• 제목/요약/키워드: functional microcapsule

검색결과 16건 처리시간 0.02초

감성물질의 마이크로캡슐화에 의한 감성기능 섬유의 개발(III) -방향 기능 섬유- (Development of Susceptible Functional Fibers Using Microencapsulation of Susceptible Materials(III) ―Fragrant Functional Fibers―)

  • Kim, Moon Sik;Park, Soo Min
    • 한국염색가공학회지
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    • 제8권4호
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    • pp.11-18
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    • 1996
  • Natural functional compound in the textile finishing for health and amenity using fragrant material have been applied by microencapsulation method. The microcapsules containing fragrant materials as functional compound were produced by in situ polymerization using urea-formaldehyde prepolymer. The average diameter of microcapsules is 2.75$\mu$ and particle size ranges over 0.5~10$\mu$. Fragment material is extracted approximatly proportioned from microcapsule at room temperature. The adsorption of microcapsule was improved by pretreatment of cationic agent. Fragrant materials in microcapsule was revealed to have long release time.

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기능성 미분말의 제조공정에 관한 연구 : I. 분무건조법에 의한 microcapsule 제조 (Preparation process of functional particles : I. Preparation of microcapsule by spray drying)

  • 정철원;허화범;박종현;신건철
    • 한국결정성장학회지
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    • 제6권4호
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    • pp.521-531
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    • 1996
  • 분무건조법을 이용하여 무기질막 microcapsule과 무기질/유기질막 microcapsule을 제조하였다. 무기질막 microcapsule은 core 물질로 $K_{4}SO$와 clay shell 물질로 colloidal silica를 사용하였고, 무기질/유기질막 microcapsule은 core 물질로 상기 제조된 무기질막 microcapsule을 shell 물질로는 ethyl cellulose를 사용하여 각각의 microcapsule를 제조하였다. 제조된 microcapsule이 기능성을 갖기 위하여는 구형의 균일한 표면과 세공용적이 매우 중요하다. 무기질막 microcapsule인 경우 core/shell의 체적비가 0.3/0.7인 경우 구형의 균일한 표면의 microcapsule이 제조되었으며, 무기질/유기질막 microcapsule인 경우, 무게비가 0.76/0.24일 때 균일한 표면을 갖는 microcapsule이 제조되었다. 무기질/유기질막 microcapsule인 경우, 무기질막 microcapsule보다 세공용적이 감소하였고, shell물질(ethyl cellulose)의 양이 증가할수록 피복이 균일하게 되며, 세공용적도 감소하였다.

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기능성 오일을 함유하는 폴리우레탄 마이크로캡슐의 제조 및 분석 (Preparation and Characterization of Polyurethane Microcapsules Containing Functional Oil)

  • 김인회;서재범;김영준
    • 폴리머
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    • 제26권3호
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    • pp.400-409
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    • 2002
  • 기능성 오일 (citronella oil)을 함유하는 폴리우레탄 마이크로 캡슐을 계면중합을 이용하여 tolulene 2,4-diisocyanate (TDI)와 ethylene glycol (EG)로부터 제조하였으며 제조된 마이크로캡슐을 적외선분광분석, 자외선분광분석, 입도분석기, 열중량측정기, 주사전자현미경을 이용하여 분석하였다. 마이크로캡슐의 제조시 이용된 분산제의 농도 및 교반속도와 같은 변수가 제조된 마이크로캡슐의 입자크기 및 분포에 미치는 영향을 조사하였다. 또한, 적외선분광분석을 통해 citronella 오일이 성공적으로 캡슐화되었음을 알 수 있었고 열중량측정으로 마이크로캡슐은 약 $220^{\circ}C$ 정도까지 안정함을 알 수 있었다. 마이크로캡슐을 메탄올 용매에 넣어 캡슐 속의 citronella 오일의 방출거동을 자외선분광분석을 통해 조사하였다. Citronella 오일의 방출양은 캡슐 제조 시 적용된 교반속도 및 분산제의 농도를 증가시킴에 따라 증가하였다. Citronella 오일을 함유하는 마이크로캡슐은 우수한 방충효과를 나타내었다.

Droplet 유동을 이용한 마이크로캡슐의 제작 (Fabrication of Functional Microcapsule for Drug Delivery by using Droplet Phase Flow)

  • 정은호;;김일;고정상;김경천
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2005년도 추계학술대회 논문집
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    • pp.89-92
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    • 2005
  • A microcapsule for drug delivery was successfully produced by utilizing the flow-through droplet-based supramolecular self-assembly in a crossed microchannel network. The PS-b-PMMA block copolymer synthesized atom transfer radical polymerization (ATRP) was initially formed as microdroplets and after the evaporation process it turned to spherical capsule by polymer self-assembly of the micro domains. The characteristics were studied using various analysis methods.

