Leelawattananon, Tanaporn
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Preferred name
Leelawattananon, Tanaporn
Alternative Name
Leelawattananon, Thanaporn
Main Affiliation
Email
tanaporn.le@kmitl.ac.th
7 results
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Item type:Publication, Simulation of copper thin film thickness optimization for surface plasmon using the finite element method(2017-01-01); ; Chittayasothorn, SuphamitThis paper presents a computer simulation of optical activations based on the Kretschmann configuration using a prism for the observation of the surface plasmon wave. This is according to the condition of the dispersion relation. The analysis of the electric field of the surface plasmon wave which appears at the interface between the metal layer and the air layer is done by using the Finite Element Method (FEM). The simulation is performed using the COMSOL Multiphysics software which supports the FEM. The objective of our experiment is to find the most suitable thickness of the metal thin film which is most suitable for the surface plasmon excitation when activated by 632.5 nm red laser light source. The red laser light source is commonly available and also very economical. The metal used in our work is copper which is an economical noble metal and gives better conductivity than gold. The findings from the simulation will be used in the future high precision physical experiments. The outcome of this research project, the surface plasmon wave on copper thin film, is expected to be used in bio-molecular detectors or high speed THz communications. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Silver thin film and water dielectric SPR sensor experimental and simulation characteristics(2019-01-01); Chittayasothorn, SuphamitThis research project is the study of the Surface Plasmon Resonance (SPR) at the interface between silver thin film and the water dielectric layer. The purpose is to find the suitable thickness of the silver thin film layer which produces SPR and is suitable for SPR sensor applications. Both physical experiments and simulations are conducted using the Kretschmann Configuration. In the physical experiments, BK7 prisms are coated with silver thin films with the thickness of 60Â nm, 80Â nm, and 100Â nm. The light source is p-polarized He-Ne Laser with the wavelength of 632.8Â nm. Hawkeye laser detectors are used to detect the laser light intensity of reflected light for each desired angle. In the simulations, results of SPR signals are analyzed using the finite element method. The simulated results are found to agree with the results from the physical experiments. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Simulation effects on the optical response of gold nanoparticles(2019-01-01); Chittayasothorn, SuphamitIn this research work, we use simulation models for the investigation of the sizes and shapes of gold nanoparticles on BK-7 substrate base, which affect the optical characteristics in a large spectral range of the gold nanoparticles. Linearly polarized light with wavelengths of 300 – 800 nm are specified as the impact light on gold nanostructures. We try to find the suitable wavelength of the impact light when localized surface plasmon resonance takes place. The gold nanoparticles are spherical, elliptical oval, and 10nm x 40 nm block-shape and have their aspect ratio similar to the nanorod shape nanoparticles used in other experiments. The results are useful for the development of plasmonic complex nanostructure with tunable surface plasmon resonances which generate heat and have potential applications in medical thermal therapy. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Surface Roughness Measurement Application Using Multi-frame Techniques(2016-01-04); ;Thowladda, WarawootChittayasothorn, SuphamitThis paper presents a computer application of the surface roughness measurement of highly smooth surfaces. The Phase Shifting Interferometry technique which is a non-contact technique is applied for the roughness measurement. Our optic-based measurement system utilizes a 0.5 mW He-Ne laser source with the wavelength of 632.8 nm. Fringes from the measurement system were recorded using a high precision camera and were analyzed by our programs to produce the surface roughness measurement. This technique is a simple technique which gives accurate results. It is a four-frame algorithm giving similar results to the more complex five-frame one with less processing time. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, A prototype full duplex data transfer system based on red laser pointer module(2016-01-01); Chittayasothorn, SuphamitThis research work presents the development of a prototype short distance, full duplex data transfer system using red pointer module as the light transmitter and PIN photodiode as the receiver. The system is low cost, stable, and has low power consumption.) This data transfer unit is connected to a computer system using the Prolific USB-to-Serial Com Port chipset which also uses the computer as its power source. The unit is used for data transfers between two nearby computer systems or peripheral devices. In this work, a data transfer program is developed. The program was written in the visual C# language. It is convenient to specify the COM port and the appropriate bit rates. Data transfers of both text and graphical data are tested and results are discussed; both with and without moving object interferences. This data transfer unit has the potential for applications in EMI-sensitive environments and moving objects interferences. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Simulation of Surface Plasmon Waves Based on Kretschmann Configuration Using the Finite Element Method(2019-01-01); Chittayasothorn, SuphamitThis paper presents the simulation of optically activated surface plasmon waves based on Kretschmann configuration by using prism. Simulated electric fields of the surface plasmon wave which appears at the interface between the metal thin film and dielectric layer are observed. The occurences of surface plasmon wave can be applied to biomolecular sensing and high speed data communications at the THz level. The simulations employ the finite element method (FEM). The light source is the 632.5 nm red laser which is economical and easy to obtained commercially. Two simulation models are conducted. The first simulation model employs copper thin film on the prism and air as the dielectric layer. This one is intended to find the most suitable copper thin film thickness to produce surface plasmon waves. Copper thin film is used because it is a noble metal which is less expensive than gold but has better conductivity than gold. The second simulation model employs silver, another noble metal which is also less expensive than gold. Silver thin film on prism together with magnesium chloride solution as dielectric layer are simulated. Concentrations of the magnesium chloride solution are varied to find the one which produces good surface plasmon wave pattern. Thus suitable to be used as sensors for biomoleculars such as DNAs. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Antiradical properties of chemo drug, carboplatin, in cooperation with ZnO nanoparticles under UV irradiation in putative model of cancer cells(2019-07-01) ;Pairoj, Suttirak; ;Damrongsak, Badin ;Jinawath, NatiniKaewkhaw, RossukonThe main objective of this study was to assess the antiradical properties of zinc oxide (ZnO) nanoparticles upon exposure to ultraviolet radiation with carboplatin, an anti-proliferative drug used in the treatment of retinoblastoma. For the purpose of this study, the decomposition of 2,2(diphenyl-1-picryhydrazyl) radical (DPPH*) was used to assess the free radical capacity of antioxidants and was followed by MTT measurements. To test the antiradical capacity, the effective concentration, antiradical power, stoichiometry, and number of reduced DPPH* were investigated. DPPH* has a peak absorbance at a wavelength of 515 nm, which disappears upon the introduction of the antiradical agents. Four agents were reacted with DPPH* and represented the possible reaction kinetic categories. ZnO nanoparticles and carboplatin-loaded ZnO nanoparticles reacted more strongly with DPPH* and approached a saturation state at 420 min. The remaining two antiradical agents, ZnO nanoparticles under UV radiation and carboplatin-loaded ZnO nanoparticles under UV radiation, reacted a bit slower with DPPH* and approached a steady state at 1440 min. Among the different four antiradical agents, carboplatin-loaded ZnO nanoparticles under UV light had the highest antiradical response with the lowest effective concentration value to the reduced DPPH* molecules. ZnO nanoparticles alone were found to be poor antiradical agent. Possible mechanisms were attributed to the number of hydroxyl groups available to decrease the number of DPPH*.1
