• 제목/요약/키워드: Polymer catalyst

검색결과 513건 처리시간 0.021초

메탈로센 촉매를 이용한 에틸렌과 시클로올레핀의 공중합 : III. ${\alpha}$-올레핀 첨가의 영향 (Copolymerization of Ethylene and Cycloolefin with Metallocene Catalyst : III. Effect of ${\alpha}$-Olefin Addition)

  • 이동호;이조훈;김현준;김우식;민경은;박이순;서관호;강인규
    • 폴리머
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    • 제25권4호
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    • pp.468-475
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    • 2001
  • $rac-Et(Ind)_2ZrCl_2,\;rac-Me_2Si(Ind)_2ZrCl_2,\;rac-Me_2Si(Cp)_2ZrCl_2,\;(n-BuCp)_2ZrCl_2$ 등의 메탈로센 촉매와 공촉매인 개질 메틸알루민옥산(MMAO)을 이용한 에틸렌과 노르보르넨의 공중합에서 1-헥센(H), 1-옥텐 및 1-데센 등과 같은 ${\alpha}$-올레핀을 제3단량체로 첨가할 때, 중합조건, 촉매의 구조 및 ${\alpha}$-올레핀의 종류와 첨가량이 촉매 활성, 생성 중합체의 열적 성질 및 조성 등에 미치는 영량을 조사하였다. ${\alpha}$-올레핀의 첨가량에 따른 촉매 활성 및 중합체의 열적 성질의 변화는 촉매구조 뿐만 아니라 ${\alpha}$-올레핀의 구조에도 의존하였다. $rac-Et(Ind)_2ZrCl_2/MMAO$계에서 촉매 활성이 높았고 중합체의 $T_g$ 제어가 용이하였으며, 제3단량체로 H를 첨가한 경우에 가장 높은 촉매활성의 증가를 확인하였다.

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High Performance Phenoxytitanium-Based Catalysts for Olefin Polymerization

  • Miyatake, Tatsuya
    • 한국고분자학회:학술대회논문집
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    • 한국고분자학회 2006년도 IUPAC International Symposium on Advanced Polymers for Emerging Technologies
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    • pp.159-160
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    • 2006
  • We developed novel catalyst, PHENICS composed of the combination of a cyclopentadienyl group to perform a high catalytic activity and a bulky phenoxy group, which performs the production of high molecular weight polyolefin. The polymerization activity of PHENICS at high temperature is higher than well-known CGC catalyst. PHENICS showed the excellent ability of comonomer incorporation into polymer chain. The obtained copolymer had a high molecular weight. The PHENICS catalyst is also active to the copolymerization of ethylene and several vinyl comonomers such as styrene, norbornen, and conjugated dienes. We will discuss new cocatalysts for PHENICS to improve activity and the ability of molecular weight control.

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프로필렌 중합에 있어서 Ziegler-Natta 촉매와 Zirconocene 촉매의 중합 조건과 중합체의 물성 비교 (The Comparison between Ziegler-Natta and Zirconocene Catalyst on Reaction Conditions and Physical Properties in Polymer in Propylene Polymerization)

  • 이성철;남영곤;정석진
    • 폴리머
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    • 제24권4호
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    • pp.437-444
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    • 2000
  • 본 연구는 metallocene 계열 촉매인 rac-Et(Ind)$_2$ZrCl$_2$촉매와 현재 상업용 공정에서 사용하고 있는 제3세대 Ziegler-Natta 촉매를 이용하여 반 회분식 반응기내에서 프로필렌 중합을 실시하였다. 이로부터 각 촉매계의 최적 중합 변수와 생성된 중합체의 각종 물성을 파악하였다. 두 촉매계로부터 생성된 중합체의 입자 크기 및 분포 결과와 중합 반응의 활성 측정 실험을 통해 Ziegler-Natta 촉매는 4$0^{\circ}C$에서, rac-Et(Ind)$_2$ZrCl$_2$는 5$0^{\circ}C$에서 각각 최적의 반응성을 나타냄을 알 수 있었다. 중합 온도는 추적의 중합 반응 활성 결과를 결정하는 중요한 인자이지만 과잉의 온도 조건에서는 중합체의 뭉침 현상이 현저함을 찰 수 있었다. 조촉매 농도 변화에 따른 중합 결과로부터 각 촉매계에서 조촉매의 농도 상한선을 구할 수 있었으며, 과량의 조촉매 농도는 오히려 중합 속도나 수율을 감소시킴을 알 수 있었다. Metallocene 촉매계에서 조촉매로 사용하는 methylaluminoxane (MAO)이나 triethylaluminum (TEAl)은 중합 활성에만 영향을 줄 뿐 중합체의 물성에는 영향을 주지 못하는 반면, Ziegler-Natta촉매계의 경우 para-ethoxyethylbenzoate (PEEB)는 중합 활성뿐 아니라 중합체의 입체 규칙성을 결정하는 중요한 인자로 작용함을 알 수 있었다. 본 실험에서는 단량체로 사용된 propylene의 분압과 중합체 수율간에는 1차의 선형관계가 성립됨을 발견할 수 있었다.

