• Title/Summary/Keyword: Block copolymer

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The Vertical and Lateral Ordering of PDMA-b-PS Block Copolymer Thin film via Control of Relative Humidity (습도의 영향에 따른 PDMA-b-PS 친수성 블록공중합체 박막의 패턴 조절)

  • Jung, Hyun-Jung;Kim, Tae-Joon;Bang, Joon-A
    • Korean Chemical Engineering Research
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    • v.49 no.3
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    • pp.352-356
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    • 2011
  • In this paper, we prepared new type of hydrophilic block copolymers that exhibit the long-ranged lateral ordering in thin film. It was previously demonstrated that poly(ethyleneoxide-b-styrene) and poly(ethyleneoxide-b-metharylate-b-styrene) block copolymer thin films have a high degree of lateral ordering after solvent annealing process. In these cases, the relative humidity plays an important role in long-ranged lateral ordering. However, the origin of the humidity effect on the orders of these hydrophilic block copolymers is not fully understood. To investigate the effect of the humidity further, we prepared other hydrophilic poly(N,N-dimethylacrylamide-b-styrene)(PDMA-b-PS) block copolymers via RAFT polymerization. As with PEO-containing block copolymers, PDMA-b-PS block copolymers exhibit the long-ranged lateral ordering after solvent annealing process.

Synthesis and Charaterization of Poly(styrene-b-methyl Methacrylate) by Free Radical Telomerization (Ⅰ) (자유라디칼 Telomerization 에 의한 스티렌메타크릴산메틸 Block 혼성중합체의 합성 및 분석 (제1보))

  • Jung Hag Park;Gil Soo Sur;Sam Kwon Choi
    • Journal of the Korean Chemical Society
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    • v.24 no.3
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    • pp.259-265
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    • 1980
  • Poly (styrene-b-methyl methacrylate) (PS-b-PMMA) was synthesized by free radical telomerization: the telomerization of styrene with $CCI_4$ by using AIBN as initiator followed by a second telomerization of methyl methacrylate using $CCI_3$ end group of the resulting polymer as the macrotelogen, with AIBN initiation, gave the styrene-methyl methacrylate block copolymer. The effects of the concentration of the macrotelogen, the concentration of monomer, the molecular weight of the macrotelogen, the reaction temperature and the concentration of the solvent on the formation of the block copolymer were investigated. Block copolymers containing up to 10 weight percent PMMA were obtained by adjusting the reaction conditions.

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Preparation of Poly(oxypropylene-oxyethylene glycol) Block Copolymers Oil Dispersant and Characteristics of W/O Emulsion to Weathering Crude Oils (Poly(oxypropylene-oxyethylene glycol) Block Copolymer계 유분산제의 제조와 Weathering Crude Oil에 대한 W/O 에멀젼 특성)

  • Kang, Doo-Whan
    • Journal of the Korean Applied Science and Technology
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    • v.20 no.3
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    • pp.204-211
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    • 2003
  • Poly(oxypropylene-oxyethylene glycol) block copolymer(PBC) oil dispersant, which has low toxicity, high biodegradability, and an excellent dispersion efficiency to crude oils and weathered W/O emulsion was prepared by blending PBC, poly(oxyethylene) oleate, and sorbitan monooleate. The dispersing efficiency was measured by swirling flask method. The PBC oil dispersant had an excellent dispersing efficiency to weathered oil products formed as stable W/O emulsion, and the low toxicity, such as 4000 ppm to Oryzias Latipes(24 hr, TLM), Brine Shrimp Artemia(24 hr, TLM).

Synthesis of Well Defined Sulfonated Block Copolymers by Atom Transfer Radical Polymerization

  • Baek Kyung-Youl;Balsara Nitash P.
    • Proceedings of the Polymer Society of Korea Conference
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    • 2006.10a
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    • pp.332-332
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    • 2006
  • Well difined sulfonated styrene and n-butyl acrylate (nBA) block copolymers were synthesized by CuBr catalyzed living radical polymerization followed by acification by thermolysis. Neopentyl styrene sulfonate (NSS) was polymerized with PnBA macroinitator precursor ($M_{n}=19,500,\;PDI\;<\;1.09$) and CuBr catalyst with N,N,N',N' -pentamethylethyleneamine (PMDETA) to give nBA-NSS block copolymer with narrow polydispersity ($M_{n}=29,900,\;PDI\;<\;1.15$). PNSS segments in the block copolymer were then acidified by thermolysis at $150^{\circ}C$ resulting in polystyrene segments with 100 % sulfonic acid groups.

