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Strongly confined localized surface plasmon resonance (LSPR) bands of Pt, AgPt, AgAuPt nanoparticles

机译:强大的局部局部等离子体共振(LSPR)带Pt,AGPT,AsaUPPT纳米粒子

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Multi-metallic alloy nanoparticles (NPs) can enable the advanced applications in the energy, biology, electronics, optics and catalysis due to their multi-functionality, wide tunable range and electronic heterogeneity. In this work, various mono-, bi- and tri-metallic nanostructures composed of Ag, Au and Pt are demonstrated on transparent c-plane sapphire (0001) substrates and the corresponding morphological and optical characteristics are thoroughly investigated. The resulting Pt and AuPt NPs in this study demonstrate much enhanced LSPR responses as compared to the pure Pt NPs from the previous studies, which was contributed by the synergistic effect of Au and Pt and improved surface morphology. These results are sharply distinct in terms of surface morphology and elemental variability from those obtained by the dewetting of monometallic Ag, Au and Pt films under the similar growth conditions, which is due to the distinct dewetting kinetics of the bi-layer and tri-layer films. These NPs exhibit strongly enhanced localized surface plasmon resonance (LSPR) bands in the UV-VIS wavelengths such as dipolar, quadrupolar, multipolar and higher order resonance modes depending upon the size and elemental composition of NPs. The LSPR bands are much stronger with the high Ag content and gradually attenuated with the Ag sublimation. Furthermore, the VIS region LSPR bands are readily blue shifted along with the reduction of NP size. The Ag/Pt bi-layers and Ag/Au/Pt tri-layers are systematically dewetted and transformed into various AgPt and AgAuPt nanostructures such as networked, elongated and semispherical configurations by means of enhanced surface diffusion, intermixing and energy minimization along with the temperature control. The sublimation of Ag atoms plays a significant role in the structural and elemental composition of NPs such that more isolated and semispherical Pt and AuPt NPs are evolved from the AgPt and AgAuPt NPs respectively.
机译:多金属合金纳米粒子(NPS)可以使能源,生物,电子,光学和催化中的先进应用,由于它们的多功能,可调整范围和电子异质性。在这项工作中,在透明的C面蓝宝石(0001)基板上对由Ag,Au和Pt组成的各种单,双金属纳米结构并进行了彻底研究了相应的形态学和光学特性。该研究中得到的Pt和中断NPS表明,与先前研究的纯PT NP相比,与纯PT NP相比,这是通过AU和PT的协同作用以及改善的表面形态的协同作用。这些结果在表面形态和元素可变性方面急剧差异,从类似生长条件下的单金属Ag,Au和Pt膜的脱模而获得的那些,这是由于双层和三层的不同脱水动力学电影。这些NPS在UV-VIS波长的强大增强的局部表面等离子体共振(LSPR)条带,例如Dipolar,Quadrupolar,多极和高阶共振模式,这取决于NP的尺寸和元素组成。 LSPR带与高AG含量强大,逐渐减弱Ag升华率。此外,VIS区域LSPR频带随着NP尺寸的降低而易于偏移蓝色。通过增强的表面扩散,混合和能量最小化以及温度,通过增强的表面扩散,混合和能量最小化,系统地脱滤并转化为各种AGPT和扫射纳米结构,例如网络,细长和半球形配置,如环,混合和能量最小化控制。 Ag原子的升华在NPS的结构和元素组成中起着重要作用,使得更多分离和半球形PT和中断NP分别从AGPT和APAUPT NPS演化。

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