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Item type:Publication, Size-dependent and spatial variations in the structural properties of spin-coated poly(Vinylidene Fluoride) films(2025-10-01) ;Sukjit, Peemases ;Munpiriyakul, Pimpaporn ;Tuantranont, Adisorn ;Lomas, TanomBorthai, PawantreeThe uniformity of structural properties in large spin-coated poly(vinylidene fluoride), or PVDF, films is crucial due to their widespread applications and thus requires careful investigations. In this study, variations in structural properties across PVDF films of different sizes and positions were examined. Thin PVDF films were fabricated by the spin-coating method onto rectangular substrates with lengths varying from 10 mm to 40 mm while maintaining a constant width of 10 mm. Three key characteristics – thickness, phase, and crystallinity – were characterized and analyzed. Two effects were investigated – the size-dependent effects, i.e., the property variations at a specific position due to the increasing film length, and the spatial effects, i.e., the property variations along distances from the film center within a film of a specific size. The average thickness of the fabricated film was in the range of 5.00 μm to 6.00 μm, while the crystalline size was in the range of 1.00 nm to 3.00 nm. For the size-dependent effects, at a specific position on the film, increasing the film length did not significantly affect the thickness; however, the phase of PVDF shifted toward a more chain-like β phase, while the crystalline size decreased. At the film center, the crystalline size decreased by 60.7% when the film size increased from the smallest to the largest. These changes resulted from four combined mechanisms: centripetal force, viscosity, evaporation rate, and shear force. For the spatial effects, in a film with a specific size, when the distance from the center increased, the thickness decreased, the phase remained β, and the crystalline size was smaller. For the largest 40 × 10 mm<sup>2</sup> film, the thickness and crystalline size decreased by 16.7% and 3.6%, respectively, from the center to the edge of the film. These trends were attributed to the three combined mechanisms: centripetal force, viscosity, and evaporation rate. The findings of this study provide critical insights into a deeper understanding of property variations in spin-coated PVDF films among both different film sizes and different positions on a film, which is essential for optimizing their applications. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Accuracy of swanepoel method in calculation of polymer film thicknesses(2021-08-01) ;Kesornkhup, Sarunrit ;Tuantranont, Adisorn ;Lomas, Tanom ;Sriprachuabwong, ChakritWasapinyokul, KamolWe studied the accuracy of the Swanepoel method in the calculation of thicknesses of spin-coated poly(methyl methacrylate) films with thicknesses up to 2500 nm. Their thicknesses were calculated by using the Swanepoel method and subsequently compared with the measured actual values. Results showed that both thicknesses followed identical trends where films with higher solution concentrations or slower spin-coating speeds were thicker. The relative difference between the Swanepoel and the actual thicknesses was explained through the thickness of the flat region where the interference of transmitted light occurred. For a film whose flat region was thinner or thicker than other features of the film, its Swanepoel thickness was lower or higher, respectively, than the actual average value. Errors of the Swanepoel thicknesses from the actual values were analysed to find their correlation with the film surface roughness and thickness. When the film roughness and thickness increased fivefold, the error increased threefold and 1.6 times, respectively, indicating that the effect of the film roughness was predominant. Mathematically, this effect was the result of the fact that when roughness increased, the interference pattern shrank, and hence the values deviated. For the effect of thickness, thicker films had higher roughness, and consequently higher errors. Errors of as low as 5% and 0.86% were observed for films with the roughness of less than 15 nm and those with the thickness of 1800 nm, respectively. This showed that the method can be used to calculate the thickness of μm-thick polymer films, with a good level of roughness, with satisfying accuracy. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Optical transmittances of spin-coated polymer films with different spin step protocols(2019-07-01) ;Sukjit, Peemases ;Jaieau, ChatchaiWasapinyokul, KamolIn this report, we studied the effects of different spin-coating step protocol on the optical transmittance of thin film polymer. Thin films of poly(methylmethacrylate), or PMMA, were spin-coated with two different spin step protocols - the speed-up and speed-down protocols. In each protocol, the spin-coating had two steps, the first and the second steps. In the speed-up protocol, the first step was slow, while the second faster step was faster. In the speed-down protocol, the first step was fast, while the second step was slower. All the films were subsequently characterised for their optical transmittance over the visible region. There were at least three points worth explained from the experimental results. Firstly, for the speedup protocol, when the second-step speed was slower than 4000 rpm, the transmittance of the film were varied and did not show any relation with the first-step speed. However, when the second-step speed was faster, all the films, regardless of the first-step speed, provided roughly equal transmittance. Secondly, for the speed-down protocol, when the second-step speed was slower than 3000 rpm, transmittances from all films were varied. But when the second-step speed was faster, all the films from all first-step speed gave roughly equal transmittance. As the transmittance is related to the film thickness, these results indicated that, regardless of what the protocol was, if the second-step speed was fast, the film thickness from any first-step speeds would be roughly equal to each other. Finally, for the same pair of speeds but with different protocols, a film with a speed-down protocol provided a relatively higher transmittance than one from a speed-up protocol, implying a thinner film. The results from this study could be further developed to understand how the spin-speed protocol could be chosen to provide a thin film with required thickness. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, A study of optical properties of thin film polymer spin-coated with different dispensing methods(2019-07-01) ;Phatcharawutikul, Ronakrit ;Tangtrakul, KitbordeeWasapinyokul, KamolThin films of poly(methyl methacrylate), PMMA, were fabricated by using a spin-coating process with two different dispensing methods: static and dynamic ones. In the former and latter methods, the solution was dropped onto the substrate when the substrate was stationary and spinning, respectively. The films were characterised for their optical transmittance. The results show that the films from the dynamic dispensing method would provide higher optical transmittances than those from the static ones, indicating the thinner films. This could be explained as, in the dynamic method, the film would always be in a dynamic state and therefore could not form the film easily, resulting in a thinner film. Another point worth noting is that, in the dynamic method, the dispensing height affected the film's transmittance. The higher the dispensing height, the higher the transmittance. This indicated a thinner film and could be explained that, in the dynamic method, a higher dispensing height would result in a larger proportion of the liquid drop to bounce off the substrate, hence less amount of liquid remained to form the film, leading to a thinner film. Such characteristic did not appear in the static method because in this method, the liquid was dropped carefully and covered all the substrate before the spinning started. The results from this study could help choosing the dispensing method to provide film with required optical properties. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Highly-transparent multi-layered spin-coated silk fibroin film(2017-01-01) ;Wasapinyokul, Kamol ;Kaewpirom, Supranee ;Chuwongin, SanthadBoonsang, SiridechIn this study, the silk fibroin films with different numbers of layers were fabricated by the spin-coating method and their optical transmittances were observed. The process to synthesise the silk fibroin solution was explained - starting from the silk cocoon until the silk-fibroin solution, approximately 7.5% concentration wt/vol, was obtained. The solution was spin-coated onto clean glass substrates to fabricate samples. Totally 10 samples with different numbers of layers, from 1 to 5 layers, were obtained. All samples can be separated into two groups: those left dried at room temperature after spin-coating and those heated at 60°C. They were then measured for their transmittance over the visible-to-near-infrared region. All samples exhibited the high transmittance where the values were at 95% and 98%, for the samples at room temperature and those at 60°C, respectively. This was believed to be due to the heating effect that caused the silk fibroin to arrange itself after being heated, hence the higher transmittance. These high transmittances were maintained regardless of the number of layers and length of heating time. Results from this study could be used to fabricate a silk fibroin film with high optical transmittance and adjustable other properties. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Modification of optical properties of spin-coated TiO2 film by heat treatments(2017-01-01) ;Chunarom, Chutinat ;Yontrarak, Tanapat ;Wipopcharoenkul, PuttinanWasapinyokul, KamolIn this report, effects of heat treatment conditions on the transmittance of titanium dioxide, TiO<inf>2</inf>, films were examined. The colloidal solution of TiO<inf>2</inf> in two different solvents - isopropanol, IPA, and sulfuric acid, H<inf>2</inf>SO<inf>4</inf>, were deposited via a spin-coating method onto clean glass substrates. The films were subsequently annealed and cooled down, either quickly or slowly, before being measured for their optical transmittances in the visible region. Three points were noted: Firstly, when the films were quickly cooled down after annealed, their transmittance depended on their annealing temperature. In IPA and H<inf>2</inf>SO<inf>4</inf>, the transmittance decreased and increased, respectively, when the annealing temperature increased. Secondly, when the films were slowly cooled down after annealed, their transmittance seemed to be independent from the annealing temperature, where the films had roughly equal transmittance regardless of annealing temperature. Lastly, the TiO<inf>2</inf> films with H<inf>2</inf>SO<inf>4</inf> provided higher transmittance than those with IPA. All the three stated characteristics were the same for all wavelengths in the visible region. These results were believed to result from the dispersibility of the TiO<inf>2</inf> in each solvent and the cooling-down processes. Such results could be further developed to select a suitable heat treatment process for a spin-coated TiO<inf>2</inf> film with a desired optical transmittance. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Effect of substrates on preparation of dissolved PMMA in DMF solution used as a dielectric layer in OTFTs(2013-10-29) ;Tippo, Tossapol ;Thanachayanont, Chachana ;Junin, Chabaiporn ;Prichanont, SeeroongHietschold, MichaelDissolved Poly (methyl methacrylate) (PMMA) in Dimethylformamide solution was fabricated as thin films on different substrates, glass, poly (ethylene naphthalate) and Si wafer, using spin coating technique. The effect of different substrates on electrical performances of the PMMA films was investigated. For an acceptable organic thin-film transistor (OTFT) performance, uniform thickness with low defect density of the PMMA thin-films was required. A parallel plate capacitor structure was used to test electrical properties of the PMMA dielectric layers. Good dielectric properties were obtained on glass and PEN at film thicknesses of 95 nm. An optimal condition for the OTFT preparation was used to fabricate an OTFT with the PMMA dielectric layer on glass substrate. Measured results showed that the OTFT achieved a mobility of 0.16 cm<sup>2</sup>/V.s, a threshold voltage of -3.6 V, and on/off current ratio of 1×10<sup>5</sup>. © (2013) Trans Tech Publications, Switzerland.
