• 제목/요약/키워드: polymer encapsulation

검색결과 104건 처리시간 0.026초

Effects of Simultaneous Bending and Heating on Characteristics of Flexible Organic Thin Film Transistors

  • Cho, S.W.;Kim, D.I.;Lee, N.E.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.470-470
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    • 2013
  • Recently, active materials such as amorphous silicon (a-Si), poly crystalline silicon (poly-Si), transition metal oxide semiconductors (TMO), and organic semiconductors have been demonstrated for flexible electronics. In order to apply flexible devices on the polymer substrates, all layers should require the characteristic of flexibility as well as the low temperature process. Especially, pentacene thin film transistors (TFTs) have been investigated for probable use in low-cost, large-area, flexible electronic applications such as radio frequency identification (RFID) tags, smart cards, display backplane driver circuits, and sensors. Since pentacene TFTs were studied, their electrical characteristics with varying single variable such as strain, humidity, and temperature have been reported by various groups, which must preferentially be performed in the flexible electronics. For example, the channel mobility of pentacene organic TFTs mainly led to change in device performance under mechanical deformation. While some electrical characteristics like carrier mobility and concentration of organic TFTs were significantly changed at the different temperature. However, there is no study concerning multivariable. Devices actually worked in many different kinds of the environment such as thermal, light, mechanical bending, humidity and various gases. For commercialization, not fewer than two variables of mechanism analysis have to be investigated. Analyzing the phenomenon of shifted characteristics under the change of multivariable may be able to be the importance with developing improved dielectric and encapsulation layer materials. In this study, we have fabricated flexible pentacene TFTs on polymer substrates and observed electrical characteristics of pentacene TFTs exposed to tensile and compressive strains at the different values of temperature like room temperature (RT), 40, 50, $60^{\circ}C$. Effects of bending and heating on the device performance of pentacene TFT will be discussed in detail.

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Polymeric nanoparticles as dual-imaging probes for cancer management

  • Menon, Jyothi U.;Jadeja, Parth;Tambe, Pranjali;Thakore, Dheeraj;Zhang, Shanrong;Takahashi, Masaya;Xie, Zhiwei;Yang, Jian;Nguyen, Kytai T.
    • Biomaterials and Biomechanics in Bioengineering
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    • 제3권3호
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    • pp.129-140
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    • 2016
  • This article reports the development of biodegradable photoluminescent polymer (BPLP)-based nanoparticles (NPs) incorporating either magnetic nanoparticles (BPLP-MNPs) or gadopentate dimeglumine (BPLP-Gd NPs), for cancer diagnosis and treatment. The aim of the study is to compare these nanoparticles in terms of their surface properties, fluorescence intensities, MR imaging capabilities, and in vitro characteristics to choose the most promising dual-imaging nanoprobe. Results indicate that BPLP-MNPs and BPLP-Gd NPs had a size of $195{\pm}43nm$ and $161{\pm}55nm$, respectively and showed good stability in DI water and 10% serum for 5 days. BPLP-Gd NPs showed similar fluorescence as the original BPLP materials under UV light, whereas BPLP-MNPs showed comparatively less fluorescence. VSM and MRI confirmed that the NPs retained their magnetic properties following encapsulation within BPLP. Further, in vitro studies using HPV-7 immortalized prostate epithelial cells and human dermal fibroblasts (HDFs) showed > 70% cell viability up to $100{\mu}g/ml$ NP concentration. Dose-dependent uptake of both types of NPs by PC3 and LNCaP prostate cancer cells was also observed. Thus, our results indicate that BPLP-Gd NPs would be more appropriate for use as a dual-imaging probe as the contrast agent does not mask the fluorescence of the polymer. Future studies would involve in vivo imaging following administration of BPLP-Gd NPs for biomedical applications including cancer detection.

