• 제목/요약/키워드: Core/shell structure

검색결과 260건 처리시간 0.029초

[논문 철회] 유화중합에 의한 Methyl methacrylate/styrene계 Core-shell 라텍스 입자 제조에 관한 연구 ([Retraction] Preparation of Methyl methacrylate/styrene Core-shell Latex by Emulsion Polymerization)

  • 강돈오;이내우;설수덕;이선룡
    • Elastomers and Composites
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    • 제37권1호
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    • pp.21-30
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    • 2002
  • 개시제 ammonium persulfate(APS)와 유화제 sodium dodecyl benzene sulfonate(SDBS)를 이용하여 methyl methacrylate(MMA), styrene(St), ethyl acrylate(EA)등의 단량체를 core(내부)와 shell(외부)의 폴리머성분이 다른 core-shell 폴리머를 합성하고 각 core-shell 폴리머에 대한 구조를 연구하였다. 한 입자의 내부와 외부의 고분자 조성이 다른 composite 라텍스는 고분자 블렌딩과 공중합의 물성과는 달리 한 입자 내에서도 상반된 두 가지 물성을 동시에 나타내는 특성으로 인하여 여러 산업 분야에 응용이 가능하다. 그러나, core-shell 라텍스를 제조할 때 반응중입자가 성장하는 과정에서 입자의 응집과 중합율이 떨어지고, 라텍스의 응용시 기계적 안정성이 문제점으로 되고 있다. 따라서 shell 중합시에 새로운 입자의 생성이 적고 중합중 안정성이 우수한 라텍스를 제조하기 위해 유화제농도, 개시제농도, 중합온도가 PMMA/PSt과 PSt/PMMA의 core-shell 구조에 미치는 영향과 중합 후 입도분석기(particle size analyzer; PSA) 및 투과전자현미경(transmission electron microscope; TEM)을 이용하여 실제 입자측정과 입자형태 특성을 확인하였으며 시차주사열량계(differential scanning calorimeter, DSC)를 이용하여 유리전이온도($T_g$)의 측정, 최저성막온도(minimum film formation temperature; MFFT), NaOH 첨가에 의한 가수 분해에 따르는 pH를 측정하여 core-shell의 새로운 특성을 확인하였다.

$CaCO_3$/Poly ethyl methacrylate를 이용한 무독성 혼합라텍스의 개발 (A Development of Nontoxic Composite Latex Using $CaCO_3$/PEMA)

  • 설수덕;이선룡;이내우
    • 한국안전학회지
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    • 제17권4호
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    • pp.133-139
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    • 2002
  • Core-shell polymers of inorganic/organic pair, which are consisted of both core and shell component, were synthesized by sequential emulsion polymerization using ethyl methacrylate (EMA) as a shell monomer and ammonium persulfate as initiator. We found that $CaCO_3$ core should be prepared by adding 2.0wt% SDBS(sodium dodecyl benzene sulfonate), $CaCO_3$ core/PEMA shell polymerization was carried out on the surface of $CaCO_3$ particle during EMA shell polymerization in the core-shell polymer preparation. The structure of core-shell polymer were investigated by measuring the degree on decomposition of $CaCO_3$ by HCI solution, thermal decomposition of polymer composite on thermogravimetric analyzer, glass transition temperature on differential scanning calorimeter, and morphology using scanning electron microscope.

Formation of Core-Shell Structure in BaTiO3 Grains

  • Kim, Chang-Hoon;Park, Kum-Jin;Yoon, Yeo-Joo;Kim, Young-Tae;Hur, Kang-Heon
    • 한국세라믹학회지
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    • 제46권2호
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    • pp.123-130
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    • 2009
  • To understand the formation of core-shell structure in $BaTiO_3$ (BT) grains in multilayer ceramic capacitors, specimens were prepared with BT powders mixed with Y and Mg, and their microstructures were investigated with scanning electron microscopy, x-ray diffractometry, and transmission electron microscopy. Microstructural investigation showed that Y dissolved easily in BT lattice to a certain depth inside of the grain, whereas Mg tended to stay at grain boundaries rather than become incorporated into BT. It was considered that in case of Y and Mg addition in a proper ratio, Y could play a dominant role in the formation of shell leading to a slight dissolution of Mg in the shell. Next, the effects of ball-milling conditions on the core-shell formation were studied. As the ball-milling time increased, the milled powders did not show a significant change in size distribution but rather an increase of residual strain, which was attributed to the milling damage. The increase in milling damage facilitated the shell formation, leading to the increased shell portion in the core-shell grain.

