• Title/Summary/Keyword: Solution blend

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Preparation and Characterization of Biomass-based Polymer Blend Films (Biomass-based 고분자 블렌드필름의 제조 및 특성 연구)

  • Lee, Soo;Jin, Seok-Hwan;Lee, Jae-Won
    • Journal of the Korean Applied Science and Technology
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    • v.29 no.1
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    • pp.95-101
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    • 2012
  • To manufacture of a completely biodegradable and compostable biomass -based blend polymer film, two types of cellulose acetates(DS=2.4 and DS=2.7) were blended with 5 - 50 wt% of low average molecular weight polylactide(PLA) by mixing each polymer solution having same viscosity in 10 wt% methanol/dichloromethane. Their surface morphology, thermal and mechanical properties were studied. The chemical structures of blend films were confirmed by the fourier transform IR spectroscopy with attenuated total reflection(FT-IR ATR) spectrophotometer. Scanning electron microscope(SEM) photos of blend films of both CAs with less than 5 % of PLA showed homogeneous morphology. On the contrary, the other blends with higher than 20 wt% of PLA content showed a large phase separation with spherical domains. The thermal property of blend films was also analyzed with thermogravimetric analysis(TGA) and differential scanning calorimeter(DSC). The tensile strength of CA/PLA blend films was increased up to $820kg_f/cm^2$ for TAC/PLA and $600kg_f/cm^2$ for DAC/PLA.

Shear Induced Homogenization Study of an Immiscible Polymer Blend Solution Using Fluorescence Microscope (형광 현미경을 이용한 비상용 고분자 블렌드 용액의 전단 균질화 연구)

  • 유재웅
    • Polymer(Korea)
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    • v.27 no.5
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    • pp.413-420
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    • 2003
  • Fluorescence microscope technique was employed for the characterization of phase separation behavior of a 4-chloro-7-nitrobenzofurazan labeled polystyrene (PS) / polybutadiene (PB) blend in dioctyl phthalate under steady shear. It was confirmed that the fluorescence microscope images reflect the real phase morphology by comparing with the images of phase contrast microscope. Comparing the fluorescence intensities from the phase separated domain (PS rich) and continuous phase (PB rich), the composition difference between these two phases were deduced. The observed shear dependence of compositional change is then used to confirm that the phase diagram is indeed shifted under the steady shear.

Influence of Methylcellulose on Properties of Wheat Gliadin Film Cast from Aqueous Ethanol

  • Song, Yihu;Li, Lingfang;Zheng, Qiang
    • Food Science and Biotechnology
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    • v.18 no.4
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    • pp.910-916
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    • 2009
  • Present work was focused on the influence of methylcellulose (MC) on steady rheology of wheat gliadin solution and the properties of glycerol plasticized gliadin films. The presence of MC below 0.99 wt% improved viscosity and flow activation energy of the 10 wt% gliadin solution significantly. In the casting films containing 0.2 g glycerol/g dry protein, the MC component aggregated in the gliadin matrix. The blend films containing less than 7.7 wt% MC exhibited higher Young's modulus (E) and tensile strength (${\sigma}_b$) and lower elongation at break (${\epsilon}_b$) in comparison with the pure gliadin film, which was related to the intermolecular interaction between MC and gliadins, the brittle fracture of the aggregated MC component, and the increase in glass transition temperature ($T_g$) of the gliadin phase. Increasing MC content led to a slight increase in water vapor permeability (WVP) without significant influence on the moisture absorption (MA).

A Study on Solution Blend of Poly(vinyl chloride) with Poly(VC-co-AN) (폴리염화비닐(PVC)/염화비닐-아크릴로니트릴 공중합체의 용액 블렌드에 관한 연구)

