed and the effect of Pd concentration variation was insignificant on their position. The multiple LSPR bands were observed due to agglomeration NPs, which is consistent with earlier reports and is also observed in the TEM images. When annealing temperature was subsequently increased to 500 degrees C, a blue shift in the LSPR peak position with an increase in the Pd concentration was observed, which phenomena is attributed to the formation of bigger NPs with the formation of sharp NPs-interface at high temperature upon annealing. A monotonic increase in the magnitude and decrease in the FWHM with an increase in concentration suggested change in the dielectric function of sample due to the growth of NPs. This is further confirmed from XRD studies, where strain relaxation and grain growth were observed. The intensity of the SPR peak decreased with an increase in the annealing temperature. The LSPR peak disappeared on annealing at a temperature of 600 degrees C, suggesting the formation of continuous polycrystalline thin films of Pd. In summary, NPs size, metal matrix interface, and concentration of metal play key roles in the tailoring the LSPR properties of the Pd.
机译:研究了金属浓度和退火温度对分散在碳中分散的Pd纳米颗粒(NP)的局部表面等离子体共振(LSPR)性质的影响。使用原子束共溅射技术沉积具有7至39原子%金属含量的Pd / C纳米复合薄膜,并在温度范围为300℃至600℃的温度下进行退火。UV-Vis光谱对按摩薄膜的研究显示了MIE散射曲线,但对于所有PD浓度的所有值观察到没有明确定义的LSPR带。这归因于PD NPS和粗糙PD / C接口的较小尺寸(3-4nm),如TEM研究证实。当样品在300℃的温度下退火时,观察到在可见区域中的三个宽的LSPR吸收带,以及在210nm处的尖锐峰值,Pd浓度变异的效果在其位置微不足道。由于附聚NPS观察到多个LSPR条带,其与早期报告一致,并且在TEM图像中也观察到。当退火温度随后增加至500℃时,观察到LSPR峰位置的蓝色移位,随着PD浓度的增加而增加,该现象归因于在高温下形成更大的NPS界面的形成较大的NPS退火时。随着NPS的生长,浓度浓度增加的浓度增加的单调增加和变化的变化提高了样品的介电功能。从XRD研究中进一步证实了,观察到应变松弛和晶粒生长。随着退火温度的增加,SPR峰的强度降低。 LSPR峰值在600℃的温度下消失在退火上,表明形成Pd的连续多晶薄膜。总之,NPS大小,金属矩阵界面和金属浓度在剪裁PD的LSPR属性中的关键作用。

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