Application of Polystyrene/SiO2 Core-shell Nanospheres to Improve the Light Extraction of GaN LEDs

  • Yeon, Seung Hwan;Kim, Kiyong;Park, Jinsub
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.314.2-314.2
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    • 2014
  • To improve the optical and electrical properties of commercialized GaN-based light-emitting diodes (LEDs), many methods are suggested. In recent years, great efforts have been made to improve the internal quantum efficiency and light extraction efficiency (LEE) and promising approaches are suggested using a patterned sapphire substrate (PSS), V-pit embedded LED structures, and silica nanostructures. In this study, we report on the enhancement of photoluminescence (PL) intensity in GaN-based LED structures by using the combination of SiO2 (silica) nanospheres and polystyrene/SiO2 core-shell nanospheres. The SiO2 nanospheres-coated LED structure shows the slightly increased PL intensity. Moreover the polystyrene/SiO2 core-shell nanospheres-coated structure shows the more increase of PL intensity comparing to that of only SiO2 spheres-coated structure and the conventional structure without coating of nanospheres. The Finite-difference time-domain (FDTD) simulation results show corresponding result with experimentally observed results. The mechanism of enhancement of PL intensity using the coating of polystyrene/SiO2 core-shell nanospheres on LED surface can be explained by the improvement in extraction efficiency by both increasing the probability of light escape by reducing Fresnel reflection and by multiple scattering within the core-shell nanospheres.

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부직포 바인더용 Core-Shell 복합소재의 제조 (Manufacture of Core-Shell Composite Polymer Materials for Nonwoven binder)

  • 이선룡;임재길;설수덕
    • 접착 및 계면
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    • 제3권4호
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    • pp.27-36
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    • 2002
  • 다양한 가능을 가진 고분자 복합재료인 Core-shell 복합인자를 제조하여 부직포 바인더로 사용하기 위하여 유기/유기계 core-shell 에멀젼 중합을 시도하였다. 유기/유기계 Core-shell 중합으로 메틸메타아크릴레이트(MMA), 스티렌(St)의 core와 shell의 단량체, 개시제는 과황산암모늄(APS) 유화제는 도데실벤젠슬폰나트륨(SDBS)의 농도, 교반속도를 변화시켜 전환율, 분자량, 입자경과 입자형태, 유리전이온도, 인장강도를 측정하여 최적반응조건을 산출하였다. 1) PMMA, PSt core와 shell의 입자중합은 각각 개시제의 농도 $1.58{\times}10^{-3}mol/L$$4.0{\times}10^{-4}mol/L$가 최적이다. 2) PMMA/PSt의 PMMA core 중합에서 유화제의 농도는 $1.45{\times}10^{-5}mol/L$, PSt/PMMA의 PSt core 중합은 $2.91{\times}10^{-5}mol/L$가 최적이다. 3) 유화중합에 최적교반속도는 200 rpm이며, 입자안정성은 유화제 첨가량과 비례하여 증가하였다. 4) Core-shell 복합입자는 동일조성의 공중합체에 비하여 유리온도 조절이 용이하고, 인장강도값도 높게 측정되었다.