  • Lee, Soo;Oh, Gang-Seok;Kim, Seung-Ryung;Oh, Young-Se
    • Polymer(Korea)
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    • v.26 no.5
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    • pp.559-567
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    • 2002
  • Poly (vinyl chloride) was blended with blended with vinyl chloride-acrylonitrile copolymers (MO-01 : M$\sub$w/=199049, AN=22.79%, MO-02 : M$\sub$w/=238523, AN=47.03%, MO-03 : M$\sub$w/=289496, AN=52.49%, MO-04 : M$\sub$w/=341837, AN=58.68% by mixing dimethylformamide (DMF) solution of each polymer and their morphology, viscosity, viscoelastic and mechanical properties were studied. Blends of PVC and MO-01 showed a homogeneous morphology. On the contrary, the other copolymer blends showed a large phase separation with spherical domains. Miscibility of blends of PVC and MO-01 was shown to be better than that of blends of other copolymers from morphological and viscoelastic studies. Even though blends of PVC and MO-01 were observed to be the considerable compatibility at a composition of PVC/MO-01=90/10, the mechanical properties of blend films were not improved too much in most blend cases.

Ternary Blend Organic Solar Cells Trends based on PM6:Y6 (PM6:Y6를 기반으로 한 삼중 혼합 유기 태양전지 동향)

  • Dong Hwan Yun;Gwang Yong Shin;Yun Hye Jung;YeongWoo Ha;Gi-Hwan Kim
    • Current Photovoltaic Research
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    • v.11 no.3
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    • pp.79-86
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    • 2023
  • As we strive to mitigate the environmental impact caused by the use of fossil fuels, the exploration of alternative energy sources has gained significant attention. Solar energy, in particular, has emerged as a promising solution due to its eco-friendly nature and virtually limitless availability. Among the various types of solar cells that harness this abundant energy source, organic solar cells have garnered considerable interest. Organic solar cells feature a photo-active layer composed of organic semiconductors, offering a range of appealing advantages such as cost-effectiveness, flexibility, translucency, and the ability to produce customizable colors. However, the commercialization of organic solar cells has been impeded by certain challenges, notably their relatively low efficiency and stability. To overcome these obstacles and pave the way for wider adoption, researchers have been exploring innovative approaches, including the implementation of ternary blend organic solar cells. This strategy involves introducing a third component into the photo-active layer alongside the organic semiconductors, with the aim of enhancing the overall performance of the solar cell. In this paper, we delve into the issues associated with organic solar cells and focus on one potential solution: ternary blend organic solar cells. Specifically, we examine the application of this approach to PM6:Y6, which stands as one of the most popular combinations of organic semiconductors. By investigating the potential of ternary blends, particularly utilizing PM6:Y6, we aim to accelerate the commercialization of organic solar cells.

Control of Enzymatic Degradability of Biodegradable Polylactide by Blending with Non-degradable Polymers (비 분해성고분자와 블렌드를 이용한 생분해성 폴리유산의 효소분해속도 조절)

  • Jang, Seong-Ho;Park, Sang-Bo;Lee, Won-Ki
    • Journal of Environmental Science International
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    • v.19 no.9
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    • pp.1161-1167
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    • 2010
  • The effects of addition of non degradable polymers, polystyrene (PS) and poly(methyl methacrylate) (PMMA) on the rate of enzymatic degradation of biodegradable poly(l-lactide) (PLLA) have been studied in term of surface structure. Since a component in multicomponent polymeric system has shown surface enrichment, PS and PMMA which have lower surface energy than PLLA were selected as a minor blend component (5 wt%). Enzymatic degradation was carried out at $37^{\circ}C$ and pH 8.5 in the aqueous solution of Proteinase K. Two blend systems, partially miscible (PS/PLLA) and immiscible (PMMA/PLLA), showed the surface enrichment of 4 and 2 times of PS and PMMA, respectively. From the weight loss profile data, the slow degradation rate of both blend films was observed. This indicates that PS or PMMA domains which exist at surface act as a retardant of enzymatic attack.

Preparation and Characterization of the Blends of Poly(vinyl alcohol) and N-(2-hydroxy)propyl-3-trimethylammonium Chitosan Chloride (폴리(비닐 알코올)과 N-(2-하이드록시)프로필-3-트리메틸 키토산 클로라이드 블렌드의 제조와 특성 분석)

  • 김영호;최재원;이은영
    • Polymer(Korea)
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    • v.27 no.5
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    • pp.405-412
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    • 2003
  • Poly(vinyl alcohol) (PVA) and N-(2-hydroxy)propyl-3-trimethylammonium chitosan chloride (HTCC), a water soluble chitosan derivative synthesized by the reaction of quaternary ammonium compound with chitosan, were blended using water as a solvent and the PVA/HTCC blend films with various compositions were prepared by solution casting method. The miscibility between the two polymers and the thermal properties of the blend films were investigated using FT-IR, DSC, DMA, and TGA. Single glass transition temperatures and single melting temperatures of the blend films along with the strong and clear film state for the whole composition of blending ratios suggest the miscibility between PVA and HTCC. The PVA/HTCC blend films with HTCC content of 1% and greater showed excellent antimicrobial activity.