탄산칼슘 /유기계 Core-Shell 입자의 제조와 물성에 관한 연구 (A Study of Synthesis and Property of $CaCO_3$/Organic Core-Shell Particle)

  • 설수덕
    • 폴리머
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    • 제34권1호
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    • pp.38-44
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    • 2010
  • 탄산칼슘/유기계 core-shell 입자를 제조하기 위해 core로는 침강성 탄산칼습을 사용하였고, shell로서는 여러 종류의 methyl methacrylate(MMA), ethyl acrylate(EA), n-butyl acrylate(BA), styrene(St), 2-ethylhexyl acylate(2-EHA)을 사용하여, 반응 온도 유화제, 개시제의 종류와 첨가량을 변화시킨 후에 유화중합을 시켜 최적의 유화중합 조건을 구하였다. 생성된 core-shell 입자의 구조는 FT-IR로, 입자크기와 형태는 입도 분석, SEM, TEM으로 각각 측정하였다. 그리고, 이 core-shell 입자에 부직포를 함침시켜 처리전후의 표면변화는 접촉각으로 확인하였다. 또한, 함침 처리 전후의 부직포/부직포 소재와 관능성 단량체 첨가한 부직포/부직포 소재의 박리 접착강도를 측정하여 상호 비교하였다. 탄산칼슘/유기 core-shell 입자 합성의 경우에는 유화제인 SDBS를 0.5 wt% 첨가한 탄산칼슘을 core로 하여 MMA와 0.1 wt% 농도의 APS를 단계적으로 주입하여 중합함으로써 탄산칼슘입자 표면에 단량체의 중합이 잘 유도될 수 있었으며 중합 도중에 새로운 중합체 입자의 생성이 적었다.

에멀션-내부 젤화에 의한 알긴산 칼슘 마이크로캡슐의 제조 및 특성 (Preparation and Characterization of Calcium Alginate Microcapsules by Emulsification-Internal Gelation)

  • 박수진;강진영
    • 폴리머
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    • 제29권4호
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    • pp.369-374
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    • 2005
  • 본 실험에서는 레몬 오일을 함유한 알긴산 칼슘 마이크로캡슐을 에멀션-내부 젤화법으로 제조하였으며, 방출실험을 통하여 아로마테라피의 가능성에 대해 살펴보았다. 적외선분광분석(FT-IR)과 시차주사열량계(DSC)를 통해 레몬 오일의 봉입 여부를 확인하였고, 제조된 마이크로캡슐의 직경 및 형태를 주사전자현미경(SEM)으로 관찰하였다. 제조된 마이크로캡슐은 평균 $4\~7$um직경 및 $50\~85\%$의 캡슐화를 보였으며, $37^{circ}C$에서 적외선 수분계(IMDB)를 통한 방출실험 결과. 알긴산 및 $CaCl_2$의 농도가 증가할수록 가교밀도가 증가하므로 레몬 오일의 방출률이 감소함을 관찰할 수 있었다. 또한, 물리적 압력을 통한 방출실험을 실시함으로써, 캡슐벽의 붕괴와 방출속도가 외부적인 요인에 의해 방출속도를 제어할 수 있음을 확인하였다.

Preparation of Cyclosporin A-loaded Nanoparticles Containing Ethyl Myristate or Chitosan and Pharmacokinetics in Rats

  • Nam, Dae-Sik;;Lee, Woo-Kyoung
    • Journal of Pharmaceutical Investigation
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    • 제37권1호
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    • pp.15-22
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    • 2007
  • An oil-in-water solvent evaporation method was used to prepare the cyclosporin A (CyA)-loaded nanoparticles varying in poly (D,L-lactide-co-glycolide) (PLGA) polymer (RG 502H, RG 503H) and the amount of additive ethyl myristate (EM) or chitosan (CS). The particles were characterized for drug loading and entrapment efficiency by HPLC, surface morphology by scanning electron microscopy, particle size by dynamic light scattering and surface charge by Zetapotential. The results showed drug loadings ranging from 10.9% to 15.8% with high encapsulation efficiency (82.0-97.8%). SEM and DLS studies showed discrete and spherical particles with smooth surfaces and mean size ranging 257.6-721.7 nm. The additive EM or CS did not change the mean sizes of the nanoparticles, whereas by the coating effect of CS, the Zetapotential values of the CS-added nanoparticles were moved to the more positive direction as the amount of CS was increased. From the pharmacokinetic analysis, the nanoparticles formulations showed the higher bioavailability and MRT than $Neoral^{\circledR}$ While little adding effect of EM or CS was detected in pharmacokinetic profile when RG 503H was used as polymer carrier, more noticeable different pharmacokinetic behaviors could be observed in case of RC 502H. EM incorporation was found to elevate the $K_{el}$, whereas CS coating resulted in the decrease of F and $K_{el}$, which seems to be due to the function of CS as a barrier and a mucoadhesive coating.