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무기/유기 Core-Shell 에멀젼 고분자의 합성 (Synthesis of Inorganic/Organic Core-Shell Polymer)

  • 김남석;김덕술;박근호
    • 한국응용과학기술학회지
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    • 제19권4호
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    • pp.265-272
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    • 2002
  • $CaCO_{3}$ absorbed sodium lauryl sulfate (SLS) surfactant was prepared, Core-shell polymers of inorganic/organic pair, which have both core and shell component, were synthesized by sequential emulsion polymerization using styrene(St) as a shell monomer and potasium persulfate (KPS) as an initiator, We found that when $CaCO_{3}$; core prepared by adding 2,0 wt% SLS, $CaCO_{3}$ core/PSt shell polymerization was carried out on the surface of $CaCO_{3}$ particle without forming the new PSt particle during St shell polymerization in the inorganic/organic core-shell polymer preparation, The structure of core-shell polymer were investigated by measuring the degree of decomposition of $CaCO_{3}$ using HCl solution, thermal decomposition of polymer composite using thermogravimetric analyzer and morphology by scanning electron microscope.

계면활성제 Sodium Dioctyl Sulfosuccinate (EU-DO133L)을 사용한 이산화규소/스티렌의 코어-셀 고분자의 합성 (Synthesis on the Core-Shell Polymer of Silicone Dioxide/Styrene Using Sodium Dioctyl Sulfosuccinate (EU-DO133L) as a Surfactant)

  • 김덕술;박근호
    • 한국응용과학기술학회지
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    • 제27권2호
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    • pp.183-187
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    • 2010
  • Core-Shell polymers of silicone dioxide-styrene system were prepared by sequential emulsion polymerization. In inorganic/organic Core-Shell composite particle polymerization, silicone dioxide adsorbed by surfactant sodium dioctyl sulfosuccinate (EU-DO133L) was prepared initially and then core silicone dioxide was encapsulated emulsion by sequential emulsion polymerization using styrene at the addition of potassium persulfate (KPS) as an initiator. We found that $SiO_2$ core shell of $SiO_2$/styrene structure was formed when polymerization of styrene was conducted on the surface of $SiO_2$ particles, and the concentration sodium dioctyl sulfosuccinate (EU-DO133L) was 0.5~2.0g. The structure of core-shell polymer were investigated by measuring to the thermal decomposition of polymer composite using thermogravimetric analyzer and morphology of latex by scanning electron microscope(SEM).

Preparation of Styrene-Ethyl acylate Core-shell Structured Detection Materials for aMeasurement of the Wall Contamination by Emulsion Polymerization

  • Hwang, Ho-Sang;Seo, Bum-Kyoung;Lee, Dong-Gyu;Lee, Kune-Woo
    • 한국방사성폐기물학회:학술대회논문집
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    • 한국방사성폐기물학회 2009년도 학술논문요약집
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    • pp.84-85
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    • 2009
  • New approaches for detecting, preventing and remedying environmental damage are important for protection of the environment. Procedures must be developed and implemented to reduce the amount of waste produced in chemical processes, to detect the presence and/or concentration of contaminants and decontaminate fouled environments. Contamination can be classified into three general types: airborne, surface and structural. The most dangerous type is airborne contamination, because of the opportunity for inhalation and ingestion. The second most dangerous type is surface contamination. Surface contamination can be transferred to workers by casual contact and if disturbed can easily be made airborne. The decontamination of the surface in the nuclear facilities has been widely studied with particular emphasis on small and large surfaces. The amount of wastes being produced during decommissioning of nuclear facilities is much higher than the total wastes cumulated during operation. And, the process of decommissioning has a strong possibility of personal's exposure and emission to environment of the radioactive contaminants, requiring through monitoring and estimation of radiation and radioactivity. So, it is important to monitor the radioactive contamination level of the nuclear facilities for the determination of the decontamination method, the establishment of the decommissioning planning, and the worker's safety. But it is very difficult to measure the surface contamination of the floor and wall in the highly contaminated facilities. In this study, the poly(styrene-ethyl acrylate) [poly(St-EA)] core-shell composite polymer for measurement of the radioactive contamination was synthesized by the method of emulsion polymerization. The morphology of the poly(St-EA) composite emulsion particle was core-shell structure, with polystyrene (PS)as the core and poly(ethyl acrylate) (PEA) as the shell. Core-shell polymers of styrene (St)/ethyl acrylate (EA) pair were prepared by sequential emulsion polymerization in the presence of sodium dodecyl sulfate (SOS) as an emulsifier using ammonium persulfate (APS) as an initiator. The polymer was made by impregnating organic scintillators, 2,5-diphenyloxazole (PPO) and 1,4-bis[5-phenyl-2-oxazol]benzene (POPOP). Related tests and analysis confirmed the success in synthesis of composite polymer. The products are characterized by IT-IR spectroscopy, TGA that were used, respectively, to show the structure, the thermal stability of the prepared polymer. Two-phase particles with a core-shell structure were obtained in experiments where the estimated glass transition temperature and the morphologies of emulsion particles. Radiation pollution level the detection about under using examined the beta rays. The morphology of the poly(St-EA) composite polymer synthesized by the method of emulsion polymerization was a core-shell structure, as shown in Fig. 1. Core-shell materials consist of a core structural domain covered by a shell domain. Clearly, the entire surface of PS core was covered by PEA. The inner region was a PS core and the outer region was a PEA shell. The particle size distribution showed similar in the range 350-360 nm.