Morphology and Swelling Behaviors of PVA/Gelatin Blend Membranes Prepared Under High Electric Field (고전장하에서 제조된 PVA/Gelatin 블렌드막의 구조와 팽윤거동)

  • Huh, Yang-Il;Yun, Hyung-Ku
    • Polymer(Korea)
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    • v.30 no.6
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    • pp.563-567
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    • 2006
  • Poly(vinyl alcohol) (PVA) and gelatin (GEL) blend membranes were prepared by solution casting method under a high electric field. SEM observation of the membrane showed that gelatin rich domains were elongated and oriented to the direction of the applied electric field in PVA matrix. This can be attributed to the electrostatic emulsifying effects due to a reduction in interfacial tension. In addition, it was observed through WAXD and swelling measurements that the degree of crystallinity of membranes increased with applied electric field strength. This may be interpreted to be caused by the orientation effect of GEL domains in the blend membrane, and the self-annealing effect due to some heat generated from high electric field during casting.

Structure and Characteristic of Chitosan/Bombyx mori Silk Fibroin Blend Filems (키토산/Bombyx mori 견 피브로인 블렌드 필름의 구조와 특성)

  • Kim, Dong-Keon;Kim, Hong-Sung
    • Polymer(Korea)
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    • v.29 no.4
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    • pp.408-412
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    • 2005
  • Structure and characteristic of the films blended chitosan matrix with silk fibroin, extracted from Bombyx mori, were studied by X-ray diffraction, differential scanning calorimetry, FT-IR spectra analysis, SEM photographs, contact angle measurement and water absorbency in order to use as biomaterials. The blend films of $0\~30 wt\%$ fibroin content were prepared in acetic solution with $Li^+$ ion. It was found that the crystallinity of chitosan/fibroin blend films was decreased by the presence of intermolecular interactions such as hydrogen bonding between animo groups of chitosan and carbonyl groups of fibroin. As the proportion of fibroin in the blend increased, anhydrous crystalline phase of chitosan disappeared, and hydrated crystalline phase decreased, and $\beta$-structure crystalline phase of fibroin was formed. Therefore the blend films were crystallized into two different crystalline region of chitosan and fibroin. Surface hydrophilicity and water absorbency increased with blending fibroin. Above 20 $wt\%$ fibroin content, hydrogel film was formed. The surface and section of the film showed uniform microstructure on SEM photographs.

Dyeing Properties and Antibacterial Activity of Wool Blend Fabrics dyed with Rhus Verniciflua Extract (옻나무 추출 염액을 이용한 양모혼방직물의 염색성과 항균효과)

  • Kim, Tae-Yeon;Jang, Jeong-Dae
    • Fashion & Textile Research Journal
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    • v.10 no.1
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    • pp.106-112
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    • 2008
  • The purpose of this study is to define optimal conditions for wool blend fabric dyeing using Rhus verniciflua extract. K/S value, surface color change, the fastness to light, fastness to dry-cleaning, metal mordanting effects and antimicrobial activities were investigated. The results were summarized as follows; As the storage time of Rhus verniciflua stokes dyeing solution was longer, K/S was improved. K/S value showed the highest one when dyeing temperature and time were at 100oC and 60 minutes respectively. As for the changes of pH values of the dyeing solution, fabric was dyed well with the pH value of acid or neutral. K/S value recorded the highest at pH6 and the lowest at pH10. Fastness to light showed the unmordanted fabric is 2.84, and Fe is 1.69 on color difference. Antibacterial activities of Rhus verniciflua dyeing solution recorded high figures in both dyed fabric with unmordanted and dyed fabric with mordanting.