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Nanostructure formation in thin films of block copolymers prepared by controlled radical polymerization

  • Voit, B.;Fleischmann, S.;Messerschmidt, M.;Leuteritz, A.
    • Proceedings of the Polymer Society of Korea Conference
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    • 2006.10a
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    • pp.99-100
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    • 2006
  • Orthogonally protected block copolymers of based on p-hydroxystyrene were prepared with high control via nitroxy mediated radical polymerization using an alkoxyamine as an unimolecular initiator. Thin films of partially protected block copolymer were prepared by spin or dip coating. A well defined nanostructure could be observed as a result of phase separation e.g. cylinders in a matrix oriented perpendicular or parallel to the substrate. The nanostructure of the polymeric films can be defined by the block copolymer composition and it determines surface properties and allows further, selective functionalization, e.g. via click chemistry. The thin films can be designed in a way to allow a patterning based on a thermal or photochemical stimulus.

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Homopolymer Distribution in Polystyrene - Poly(methyl methacrylate) Diblock Copolymer (폴리스티렌-폴리(메틸 메타크릴레이트) 이종 블록 공중합체 내의 단일중합체 분포)

  • Hong, Sung-Ho;Lee, Eun-Ji;Song, Kwon-Bin;Lee, Kwang-Hee
    • Polymer(Korea)
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    • v.35 no.6
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    • pp.531-536
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    • 2011
  • Homopolymer distribution in block copolymer/homopolymer blends was investigated as a function of homopolymer concentration and homopolymer molecular weight. The deuterated poly(methyl methacrylate) or polystyrene was blended with a deuterated polystyrene-poly(methyl methacrylate) diblock copolymer up to a concentration of 20 wt%. Samples were characterized by small-angle X-ray scattering (SAXS), neutron reflectivity and transmission electron microscopy. The block copolymer with a thin-film geometry formed alternating lamellar microdomains oriented parallel to the substrate surface. By adding the homopolymer, the microdomain structure was significantly disturbed. As a consequence, a poorly ordered morphology appeared when the homopolymer concentration exceeded 15 wt%. Increasing the homopolymer concentration and/or the homopolymer molecular weight caused the microdomains to swell less uniformly, resulting in segregation of the homopolymer toward the middle of the microdomains.

Polymer Electrolyte Membranes of Poly(Styrene-Butadiene-Styrene) Star Triblock Copolymer for Fuel Cell (연료전지용 Poly(Styrene-Butadiene-Styrene) Star Triblock Copolymer의 고분자 전해질 분리막)

  • Garcia, Edwin D.;Jung, Bumsuk
    • Membrane Journal
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    • v.29 no.5
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    • pp.252-262
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    • 2019
  • A sulfonated star branched poly(styrene-b-butadiene-b-styrene) triblock copolymer (SSBS) was synthesized with varying degrees of sulfonation. The effective sulfonation on the butadiene block was confirmed by FT-IR spectroscopy. Ion exchange capacity by titration was used to determine the degree of sulfonation. The synthesized polymer observed enhanced water uptake and proton conductivity. At room temperature, the SSBS with 25 mol% degree of sulfonation showed an outstanding proton conductivity of 0.114 S/cm, similar to that of commercial membrane, Nafion. The effect of temperature at constant relative humidity on conductivity resulted to a remarkable increase in proton conductivity. Methanol permeability studies showed a value lower than Nafion for all the sulfonated membranes. Structural nature observed using AFM showed that the membranes observed microphase separated nanostructures and the connectivity of the interionic channels.

Fabrication of Block Copolymer Membranes via SNIPS Process (SNIPS 공정을 이용한 블록공중합체 분리막의 구조 형성에 관한 연구)

  • Woo, Sanghoon;Kim, Jinhee;Lee, Junghyun;Bang, Joona
    • Korean Chemical Engineering Research
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    • v.55 no.2
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    • pp.214-219
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    • 2017
  • In this work, we fabricated PS-b-P4VP block copolymer membranes from self-assembly and non-solvent induced phase separation (SNIPS), which combines the block copolymer self-assembly and conventional NIPS process. While previous studies mostly focused on the fabrication of well-defined structures, we systematically examined various processing parameters such as polymer concentration, solvent evaporation duration, solvent composition, and humidity, to optimized the membrane structures. As a result, the morphology of PS-b-P4VP membranes was optimized at a certain polymer concentration in solution and composition of volatile solvent at low humidity conditions, resulting in SNIPS separation membranes with well-defined nanopores on the surface, 75% of membrane porosity, and 18% of surface porosity.