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단계중합법에 의한 PMMA/PSt Composite Particle의 제조에 관한 연구 (h Study on the Preparation of PMMA/PSt Composite Particles by Sequential Emulsion Polymerization)

  • 이선룡;설수덕
    • 폴리머
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    • 제25권5호
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    • pp.617-624
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    • 2001
  • 음이온계 유화제를 사용하여 monomer pre-emulsion을 제조한 다음 ammonium persulfate를 개시제로 하여 단계 중합법에 의해 새로운 입자의 생성이 적고 중합 과정에서 안정성이 우수한 poly(methyl methacrylate)(PMMA)/polystyrene (PSt) 라텍스를 제조하였다. 본 연구에서는 shell 중합시에 새로운 입자의 생성이 적고 중합 중 안정성이 우수한 라텍스를 제조하기 위해 개시제농도, 유화제농도, 중합온도가 PMMA/PSt와 PSt/PMMA의 core-shell 구조에 미치는 영향을 알아보았다. 중합한 라텍스를 입도분석기 (particle size analyzer: PSA) 및 투과전자현미경(transmission electron microscope; TEM)을 이용하여 실제 입자측정과 입자형태 특성을 확인하였으며 시차주사열량계 (differential scanning calorimeter, DSC)를 이용하여 유리전이온도($T_g$)의 측정, 필름 조막성 (minimum film formation temperature: MFFT), NaOH 첨가에 의한 가수 분해에 따르는 pH를 측정하여 core-shell의 또 다른 특성을 확인하였다.

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열가역적인 Poly(vinylidene fluoride)/Propylene Carbonate(PC) 겔 시스템에서의 Pregea 상태 : 1. Core-Shell 모델 (Preset State of Thermoreversible Poly(vinylidene fluoride)/propylene Carbonate Gel System: 1. Core-Shell Model)

  • 박일현
    • 폴리머
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    • 제26권2호
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    • pp.227-236
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    • 2002
  • 열가역적인 polyvinylidene fluoride (PVDF)/propylene carbonate (PC) 의 매우 묽은 농도에서의 pregel 상태의 구조를 레이저 광산란법으로 조사한 결과 겔형성농도의 100배 이상 묽은 농도 조건에서도 PVDF 사슬은 낱개로 용해되어 있는 것이 아니라 많은 PVDF 사슬들이 응집된 거대한 구형 상태로 존재하며 이때의 응집체의 분산도는 상당히 낮으며 용액온도 $40^{\circ}C$에서 회전반경$R_G$ 는 232 nm, 동력학적 반경 $R_H$는 407 nm로 측정되었다. $R_H/R_G$=1.75의 커다란 비 값, 극소점을 갖는 정적 광산란 패턴 등으로부터 예측하건대 이 응집체의 구조는 core-shell 형태의 구형이며, 이때 내부 core의 반지름은 대략 215 nm, 외부 shell의 두께는 192 nm가 되며, shell 부분에서의 PVDF의 단량체 밀도는 core 부분의 단량체 밀도의 약 75% 수준에 머무르는 것으로 판명되었다.