Development of Drug-Loaded PLGA Microparticles with Different Release Patterns for Prolonged Drug Delivery

  • Choi, Yeon-Soon;Joo, Jae-Ryang;Hong, Areum;Park, Jong-Sang
    • Bulletin of the Korean Chemical Society
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    • 제32권3호
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    • pp.867-872
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    • 2011
  • For the prolonged delivery and sustained release rates of low molecular weight drugs, poly(lactic-co-glycolic acid) (PLGA) microparticles containing the drug SKL-2020 have been investigated. On increasing polyvinyl alcohol (PVA) concentration (from 0.2% to 5%), the size of microparticles decreased (from $48.02{\mu}m$ to $10.63{\mu}m$) and more uniform size distribution was noticeable due to the powerful emulsifying ability of PVA. A higher drug loading (from 5% to 20%) caused a larger concentration gradient between 2 phases at the polymer precipitation step; this resulted in decreased encapsulation efficiency (from 34.19% to 25.67%) and a greater initial burst (from 61.71% to 70.05%). SKL-2020-loaded PLGA microparticles prepared with different fabrication conditions exhibited unique release patterns of SKL-2020. High PVA concentration and high drug loading led to an initial burst effect by rapid drug diffusion through the polymer matrix. Since PLGA microparticles enabled the slow release of SKL-2020 over 1 week in vitro and in vivo, more convenient and comfortable treatment could be facilitated with less frequent administration. It is feasible to design a release profile by mixing microparticles that were prepared with different fabrication conditions. By this method, the initial burst could be repressed properly and drug release rate could decrease.

단백질 캡슐화를 위한 동축 이중 노즐을 사용한 전기분무건조법 (Electrohydrodynamic Spray Drying Using Co-axial Nozzles for Protein Encapsulation)

  • 호환기;박세현;박철호;이종휘
    • 폴리머
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    • 제33권4호
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    • pp.353-357
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    • 2009
  • 분무건조는 약물의 입자 제조에 널리 사용되고 있는 효과적이고 안정적인 공정 중 하나이다. 과거 분무건조의 방법에서는 입자의 응집을 조절하기 쉽지 않았으며, 크기 조절에도 많은 어려움을 겪어 왔다. 특히 고분자 입자의 제조는 저분자 유기물질인 식품, 의약원료 등과 비교하여 상대적으로 제조하기 어려운 면이 있었다. 본 연구에서는 기존의 분무건조기를 개조하여 노즐에 전기장을 외부에서 가해 줌과 동시에 동축 이중 노즐을 사용하여 고분자 입자의 제조를 시도하였다. 내부 고분자 물질로는 폴리에틸렌글리콜과 폴리락타이드코글리코라이드를, 외부 물질로는 락토오스를 사용하였다. 그 결과 전기장을 사용하지 않는 분무건조에 비해 비교적 일정한 크기와 모양을 제조할 수 있었으며, 입자 간의 응집을 줄일 수 있음을 확인하였다. 전기분무건조된 PLGA 분말은 주로 $2{\sim}5{\mu}m$ 기인 둥근 모양의 입자로 구성되었다.