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Determination of Properties of Ionomer Binder Using a Porous Plug Model for Preparation of Electrodes of Membrane-Electrode Assemblies for Polymer Electrolyte Fuel Cells

  • Park, Jin-Soo;Park, Seok-Hee;Park, Gu-Gon;Lee, Won-Yong;Kim, Chang-Soo;Moon, Seung-Hyeon
    • 전기화학회지
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    • 제10권4호
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    • pp.295-300
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    • 2007
  • A new characterization method using a porous plug model was proposed to determine the degree of sulfonation (DS) of ionomer binder with respect to the membrane used in membrane-electrode assemblies (MEAs) and to analyze the fraction of proton pathways through ionomer-catalyst combined electrodes in MEAs for polymer electrolyte fuel cells (PEFCs). Sulfonated poly(ether ether ketone) was prepared to use a polymeric electrolyte and laboratory-made SPEEK solution (5wt.%, DMAc based) was added to catalyst slurry to form catalyst layers. In case of the SPEEK-based MEAs in this study, DS of ionomer binder for catalyst layers should be the same or higher than that of the SPEEK membrane used in the MEAs. The porous plug model suggested that most of protons were via the ionomer binder (${\sim}92.5%$) bridging the catalyst surface to the polymeric electrolyte, compared with the pathways through the alternative between the interstitial water on the surface of ionomer binder or catalyst and the ionomer binder (${\sim}7.3%$) and through only the interstitial water on the surface of ionomer or catalyst (${\sim}0.2%$) in the electrode of the MEA comprising of the sulfonated poly(ether ether ketone) membrane and the 5wt.% SPEEK ionomer binder. As a result, it was believed that the majority of proton at both electrodeds moves through ionomer binder until reaching to electrolyte membrane. The porous plug model of the electrodes of MEAs reemphasized the importance of well-optimized structure of ionomer binder and catalyst for fuel cells.

고분자 전해질 연료전지용 촉매 소재 개발을 위한 원자층증착법 연구 동향 (Recent Research Progress on the Atomic Layer Deposition of Noble Metal Catalysts for Polymer Electrolyte Membrane Fuel Cell)

  • 한정환
    • 한국분말재료학회지
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    • 제27권1호
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    • pp.63-71
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    • 2020
  • It is necessary to fabricate uniformly dispersed nanoscale catalyst materials with high activity and long-term stability for polymer electrolyte membrane fuel cells with excellent electrochemical characteristics of the oxygen reduction reaction and hydrogen oxidation reaction. Platinum is known as the best noble metal catalyst for polymer electrolyte membrane fuel cells because of its excellent catalytic activity. However, given that Pt is expensive, considerable efforts have been made to reduce the amount of Pt loading for both anode and cathode catalysts. Meanwhile, the atomic layer deposition (ALD) method shows excellent uniformity and precise particle size controllability over the three-dimensional structure. The research progress on noble metal ALD, such as Pt, Ru, Pd, and various metal alloys, is presented in this review. ALD technology enables the development of polymer electrolyte membrane fuel cells with excellent reactivity and durability.