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Droplet 유동을 이용한 마이크로캡슐의 제작 (Fabrication of Functional Microcapsule for Drug Delivery by using Droplet Phase Flow)

  • 정은호;김일;고정상;김경천
    • 한국가시화정보학회지
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    • 제4권2호
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    • pp.6-10
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    • 2006
  • The functional spherical microcapsules were produced through the innovative conjunction of the well-defined amphiphilic block copolymer and the stable droplet phase flow in the micro chemical plant. The microcapsules were formed to have hollow inner cavity and outer surface wall with nano-pores. To examine the potential of encapsulating foreign biochemical molecules, Congo-red dye was loaded into the microcapsule. The release performance in the specific surroundings such as temperature, pH and time was evaluated quantitatively.

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감성물질의 마이크로캡슐화에 의한 감성기능 섬유의 개발(II) -감광변색 기능섬유- (Development of Susceptible Functional Fibers using the Microcapsule of Susceptible Materials(II) ―Photochromic functional fibers―)

  • Kim, Moon Sik;Park, Sun Ju;Lee, Shin Hee;Park, Soo Min
    • 한국염색가공학회지
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    • 제8권1호
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    • pp.73-82
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    • 1996
  • The photochromic dye(spiroxazine, Blue) as a susceptible material was synthesized by condensing 1-nitroso-$\beta$-naphthol with indoline. The melting point of the synthesized spiroxazine dye was 254$^{\circ}C$. Irradiation with ultraviolet light had effect on reversible coloration reaction. The photochromic dye microcapsules were produced by in situ polymerization using urea-formaldehyde prepolymer. The average diameter of the microcapsule was 2.94$\mu$m. The dyeability and washing fastness of the photochromic microcapsule fibers were increased by the pretreatment of cationic agent.

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기능성 microsphere의 개발(II) - EVA Microsphere의 표면개질과 특성 - (Development of Functional Microsphere( II ) - Surface Modification and Properties of EVA Microsphere -)

  • 김혜인;박형섭;박수민
    • 한국염색가공학회지
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    • 제17권3호
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    • pp.26-33
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    • 2005
  • EVA microsphere was prepared by a thermally induced phase separation. EVAL microsphere was made by a saponification on sheath of EVA microsphere. And microcapsule with EVA core-PU shell structure was synthesized by interfacial polymerization using diisocyanates with PEG in gelatin aqueous solution as the stabilizing agent. The effects of chemical structure of diisocyanate on the average particle size and distribution, morphology, color strength and friction fastness of core-shell particles were investigated to design microcapsule. The friction fastness of the fabrics printed with EVA core-PU shell microcapsules had the 4-5 grade.

감성물질의 마이크로캡슐화에 의한 감성기능 섬유이 개발(I) ―감광변색 기능섬유― (Development of Susceptible Functional Fibers using Microcapsule of Susceptible Materials(I) ―Photochromic functional fibers―)

  • Kim, Moon Sik;Park, Sun Ju;Park, Soo Min
    • 한국염색가공학회지
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    • 제7권4호
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    • pp.97-104
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    • 1995
  • The photochromic dyes(spiroxazine) as a susceptible material were synthesized by condensing 1-nitroso-$\beta$-naphthol with piperidine. The melting point of the synthesized spiroxazine dye was 245$^{\circ}C$. Irradiation with ultraviolet light had effect on reversible coloration reaction. The photochromic dye microcapsules were produced by interfacial precipitation method using polyvinylalcohol and ethylcellulose. The average diameter of microcapsules was 5.4$\mu$m. The dyeability and fastness of dyeings of the microcapsule fibers were increased by pretreatment of the cationic agent.

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마이크로 캡슐을 이용한 방충 기능성 모르타르 및 콘크리트의 개발 (Development of Anti-Insect Mortar and Concrete using Microcapsule)

  • 박석균;유완재;김기수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 가을 학술발표회 논문집
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    • pp.523-526
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    • 2003
  • Functions of the building structures are recently expended, because the structures are getting larger and people's indoor staying times are getting longer. Therefore, various functional materials such as yellow mud, carbon soot, and jade are widely used. But functions of those materials have not permanent and continued an effect. Specially, the development of construction materials containing anti-insect is highly important to delight the environment of residence. This research try to examine to develop the mortar and concrete which contain microcapsules with long-term effect of anti-insect.

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마이크로캡슐의 제조와 그 응용(폴리락티드 마이크로캡슐) (Preparation of Microcapsules and Their Application (Poly (L-lactide) Microcapsule))

  • 홍기정;박수민
    • 한국염색가공학회지
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    • 제10권2호
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    • pp.29-36
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    • 1998
  • Poly(L-lactide) microcapsules containing hydrophilic penetrate were prepared by interfacial precipitation method through solvent evaporation from w/o/w emulsion. Effect of four determinative process parameters on the particle size distributions, morphologies, and release properties of microcapsules coated with poly(L-lactide) was investigated. Moreover, susceptible functional cotton fabrics treated with the mentioned microcapsules were prepared and laundry test up to 15 times were done to determine fastness properties. As a result, the prepared poly(L-lactide) microcapsules with a more sharp-distributive, rounder, and more permeable membranes could be prepared by means of protective colloid concentration, solution volume and stirring rate.

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