닥나무 뿌리 추출물을 함유하는 고분자 마이크로입자 제조 및 평가 (Preparation and Evaluation of Polymer Microspheres Containing Broussonetia Kazinoki Root Extract)

  • 임형준;이진영;김한별;김도훈;신송석
    • 대한화장품학회지
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    • 제39권2호
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    • pp.89-96
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    • 2013
  • 본 연구에서는 폴리에틸렌아디페이트와 폴리메틸메타크릴레이트로 구성된 고분자 마이크로입자에 닥나무 뿌리 추출물을 함유시켜 닥나무 뿌리 추출물의 안정도와 상용성을 성공적으로 향상시켰다. 마이크로입자를 구성하는 고분자의 비율에 따라 마이크로입자에 함유된 닥나무 뿌리 추출물의 장기안정도에 미치는 영향을 평가하였다. 폴리에틸렌아디페이트 마이크로입자의 물리적 강도를 높여주기 위하여 폴리메틸메타크릴레이트를 도입하였으며, 이는 마이크로입자에 안정화시킨 닥나무 뿌리 추출물의 안정도에는 큰 영향이 없었다. 광학현미경, 편광현미경, 주사전자현미경을 이용하여 고분자 마이크로입자의 물리적 안정도를 관찰하였고, in vitro 실험을 통하여 고분자 마이크로입자로 안정화된 닥나무 뿌리 추출물의 미백 효과도 잘 유지되고 있음을 확인하였다.

다공성 탄소층이 코팅된 하이브리드 표면 구조를 갖는 산소 환원 반응용 PtCo 합금 나노 촉매 (Hybrid PtCo Alloy Nanocatalysts Encapsulated by Porous Carbon Layers for Oxygen Reduction Reactions)

  • 장정희;모니카 샤르마;성후광;김순표;정남기
    • 한국재료학회지
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    • 제28권11호
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    • pp.646-652
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    • 2018
  • During a long-term operation of polymer electrolyte membrane fuel cells(PEMFCs), the fuel cell performance may degrade due to severe agglomeration and dissolution of metal nanoparticles in the cathode. To enhance the electrochemical durability of metal catalysts and to prevent the particle agglomeration in PEMFC operation, this paper proposes a hybrid catalyst structure composed of PtCo alloy nanoparticles encapsulated by porous carbon layers. In the hybrid catalyst structure, the dissolution and migration of PtCo nanoparticles can be effectively prevented by protective carbon shells. In addition, $O_2$ can properly penetrate the porous carbon layers and react on the active Pt surface, which ensures high catalytic activity for the oxygen reduction reaction. Although the hybrid catalyst has a much smaller active surface area due to the carbon encapsulation compared to a commercial Pt catalyst without a carbon layer, it has a much higher specific activity and significantly improved durability than the Pt catalyst. Therefore, it is expected that the designed hybrid catalyst concept will provide an interesting strategy for development of high-performance fuel cell catalysts.

Nafion 기반 IPMC 응용 및 개발 동향 (Trends of Nafion-based IPMC Application and Development)

  • 호동해;조수영;최윤영;최영진;조정호
    • 세라미스트
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    • 제23권1호
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    • pp.16-26
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    • 2020
  • Recently, polymer-metal composite (IPMC)-based ionic artificial muscle has been drawing a huge attention for its excellent soft actuator performance having outstanding soft actuator performance with efficient conversion of electrical energy to mechanical energy under low working voltage. In addition, light, flexible and soft nature of IPMC and high bending strain response enabled development of versatile sensor application in association with soft actuator. In this paper, current issues of IPMC were discussed including standardizing preparation steps, relaxation under DC bias, inhibiting solvent evaporation, and improving poor output force. Solutions for these drawbacks of IPMC have recently been suggested in recent studies. After following explanation of the IPMC working mechanism, we investigate the main factors that affect the operating performance of the IPMC. Then, we reviewed the optimized IPMC actuator fabrication conditions especially for the preparation process, additive selection for a thicker membrane, water content, solvent substitutes, encapsulation, etc. Lastly, we considered the pros and cons of IPMCs for sensor application in a theoretical and experimental point of view. The strategies discussed in this paper to overcome such deficiencies of IPMCs are highly expected to provide a scope for IPMC utilization in soft robotics application.