Synthesis of Lactide from Oligomeric PLA: Effects of Temperature, Pressure, and Catalyst

  • Yoo, Dong-Keun;Kim, Duk-Joon;Lee, Doo-Sung
    • Macromolecular Research
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    • 제14권5호
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    • pp.510-516
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    • 2006
  • Lactide was produced from oligomeric PLA by back-biting reaction of the OH end groups. For optimization of the reaction conditions, the effects of temperature, pressure, PLA molecular weight, and catalyst type on the lactide synthesis were examined. The fraction of D,L-lactide decreased with increasing temperature. Among the various Sn-based catalysts, the D,L-lactide fraction was maximized when SnO was used. A higher yield with lower racemization was observed at lower pressure. The conversion of PLA was maximized at an oligomeric PLA molecular weight of ca. 1380. The yield of lactide increased but the fraction of D,L-lactide decreased with increasing molecular weight. The highest conversion with the lowest racemization degree was obtained at a catalyst concentration of 0.1 wt%. The lactide was more sensitive to racemization because of the entropic effect.

Transition Metal-Mediated Living Radical Polymerization toward Precision Functional Polymers via Catalyst Design

  • Sawamoto, Mitsuo;Ouchi, Makoto
    • 한국고분자학회:학술대회논문집
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    • 한국고분자학회 2006년도 IUPAC International Symposium on Advanced Polymers for Emerging Technologies
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    • pp.93-94
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    • 2006
  • This lecture will present an overview of recent advances in our transition metal-mediated living radical polymerization, particularly focused on catalyst design and precision synthesis of functional polymers. Selected topics will include: (A) Design of Transition Metal Complexes: Evolution of Catalysts (B) New Ruthenium and Iron Catalysts: Active and Versatile (C) Functional Methacrylates for Advanced Functional Polymers (D) Functional Star Polymers: Microgel Cores for Metal Catalysts.

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Polymer Support Immobilized Acidic Ionic Liquid: Preparation and Its Application as Catalyst in the Synthesis of Hantzsch 1,4-Dihydropyridines

  • Jahanbin, Bentolhoda;Davoodnia, Abolghasem;Behmadi, Hossein;Tavakoli-Hoseini, Niloofar
    • Bulletin of the Korean Chemical Society
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    • 제33권7호
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    • pp.2140-2144
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    • 2012
  • A polymer support immobilized acidic ionic liquid was prepared by copolymerization of 3-vinyl-1-(4-sulfonic acid)butylimidazolium hydrogen sulfate with styrene in the presence of benzoyl peroxide and its primary application as a solid acidic heterogeneous catalyst to the synthesis of Hantzsch 1,4-dihydropyridines through a one-pot three-component reaction of aromatic aldehydes, ethyl acetoacetate and ammonium acetate was investigated. The results showed that this heterogeneous catalyst has high catalytic activity and the desired products were obtained in good to high yields. Moreover, the catalyst was found to be reusable and a considerable catalytic activity still could be achieved after third run.

Sulfonated poly(ether sulfone)을 함유한 고분자 전해질 연료전지용 기체 확산 전극에 관한 연구 (Gas diffusion electrode containing sulfonated poly(ether sulfone) as ionomer for polymer electrolyte fuel cells)

  • 류성관;최영우;양태현;임성대;김한성;김창수
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.75.2-75.2
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    • 2010
  • Polymer electrolyte fuel cells (PEFCs) have received a lot of attention as a power source for both stationary and mobile applications due to their attractive feature. In general, the performance of PEFCs is highly affected by the property of the electrodes. A PEFC electrode essentially consists of a gas diffusion layer and a catalyst layer. The gas difusion layer is highly porous and hydrophobicized with PTFE polymer. The catalyst layer usually contains electrocatalyst, proton conducting polymer, even PTFE as additive. Particularly, the proton conducting ionomer helps to increase the catalytic activity at three-phase boundary and catalyst utilization. Futhermore, it helps to retain moisture, resulting in preventing the electrodes from membrane dehydration. The most widely used proton conducting ionomer is perfluorinated sulfonic acid polymer, namely, Nafion from DuPont due to its high proton conductivity and good mechanical property. However, there are great demands for alternative ionomers based on non-fluorinated materials in terms of high temperature availability, environmental adaptability and production cost. In this study, the electrodes with the various content of the sulfonated poly(ether sulfone) ionomer in the catalyst layer were prepared. In addition, we evaluated electrochemical properties of the prepared electrodes containing the various amount of the ionomers by using the cyclic voltammetry and impedance spectroscopy to find an optimal ionomer composition in the catalyst layer.

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