• Title/Summary/Keyword: Liquid Crystalline

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Effect of Linkage Groups on the Properties of Semi-flexible Liquid Crystalline Polymers (연결기가 반 유연성 액정중합체의 물성에 미치는 영향)

  • Park, Jong-Ryul;Yoon, Doo-Soo;Bang, Moon-Soo
    • Applied Chemistry for Engineering
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    • v.26 no.4
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    • pp.445-451
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    • 2015
  • Semi-flexible liquid crystalline polymers containing a mesogenic group and an octamethylene flexible spacer in the main chain were synthesized by solution polycondensation. The mesogenic group in the polymer consists of four aromatic rings connected by ester and ketone, ether, sulfide, methylene, sulfone, or isopropylidene linkage groups. This paper discusses effects of the central linker of the mesogenic group on polymer properties. The structures and properties of synthesized polymers were investigated by $^1H$-NMR, FT-IR, differential scanning calorimeter (DSC), thermogravimetric analyzer (TGA), X-ray diffractometer (XRD), and polarizing optical microscope (POM). Polymers having bent linkage groups exhibited low thermal transition temperatures, narrow mesophase temperature ranges, low liquid crystallinity, and good solubilities in organic solvents, while those having bulky linkage groups were amorphous and exhibited high glass transition temperatures.

Determination of Tensile Modulus of PHB/PEN/PET Fiber Using Modified Halpin-Tsai Equation (변형 Halpin-Tsai식에 의한 PHB/PEN/PET 섬유의 탄성률 예측)

  • 정봉재;김성훈;이승구;전한용
    • Polymer(Korea)
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    • v.24 no.6
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    • pp.810-819
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    • 2000
  • Poly(p-hydroxybenzoate) (PHB)/poly(ethylene terephthalate) (PET) 8/2 thermotropic liquid crystalline copolyester, poly(ethylene 2,6-naphthalate) (PEN), and PET ternary blend was spun to fiber by melt spinninB process, and tensile properties of the fibers were measured. The matrix of the fibers, PET and PEN, were dissolved in ο-chlorophenol at 55$^{\circ}C$ for 2 hours, and the liquid crystalline polymer fibrils were observed using a scanning electron microscope. Halpin-Tsai equation for modulus calculation of short fiber reinforced composite and the rule of mixture for continuous reinforcement composite were modified, and the tensile modulus were calculated and compared with experimental modulus. To minimize difference between the theoretical and the experimental moduli, dimensionless viscosity constant (K) was given and used to modify two equations. The theoretical tensile modulus using the newly modified equations presentel a similar to the experimental tensile modulus of composite, and the modified equations presented a unique way to determine the tensile modulus of the liquid crystalline polymer reinforced thermoplastic composites.

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Synthesis and Properties of Liquid Crystalline Polyesters with X-shaped Mesogenic Group in Main Chain (주사슬에 X-자 모양의 메소젠기를 갖는 액정폴리에스터의 합성 및 성질)

  • Park, Jong-Ryul;Cho, Kuk-Young;Bang, Moon-Soo
    • Applied Chemistry for Engineering
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    • v.25 no.1
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    • pp.47-52
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    • 2014
  • A series of liquid crystalline polyesters containing X-shaped mesogenic groups in main chain were synthesized through the solution polymerization of 2,5-di(4-substituted benzoate)hydroquinones and 4,4'-dicarboxy-1,8-diphenoxyoctane. The structures and properties of synthesized polymers were investigated by $^1H$-NMR, FT-IR, differential scanning calorimetry (DSC), thermogravimetry analysis (TGA), polarized optical microscopy (POM) and wide angel X-ray diffraction (WXRD). Inherent viscosities (${\eta}_{inh}$) of polymers were measured between 0.35 and 0.66 dL/g in 1,1,2,2-tetrachloroethane, and they were easily soluble in most of organic solvents used for this experiment. All polymers revealed relatively low melting transition temperature ($T_m$) and crystallinity, and also showed thermotropic nematic liquid crystallinity when they were heated to their melting temperatures. These properties of polymers were presumably due to the presence of the bulky substituting groups on the hydroquinone unit in mesogenic group.

