首页> 外文期刊>ACS Omega >Enhanced Localized Surface Plasmon Resonance of Fully Alloyed AgAuPdPt, AgAuPt, AuPt, AgPt, and Pt Nanocrystals: Systematical Investigation on the Morphological and LSPR Properties of Mono-, Bi-, Tri-, and Quad-Metallic Nanoparticles
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Enhanced Localized Surface Plasmon Resonance of Fully Alloyed AgAuPdPt, AgAuPt, AuPt, AgPt, and Pt Nanocrystals: Systematical Investigation on the Morphological and LSPR Properties of Mono-, Bi-, Tri-, and Quad-Metallic Nanoparticles

机译:完全合金化的AgAuPdPt,AgAuPt,AuPt,AgPt和Pt纳米晶体的增强的局部表面等离子体共振:单,双,三和四金属纳米颗粒的形态和LSPR特性的系统研究

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Multi-metallic alloy nanoparticles (NPs) can offer tunable or modifiable localized surface plasmon resonance (LSPR) properties depending upon their configurational and elemental alterations, which can be utilized in various applications, that is, in photon energy harvesting, optical sensing, biomedical imaging, photocatalysis, and spectroscopy. In this work, a systematic investigation on the morphological and LSPR properties of multi-metallic alloy NPs incorporating Ag, Au, Pd, and Pt is presented on c-plane sapphire (0001). The resulting NPs exhibit much enhanced and tunable LSPR bands in the UV–VIS wavelength as compared to the previously reported mono-metallic NPs based on the considerable improvement in size and shape of nanostructures along with the electronic heterogeneity. Solid-state dewetting of sputtered bilayers (Ag/Pt), tri-layers (Ag/Au/Pt), and quad-layers (Ag/Au/Pd/Pt) is employed to demonstrate a wide variety of configurations, sizes, densities, and elemental compositions of Pt, AgPt, AuPt, AgAuPt, AgAuPt, and AgAuPdPt NPs by the systematic control of annealing temperature and deposition schemes. The distinct morphology and elemental composition of surface nanostructures are obtained by means of surface diffusion, intermixing, and surface/interface energy minimization along with the applied thermal energy. In addition, the sublimation of Ag atoms from the alloy nanostructure matrix significantly influences the structural, elemental, and thus optical properties of NPs by reducing the average size and Ag percentage in the alloy NPs. Based on the specific size, shape, and elemental composition of NPs, the excitation of LSPR is correlated to the dipolar, quadrupolar, multi-polar, and higher order (HO) modes along with the finite difference time domain simulation of local electric-field. The LSPR intensity is generally stronger with a higher percentage of Ag atoms in the alloy NPs and gradually diminished by the sublimation loss. However, even the mono-metallic and alloy NPs without Ag exhibited significantly improved and dynamic nature of plasmonic bands in the UV and VIS wavelength.
机译:多金属合金纳米粒子(NPs)可以根据其构型和元素变化提供可调节或可修改的局部表面等离子体共振(LSPR)特性,可用于各种应用,即光子能量收集,光学传感,生物医学成像,光催化和光谱学。在这项工作中,在c面蓝宝石(0001)上对包含Ag,Au,Pd和Pt的多金属合金NP的形态和LSPR特性进行了系统的研究。与先前报道的单金属NP相比,基于纳米结构的尺寸和形状以及电子异质性的显着改善,所得的NP在UV-VIS波长下显示出大大增强和可调的LSPR带。溅射双层(Ag / Pt),三层(Ag / Au / Pt)和四层(Ag / Au / Pd / Pt)的固态去湿被用来证明各种各样的结构,尺寸,密度通过对退火温度和沉积方案的系统控制,可以确定Pt,AgPt,AuPt,AgAuPt,AgAuPt和AgAuPdPt NP的元素组成。表面纳米结构的独特形态和元素组成是通过表面扩散,混合以及表面/界面能最小化以及所施加的热能获得的。另外,通过减小合金NP中的平均尺寸和Ag百分比,使Ag原子从合金纳米结构基质中升华显着影响NP的结构,元素和光学性质。根据NP的特定大小,形状和元素组成,LSPR的激发与偶极,四极,多极和高阶(HO)模式以及局部电场的时域有限差分模拟相关。通常,随着合金NP中Ag原子百分比的增加,LSPR强度会变强,并且由于升华损失而逐渐降低。然而,即使没有Ag的单金属和合金NP也显示出在UV和VIS波长下等离激元带的显着改善和动态性质。

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