Open Access. Powered by Scholars. Published by Universities.®
Nanoscience and Nanotechnology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Biomedical Engineering and Bioengineering (2)
- Chemical Engineering (2)
- Electrical and Computer Engineering (2)
- Life Sciences (2)
- Nanotechnology Fabrication (2)
-
- Biochemistry, Biophysics, and Structural Biology (1)
- Bioimaging and Biomedical Optics (1)
- Biomaterials (1)
- Biomedical (1)
- Biomedical Devices and Instrumentation (1)
- Biophysics (1)
- Biotechnology (1)
- Engineering Science and Materials (1)
- Heat Transfer, Combustion (1)
- Materials Science and Engineering (1)
- Mechanical Engineering (1)
- Mechanics of Materials (1)
- Membrane Science (1)
- Optics (1)
- Other Chemical Engineering (1)
- Other Materials Science and Engineering (1)
- Physical Sciences and Mathematics (1)
- Physics (1)
- Keyword
-
- CTAB (1)
- Collagen (1)
- Dispersions (1)
- Dual-phase-lagging (DPL) (1)
- Evanescent field (1)
-
- Flexoelectricity; Surface effects; Piezoelectric nanoplates; Size-dependent properties (1)
- Freestanding metal nanomembrane (1)
- Label-free (1)
- Langmuir-Blodgett deposition (1)
- Nanofluids (1)
- Nanohole array (1)
- Nanotubes (1)
- Non-Fourier (1)
- Nonlinear spectral solution (1)
- PVP (1)
- Perturbation expansion. (1)
- Plasmonics optical fiber (1)
- Polymer (1)
- Rayliegh-Bénard convection (1)
- Refractive index sensitivity (1)
- Scattering (1)
- Single-phase-lagging (SPL) (1)
- Surface plasmon resonance sensing (1)
- Surfactant (1)
- Template transfer (1)
- Waveguide (1)
Articles 1 - 5 of 5
Full-Text Articles in Nanoscience and Nanotechnology
Thermal Convection Of Non-Fourier Fluids, Rahim Mohammadhasani Khorasany
Thermal Convection Of Non-Fourier Fluids, Rahim Mohammadhasani Khorasany
Electronic Thesis and Dissertation Repository
The natural convection of non-Fourier fluids of the dual-phase-lagging (DPL) type is examined. These fluids possess a relaxation time and a retardation time, reflecting the delay in the response of the heat flux and the temperature gradient with respect to one another. DPL fluids span a wide range of applications, including low-temperature liquids, fluids subjected to fast heat transfer processes, and nanofluids (NFs), for which both the relaxation and retardation times are expressed in terms of nanoparticle concentration and solution properties. Both stationary and oscillatory convection become equally probable as the relaxation time increases. A nonlinear spectral approach is also …
Size-Dependent Electroelastic Properties Of Piezoelectric Nanoplates, Zhengrong Zhang
Size-Dependent Electroelastic Properties Of Piezoelectric Nanoplates, Zhengrong Zhang
Electronic Thesis and Dissertation Repository
With the development of nanotechnology, piezoelectric nanostructures have attracted a surge of interests in research communities for the potential applications as transistors, sensors, actuators, resonators and energy harvesters in nanoelectromechanical systems (NEMS) due to their high electromechanical coupling and unique features at the nano-scale. Piezoelectric nanomaterials have been characterized to possess size-dependent electromechanical coupling properties from both experimental and theoretical perspectives. Therefore it is of great importance to investigate the physical mechanisms of these distinct nano-scale structure features in order to fulfill the design and application of those piezoelectricity-based nanodevices.
Due to large surface to volume ratio and manifest strain …
Surfactant Assisted Dispersion Of Single-Walled Carbon Nanotubes In Polyvinylpyrrolidone Solutions, Tennison Yu
Surfactant Assisted Dispersion Of Single-Walled Carbon Nanotubes In Polyvinylpyrrolidone Solutions, Tennison Yu
Electronic Thesis and Dissertation Repository
Obtaining stable aqueous dispersions is one of the main challenges hindering a widespread and effective use of single-walled carbon nanotubes (SWNT) in many applications. Although it has been recognized that their versatility makes them an extremely attractive material, the unique molecular structure that gives SWNTs their unmatched electronic, mechanical, and thermal properties is also responsible for strong van der Waals interactions. This, combined with extremely high aspect ratios and flexibility, causes SWNTs to adhere strongly into tightly bundled ropes. In these bundles, SWNTs are not as useful as their linearized unbundled equivalents. Thus, in order to take advantage of their …
Plasmonic Optical Sensors: Performance Analysis And Engineering Towards Biosensing, Peipei Jia
Plasmonic Optical Sensors: Performance Analysis And Engineering Towards Biosensing, Peipei Jia
Electronic Thesis and Dissertation Repository
Surface plasmon resonance (SPR) sensing for quantitative analysis of chemical reactions and biological interactions has become one of the most promising applications of plasmonics. This thesis focuses on performance analysis for plasmonic sensors and implementation of plamonic optical sensors with novel nanofabrication techniques.
A universal performance analysis model is established for general two-dimensional plasmonic sensors. This model is based on the fundamental facts of surface plasmon theory. The sensitivity only depends on excitation light wavelength as well as dielectric properties of metal and dielectrics. The expression involves no structure-specified parameters, which validates this formula in broad cases of periodic, quasiperiodic …
Oriented Collagen And Applications Of Waveguide Evanescent Field Scattering (Wefs) Microscopy, Qamrun Nahar
Oriented Collagen And Applications Of Waveguide Evanescent Field Scattering (Wefs) Microscopy, Qamrun Nahar
Electronic Thesis and Dissertation Repository
In this thesis, Waveguide Evanescent Field Scattering (WEFS) microscopy is developed as a non-invasive, label-free live cell imaging technique. This new high-contrast imaging can be employed to study the first hundred nanometers from the surface as it utilizes the evanescent field of a waveguide as the illumination source. Previously, waveguide evanescent field fluorescence (WEFF) microscopy was developed as a fluorescence imaging technique comparable to the total internal reflection fluorescent (TIRF) microscopy. Both the WEFF and WEFS technique utilizes the same fundamental concepts except in WEFS microscopy imaging is accomplished without the application of any fluorescent labeling. In this work, bacterial …