Tunable optical properties of graphene wrapped ZnO@Ag spherical core-shell nanoparticles

IF 2.2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Belayneh Mesfin Ali
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Abstract

In this paper, we studied theoretically and numerically the material’s response to incident electromagnetic wave of graphene wrapped zinc-oxide/silver (g − ZnO@Ag) core–shell spherical nanoparticles embedded in a dielectric host matrix. As the nanoparticles size is ∼30 nm, a size much smaller than the wavelength of light, the quasi-static approximation is utilized to obtain analytical expressions for the electric polarizability and the corresponding extinction cross-section. It is found that the spectra of the extinction cross-section of g − ZnO@Ag nanoparticles exhibit two sets of localized surface resonance peaks in the visible and near infra-red (NIR) spectral regions. The first set of peaks observed below ∼900 nm are due to the coupling of the energy gap of the ZnO core with the local surface plasmon resonances of Ag shell, and the second set of graphene-assisted narrow peaks located in the NIR region (above ∼900 nm) are attributed to the plasmons excited at the Ag/graphene interface. It is found that the intensity of the extinction cross-section as well as the positions of the resonance wavelengths are interesting that the graphene-assisted narrow peaks are strongly dependent on the number of layers (Ng) and the chemical potential (μ) of graphene. It means that the response of ZnO@Ag core–shell nanoparticles to electromagnetic fields are greatly enhanced when it is wrapped with graphene and can also be tuned in the therapeutic NIR spectral region by varying Ng and μ. The results may be used for possible application in the medical fields, especially for cancer detection and drug delivery.
石墨烯包裹 ZnO@Ag 球形核壳纳米粒子的可调光学特性
本文从理论和数值上研究了石墨烯包裹的氧化锌/银(g - ZnO@Ag)核壳球形纳米粒子嵌入电介质主基体后对入射电磁波的响应。由于纳米粒子的尺寸为 30 纳米,远小于光波长,因此利用准静态近似法获得了电偏振率和相应消光截面的解析表达式。研究发现,g - ZnO@Ag 纳米粒子的消光截面光谱在可见光和近红外光谱区呈现出两组局部表面共振峰。在 900 纳米以下观察到的第一组峰是由于氧化锌内核的能隙与银外壳的局部表面等离子体共振耦合造成的,而位于近红外区域(900 纳米以上)的第二组石墨烯辅助窄峰则是由于在银/石墨烯界面上激发的等离子体造成的。研究发现,石墨烯辅助窄峰的消光截面强度和共振波长位置与石墨烯的层数(Ng)和化学势(μ)密切相关。这意味着当 ZnO@Ag 核壳纳米粒子被石墨烯包裹时,其对电磁场的响应会大大增强,而且还可以通过改变 Ng 和 μ 在治疗近红外光谱区进行调谐。这些结果可用于医疗领域,尤其是癌症检测和药物输送。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Research Express
Materials Research Express MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
4.50
自引率
4.30%
发文量
640
审稿时长
12 weeks
期刊介绍: A broad, rapid peer-review journal publishing new experimental and theoretical research on the design, fabrication, properties and applications of all classes of materials.
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