• Title/Summary/Keyword: degree of etherification

Search Result 5, Processing Time 0.023 seconds

A Study on the Environmentally Friendly Water-Soluble Fiber (환경친화적인 수용성 섬유에 관한 연구)

  • Park, Jong-Jin;Gaur, Ankur;Song, Ho-Jun;Yoo, Seung-Kwan;Park, Jin-Won
    • Clean Technology
    • /
    • v.13 no.3
    • /
    • pp.201-207
    • /
    • 2007
  • Carboxymethylcellulose (CMC), which is water-soluble at room temperature, was synthesized from cellulose in this study. Experimental parameters included reaction temperature, time, concentration of NaOH, and monochloroacetic acid (MCA). In mercerization and etherification, solubility and degree of substitution (DS) increased when NaOH (or MCA) concentration increased and maximum solubility and DS were achieved when NaOH or MCA was 30%. The effect of MCA concentrations on the DS was larger than that of the NaOH concentration. Tensile strength of the CMC was decreased by the increases of reaction time, reagent concentration and reaction temperature. Tensile strength also decreased by NaOH and MCA. However, low decrease of tensile strength was observed in near neutral region.

  • PDF

A Study on the Water-soluble Fiber at the Room Temperature using Carboxymethylcellulose(CMC) Synthesis (Carboxymethylcellulose 제조공정을 이용한 상온에서의 수용성 섬유에 관한 연구)

  • Song, Ho-Jun;Choi, Youngmin;Park, Jin-Won
    • Clean Technology
    • /
    • v.11 no.2
    • /
    • pp.105-116
    • /
    • 2005
  • Carboxymethylcellulose(CMC) which is water soluble at room temperature was manufactured from the cellulose material in this study. Experimental parameters were reaction temperature, time and concentration of NaOH and monochloroacetic acid. CMC was tested for solubility, degree of substitution(D.S.) and tensile strength. The surface structure of CMC fiber was tested using scanning electron microscope(SEM). CMC manufactured from viscose rayon was affected by the chemical concentration rather then the reaction time and temperature. Also, degree of substitution is closely related to the solubility of the CMC.

  • PDF

Thermotropic Liquid Crystalline Behavoir of Hydroxypropyl Celluloses Containing Cyanoazobenzene and Their Photocrosslinked Films (시아노아조벤젠을 함유한 히드록시프로필 셀룰로오스 및 그 광가교 필름들의 열방성 액정 거동)

  • Kim, Hyo-Gap;Jeong, Seung-Yong;Yang, Si-Yeul;Ma, Yung-Dae
    • Polymer(Korea)
    • /
    • v.36 no.1
    • /
    • pp.76-87
    • /
    • 2012
  • Three kinds of hydroxypropyl cellulose (HPC) derivatives, [6-{4-(4-cyanophenylazo)phenoxy}]hexyloxypropyl celluloses (CAHPCs) with degree of etherification (DET) ranging from 0.4 to 3, fully substituted acrylic acid esters of HPC (HPCA) and CAHPCs (CAHPCAs) were synthesized. The crosslinked HPCA (HPCAG) and CAHPCAs (CAHPCAGs) were also prepared by exposing thermotropic mesophases of HPCA and CAHPCAs to UV light. Both CAHPCs and CAHPCAs with DET ${\leq}$ 1.2, as well as HPC and HPCA, formed enantiotropic cholesteric phases whose optical pitches(${\lambda}_m$'s) increase with temperature, wheras both CAHPCs and CAHPCAs with DET ${\geq}$ 1.4 showed monotropic nematic phases. CAHPCAGs with DET ${\leq}$ 1.2, as well as CAHPCAs with DET ${\leq}$ 1.2, exhibited reflection colors in a wide temperature range. On the other hand, CAHPCAGs with DET ${\geq}$ 1.4, as well as CAHPCAs with DET ${\geq}$ 1.4, showed Schileren textures typical of nematic phase, indicating that the liquid crystalline structure is virtually locked upon photocrosslinking. The isotropization temperatures($T_i$'s) of both CAHPCAs and CAHPCAGs decreased with increasing DET. The $T_i$ of CAHPCAG, however, was higher than that of CAHPCA at the same DET. Moreover, the temperature dependence of ${\lambda}_m$ of CAHPCAGs was much weaker than that of CAHPCAs.

Thermal and Solid State Assembly Behavior of Amphiphilic Aliphatic Polyether Dendrons with Octadecyl Peripheries

  • Chung, Yeon-Wook;Lee, Byung-Ill;Cho, Byoung-Ki
    • Macromolecular Research
    • /
    • v.16 no.2
    • /
    • pp.113-119
    • /
    • 2008
  • A series of amphiphilic dendrons n-18 (n: generation number, 18: octadecyl chain) based on an aliphatic polyether denderitic core and octadecyl peripheries were synthesized using a convergent dendron synthesis consisting of a Williamson etherification and hydroboration/oxidation reactions. This study investigated their thermal and self-assembling behavior in the solid state using differential scanning calorimetry (DSC), Fourier transform infrared (FT-IR) absorption spectroscopy, and small angle X-ray scattering (SAXS). DSC indicated that the melting transition and the corresponding heat of the fusion of the octadecyl chain decreased with each generation. FT-IR showed that the hydroxyl focal groups were hydrogen-bonded with one another in the solid state. DSC and FT-IR indicated microphase-separation between the hydrophilic dendritic cores and hydrophobic octadecyl peripheries. SAXS data analysis in the solid state suggested that the lower-generation dendrons 1-18 and 2-18 self-assemble into lamellar structures based upon a bilayered packing of octadecyl peripheries. In contrast, the analyzed data of higher-generation dendron 3-18 is consistent with 2-D oblique columnar structures, which presumably consist of elliptical cross sections. The data obtained could be rationalized by microphase-separation between the hydrophilic dendritic core and hydrophobic octadecyl peripheries, and the degree of interfacial curvature associated with dendron generation.

Photochromic Properties of Cellulose Derivatives Having Spirobenzopyran Group (스피로벤조피란을 포함하는 셀룰로오스 유도체의 광변색 특성)

  • Xiangdan, Li;Kim, Eun-Kyoung;Lee, Myong-Hoon
    • Polymer(Korea)
    • /
    • v.29 no.1
    • /
    • pp.25-31
    • /
    • 2005
  • Cellulose acetate derivatives containing 6-(p-hexyloxyphenyl)carbonyl spirobenzopyran (CA-COSP) were prepared from base-catalyzed etherification of cellulose acetate, and their physical and photochromic properties were characterized. The degree of substitution of COSP was calculated from the amount of residual hydroxyl groups in cellulose acetate measured by the $^1H$-NMR and UV spectrometric data. It was ranging from 0.87 to 45.5% depending on the reaction condition. UV/vis spectrometry of the resulting CA-COSP revealed that the polymer shows a reversible color change by changing its color from colorless to blue upon UV irradiation forming a merocyanine structure, and returning back again to colorless spiropyran structure by visible light or by heat. The rate of color change was faster in solution than in the film. In the more polar solvent, the more stable was the resulting merocyanine, and the slower was the rate of reverse reaction to spiropyran. Compared to COSP blended with cellulose acetate, in which a phase separation was observed for samples containing more than 0.9 wt% of COSP, up to 48 wt% of COSP could be blended in CA-COSP without phase separation.