61 research outputs found
Refractive-index sensing with ultra-thin plasmonic nanotubes
We study the refractive-index sensing properties of plasmonic nanotubes with
a dielectric core and ultra-thin metal shell. The few-nm thin metal shell is
described by both the usual Drude model and the nonlocal hydrodynamic model to
investigate the effects of nonlocality. We derive an analytical expression for
the extinction cross section and show how sensing of the refractive index of
the surrounding medium and the figure-of-merit are affected by the shape and
size of the nanotubes. Comparison with other localized surface plasmon
resonance sensors reveals that the nanotube exhibits superior sensitivity and
comparable figure-of-merit
Self-assembly of Silver Nanoparticles and Multiwall Carbon Nanotubes on Decomposed GaAs Surfaces
Atomic Force Microscopy complemented by Photoluminescence and Reflection High Energy Electron Diffraction has been used to study self-assembly of silver nanoparticles and multiwall carbon nanotubes on thermally decomposed GaAs (100) surfaces. It has been shown that the decomposition leads to the formation of arsenic plate-like structures. Multiwall carbon nanotubes spin coated on the decomposed surfaces were mostly found to occupy the depressions between the plates and formed boundaries. While direct casting of silver nanoparticles is found to induce microdroplets. Annealing at 300°C was observed to contract the microdroplets into combined structures consisting of silver spots surrounded by silver rings. Moreover, casting of colloidal suspension consists of multiwall carbon nanotubes and silver nanoparticles is observed to cause the formation of 2D compact islands. Depending on the multiwall carbon nanotubes diameter, GaAs/multiwall carbon nanotubes/silver system exhibited photoluminescence with varying strength. Such assembly provides a possible bottom up facile way of roughness controlled fabrication of plasmonic systems on GaAs surfaces
Theoretical Analysis the Optical Properties of Multi-coupled Silver Nanoshell Particles
The surface plasmon resonances of silver nanoshell particles are studied by Green’s function. The nanoshell system of plasmon resonances results from the coupling of the inner and outer shell surface plasmon. The shift of the nanoshell plasmon resonances wavelength is plotted against with different dielectric environments, several different dielectric cores, the ratio of the inner and outer radius, and also its assemblies. The results show that a red- and blue-shifted localized surface plasmon can be tuned over an extended wavelength range by varying dielectric environments, the dielectric constants and the radius of nanoshell core respectively. In addition, the separation distances, the distribution of electrical field intensity, the incident directions and its polarizations are also investigated. The study is useful to broaden the application scopes of Raman spectroscopy and nano-optics
Anisotropic nanomaterials: structure, growth, assembly, and functions
Comprehensive knowledge over the shape of nanomaterials is a critical factor in designing devices with desired functions. Due to this reason, systematic efforts have been made to synthesize materials of diverse shape in the nanoscale regime. Anisotropic nanomaterials are a class of materials in which their properties are direction-dependent and more than one structural parameter is needed to describe them. Their unique and fine-tuned physical and chemical properties make them ideal candidates for devising new applications. In addition, the assembly of ordered one-dimensional (1D), two-dimensional (2D), and three-dimensional (3D) arrays of anisotropic nanoparticles brings novel properties into the resulting system, which would be entirely different from the properties of individual nanoparticles. This review presents an overview of current research in the area of anisotropic nanomaterials in general and noble metal nanoparticles in particular. We begin with an introduction to the advancements in this area followed by general aspects of the growth of anisotropic nanoparticles. Then we describe several important synthetic protocols for making anisotropic nanomaterials, followed by a summary of their assemblies, and conclude with major applications
Dynamic light scattering for gold nanorod size characterization and study of nanorod–protein interactions
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Dating preferences among self-identified gay men of Asian descent in the United States
Little is known about the dating preferences of Asian American gay men. To conceptualize the dating preferences among these men, the impact domains model (IDM) was used to investigate if nativity and/or acculturation might explain dating preferences. Previous studies have pointed out the problematic nature of a racist cultural stereotype that Asian American gay men prefer white partners (Choi, Yep, & Kumekawa, 1998; Han, 2008). The current findings do not support that Asian American gay men prefer white partners. In our sample, 17.1% preferred dating white men and over 20% preferred Asian men. Over 60% had no clear racial/ethnic dating preference. Multivariate analyses indicated that those reporting higher ethnic acculturation (p <.001) and were U.S.-born (p <.01) were more likely to prefer dating Asian men. In contrast, those younger (p <.001) and living on the East Coast (p <.01) were more likely to prefer dating white men. Limitations of the study include a self-report cross-sectional design with purposive recruitment to study HIV/STIs and sexual health rather than dating preferences. Additionally, the data set included only a coastal classification (East vs. West Coast) and an acculturation scale which included cultural identity, language, and competence. The complex effect of nativity and acculturation on dating preference warrants further investigation. The IDM may be useful to guide future studies of partner preference among Asian MSM. Researchers in future studies should pay attention to identifying the key behavioral, social, and affective beliefs that underlie partner preference and examine actual dating practices
Multi-objective Optimization of Permanent Magnet Adjustable Speed Driver Base on RSM Model and NSGA-II
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