Self-assembly 2D plasmonic nanorice film for surface-enhanced Raman spectroscopy

来源 :中国物理B(英文版) | 被引量 : 0次 | 上传用户:Hejing
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
As an ultrasensitive sensing technology,the application of surface enhanced Raman spectroscopy (SERS) is one interesting topic of nano-optics,which has huge application prospectives in plenty of research fields.In recent years,the bottleneck in SERS application could be the fabrication of SERS substrate with excellent enhancement.In this work,a two-dimensional (2D) Ag nanorice film is fabricated by self-assembly method as a SERS substrate.The collected SERS spectra of various molecules on this 2D plasmonic film demonstrate quantitative detection could be performed on this SERS substrate.The experiment data also demonstrate this 2D plasmonic film consisted of anisotropic nanostructures has no obvious SERS polarization dependence.The simulated electric field distribution points out the SERS enhancement comes from the surface plasmon coupling between nanorices.And the SERS signals is dominated by molecules adsorbed at different regions of nanorice surface at various wavelengths,which could be a good near IR SERS substrate for bioanalysis.Our work not only enlarges the surface plasmon properties of metal nanostructure,but also exhibits the good application prospect in SERS related fields.
其他文献
Monolayer transition metal dichalcogenides can normally exist in several structural polymorphs with distinct electri-cal,optical,and catalytic properties.Effective control of the relative stability and transformation of different phases in these materials
Molecular dynamics simulation of a sympathetically-cooled 113Cd+ ion crystal system is achieved.Moreover,the relationship between ions\' axial temperature and different electric parameters,including radio frequency voltage and end-cap voltage is depicte
Laser-accelerated ion beams (LIBs) have been increasingly applied in the field of material irradiation in recent years due to the unique properties of ultra-short beam duration,extremely high beam current,etc.Here we explore an application of using laser-
The interaction of single water droplet impacting on immiscible liquid surface was focused with the temperature varying from 50 ℃ to 210 ℃.The impact behavior is recorded with a high-speed camera running at 2000 frames per second.It is found that droplet
The Ⅲ-Ⅴ alloys and doping to tune the bandgap for solar cells and other optoelectronic devices has remained a hot topic of research for the last few decades.In the present article,the bandgap tuning and its influence on optical properties of In1-xGaxN/P,w
Cobalt-silicon based carbon composites (Co-Si/C) have established a noteworthy consideration in recent years as a replacement for conventional materials in the automotive and aerospace industries.To achieve the composite,a reactive melt infiltration proce
We investigate the electronic structure and magnetic properties of layered compound Sr3Fe2O5 based on first-principles calculations in the framework of density functional theory with GGA+U method.Under high pressure,the ladder-type layered structure of Sr
A new structural parameter of amorphous alloys called atomic bond proportion was proposed,and a topological algorithm for the structural parameter was proven feasible in the previous work.In the present study,a correction factor,λ,is introduced to optimiz
We preform a first-principles study of performance of 5 nm double-gated (DG) Schottky-barrier field effect transis-tors (SBFETs) based on two-dimensional SiC with monolayer or bilayer metallic 1T-phase MoS2 contacts.Because of the wide bandgap of SiC,the
High-order harmonics and attosecond pulse generation with coherent wake emission are theoretically investigated for the effect of pulse duration and carrier envelope phase (CEP) of few-cycle laser pulse.We find that short pulse duration will cause the neg