Liquid Crystalline Polymer for the Alignment of Ferroelectric Liquid Crystal Display (강유전정 액정 디스플레이의 배향을 위한 액정성 고분자)

  • Jin, Sung-Ho;Jeon, Young-Jae;Lee, Jong-Chun;Kim, Gang
    • Korean Journal of Materials Research
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    • v.10 no.5
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    • pp.350-353
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    • 2000
  • Thermotropic liquid crystalline polymer(LCP) has been used for the alignment of ferroelectric liquid crystal (FLC) molecules and the surface morphology of the resulting polymeric thin film has been observed by atomic forced microscope. The uniform alignment of FLC molecules on the surface of thermotropic LCP thin film was obtained even though microgroove structures were not formed. The contrast ratio of sample cell was about 23:1 including two polarizers and a good memory capability due to the bistability of FLC was obtained. After AC field stabilization at 20V, the typical stripe-shaped patterns appeared.

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Synthesis and Physical Properties of Bioc'ompatible and Biodegradable Chitin Derivatives V. -Biodegradation of liquid Crystalline Chitin Derivatives by Lysozyme- (생체적합성과 생분해성을 갖는 키틴유도체의 합성과 물성V -라이소자임에 의한 액정성 키틴 유도체의 생분해특성-)

  • 김선정;이영무
    • Journal of Biomedical Engineering Research
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    • v.15 no.1
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    • pp.89-96
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    • 1994
  • The ether-type chitin derivatives were synthesized by reacting chitin with chloropropane, propylene oxide and chloropropane diol to form propyl chitin(PPC), hydroxypropyl chitin(HPC) and dihydroxypropyl chitin(DHPC). These derivatives formed a lyotropic cholesteric liquid crystallinity in concentrations over 30 wt% solution in formic acid (99%). Cast films from liquid crystalline solutions were degraded by lysozyme in pseudo-extra cellular tluid(PECF)solutions, at pH 1.2, pH 6.7 and pH 8.2. Three ether-type chitin derivatives rapidly degraded within the first week, and showed a decreased mechanical strength in neutral pH range. Dihydroxypropyl chitin showed the best biodegradation among these derivatives.

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Pseudo Liquid Crystallinity and Characteristics of PHB/PEN/PET Melt Blend (PHB/PEN/PET 삼상계 용융혼합물의 의사액정상 및 특성연구)

  • 박재기;정봉재;김성훈
    • Polymer(Korea)
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    • v.24 no.1
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    • pp.113-123
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    • 2000
  • Poly(p-hydroxybenzoate) (PHB)/poly(ethylene terephthalate) (PET) 8/2 thermotropic liquid crystalline copolyester, poly(ethylene 2,6-naphthalate) (PEN) and PET were mechanically blended to obtain the pseudo liquid crystalline (LC) phase of ternary blends. The torque values of blends with increasing PHB content were abruptly decreased above 40 wt% of PHB content, because the melt viscosity of ternary blends decreased. Tensile strength and initial modulus of blends containing above 30 wt% PHB were improved with increasing PHB content. Tensile strength and modulus of fiber were increased with PHB contents and take-up speed. Degree of transesterification and randomness of blends were increased with blending time. The blend of 40 wt% PHB was shown pseudo LC phase in the polarized optical photographs. Crystallinity of PHB/PEN/PET ternary blend were increased with PHB content.

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Synthesis and Liquid Crystalline Properties of the Compounds Consisting of a Schiff Base Type Mesogen and a Dyad Type Aromatic Ester Structure Interconnected Through the Central Hexamethylene Spacer

  • Jung-Il Jin;Hyo-Seok Kim;Jin-Wook Shin;Bong Young Chung;Byung-Wook Jo
    • Bulletin of the Korean Chemical Society
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    • v.11 no.3
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    • pp.209-214
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    • 1990
  • A series of compounds consisting of 4'-oxybenzylidene-4-n-butylaniline, a mesogen, and a p-substituted phenoxyterephthaloyl structure a non-mesogen, interconnected through a central hexamethylene spacer were synthesized and their thermal behavior and liquid crystallinity were studied. p-Substituents included in this study are H, Cl, CN, $NO_2,\;n-C_4H_9O$ and phenyl groups. The compounds having phenyl and $n-C_4H_9O$ substituents are enantiotropic and form smectic-A(SA) and nematic (N) phases. The compound with $NO_2$ substituent is monotropic and forms only a nematic phase on heating the solid, whereas it forms nematic as well as $S_A$ phases on cooling the isotropic liquid. The rest compounds were found to be non-liquid crystalline. This is in great contrast to the fact that the monomesogenic model compound 4'-n-hexyloxybenzylidine-4-n-butylaniline forms $S_B,\;S_C,\;S_A$ and N phases enantiotropically.