• Title/Summary/Keyword: surface grafting

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Effect of Grafting Cultivation on the Growth of Hot Pepper (고추 접목재배가 생육에 미치는 영향)

  • Kim Eun-Hyun;Kim Hak-Jin;Kwon Byung-Sun;Lim June-Taeg;Hyun Kyu-Hwan;Kim Do-Young;Shin Dong-Young
    • Korean Journal of Plant Resources
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    • v.18 no.1
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    • pp.78-84
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    • 2005
  • Charactertistics of growth from graft induced three stock of red pepper cultivar were analysed. R-safe rootstock was more higher and vigorous than that of the Yeok kang, Konesian hot cultivar at seedling stage and had good characteristics for grafting in the space of cut surface and the amount of sap released. Numbers of branches were more numerous in the grafted plants than those of non-grafted as grafting affected their growths in the process of branching. There was no distinct difference in plant height among the different rootstock. However the R-safe rootstock showed considerably high growth in the 41st days after grafting. Grafting was effective in the early flowering and the R-safe was the earliest in flowering because of it's good growth under the low temperature.

Factors Affecting the Grafting of Aminopropyltriethoxysilane in Swelling Clay Materials (Clay의 Aminopropyltriethoxysilane 그라프트에 영향을 미치는 인자)

  • Shanmugharaj, A.W.;Lee, Kyong-Yop;Ryu, Sung-Hun
    • Elastomers and Composites
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    • v.41 no.4
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    • pp.238-244
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    • 2006
  • Functionalization of montmorillonite clay has been done using 3-aminopropyltriethoxy silane using water as a dispersing medium. Qualitative evidence of the presence or silane attached to the clay surface has been identified using Fourier transform infrared spectroscopy (FT-IR). Increase in silane concentration decreases the adsorbed/intercalated ratio calculated using differential thermogravimetric analysis (DTG). Average d-spacing calculated using X-ray diffraction initially increases with silane concentration and decreases slightly at higher silane concentration. The influence of processing temperature on the silane functionalization of clay has also been investigated and it shows that chemical grafting of silane on the clay surface is observed with increasing processing temperature.

Surface Modification Studies by Atomic Force Microscopy for Ar-Plasma Treated Polyethylene

  • Seo, Eun-Deock
    • Macromolecular Research
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    • v.10 no.5
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    • pp.291-295
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    • 2002
  • Atomic force microscopy(AFM) was used to study the polyethylene(PE) surfaces grafted and immobilized with acrylic acid by Ar plasma treatment. The topographical images and parameters including RMS roughness and Rp-v value provided an appropriate means to characterize the surfaces. The plasma grafting and immobilization method were a useful tool for the preparation of surfaces with carboxyl group. However, the plasma immobilization method turned out to have a limitation to use as a means of preparation of PE surface with specific functionalities, due to ablation effect during the Ar plasma treatment process.

Surface Modification and Fibrovascular Ingrowth of Porous Polyethylene Anophthalmic Implants

  • Yang, Hee-Seok;Park, Kwi-Deok;Son, Jun-Sik;Kim, Jae-Jin;Han, Dong-Keun;Park, Byung-Woo;Baek, Se-Hyun
    • Macromolecular Research
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    • v.15 no.3
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    • pp.256-262
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    • 2007
  • The purpose of this study was to determine the effect of surface modification on the fibrovascular ingrowth into porous polyethylene (PE) spheres ($Medpor^{(R)}$), which are used as an anophthalmic socket implant material. To make the inert, hydrophobic PE surface hydrophilic, nonporous PE film and porous PE spheres were subjected to plasma treatment and in situ acrylic acid (AA) grafting followed by the immobilization of arginine-glycine-aspartic acid (RGD) peptide. The surface-modified PE was evaluated by performing surface analyses and tested for fibroblast adhesion and proliferation in vitro. In addition, the porous PE implants were inserted for up to 3 weeks in the abdominal area of rabbits and, after their retrieval, the level of fibrovascular ingrowth within the implants was assessed in vivo. As compared to the unmodified PE control, a significant increase in the hydrophilicity of both the AA-grafted (PE-g-PAA) and RGD-immobilized PE (PE-g-RGD) was observed by the measurement of the water contact angle. The cell adhesion at 72 h was most notable in the PE-g-RGD, followed by the PE-g-PAA and PE control. There was no significant difference between the two modified surfaces. When the cross-sectional area of tissue ingrowth in vivo was evaluated, the area of fibrovascularization was the largest with PE-g-RGD. The results of immunostaining of CD31, which is indicative of the degree of vascularization, showed that the RGD-immobilized surface could elicit more widespread fibrovascularization within the porous PE implants. This work demonstrates that the present surface modifications, viz. hydrophilic AA grafting and RGD peptide immobilization, can be very effective in inducing fibrovascular ingrowth into porous PE implants.

Effect of Surface Treatment Condition of Aminosilane on Ethylene Polymerization of Supported Metallocene (아미노실란 표면 처리 조건이 담지메탈로센 촉매의 에틸렌 중합에 미치는 영향)

  • Lee, Sang Yun;Lee, Jeong Suk;Ko, Young Soo
    • Korean Chemical Engineering Research
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    • v.53 no.3
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    • pp.397-400
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    • 2015
  • The effects of surface treatment method of unreacted N-[3-(trimethoxysilyl)propyl]ethylenediamine (2NS), $N^1$-(3-trimethoxysilylpropyl)diethylenetriamine (3NS), and 3-cyanopropyltriethoxysilane (1NCy) after grafting on the surface of silica and of the surface treatment temperature on ethylene polymerization were investigated. The Zr content of supported catalyst employing filtering method was higher than that of washing method, and the activities of supported catalysts prepared by washing method were higher than those of filtering methods significantly. Regardless of surface treatment methods the activities were in order by $SiO_2/2NS/(n-BuCp)_2ZrCl_2>SiO_2/1NCy/(n-BuCp)_2ZrCl_2>SiO_2/3NS/(n-BuCp)_2ZrCl_2$. The ethylene polymerization activity was increased as the surface treatment temperature of aminosilane on silica increased.

Sonochemical Grafting of Poly(vinyl alcohol) onto Multiwall Carbon Nanotubes in Water (초음파를 이용한 PVA에 의한 다중벽 탄소나노튜브의 수상 그래프팅)

  • Kim, Yeongseon;Baeck, Sung Hyeon;Shim, Sang Eun
    • Polymer(Korea)
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    • v.38 no.3
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    • pp.378-385
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    • 2014
  • Multiwall carbon nanotubes (MWCNTs) were modified with a water soluble polymer, poly(vinyl alcohol), PVA, using a simple ultrasonic wave in water. Under the irradiation of ultrasound, PVA chains were severed as macroradicals and instantly grafted onto the surface of MWCNTs due to the radical scavenging effect of MWCNTs. To control the grafting PVA onto MWCNTs, the ultrasonication power and irradiation time were changed from 300 to 500 W and from 10 to 50 min, respectively. The grafted PVA onto MWCNTs was confirmed by FTIR, TGA, SEM, and TEM. Dispersion stability of the modified MWCNTs was monitored by Turbiscan. The amount of grafted PVA on MWCNTs increased with the increase in the sonication power and irradiation time. The grafted PVA on MWCNTs induced the improved dispersion stability of the modified MWCNTs in water. These findings exhibit that ultrasound can be readily used for the grafting polymer chains on MWCNTs.

Radiation Grafting of Flame Retardant to Polyester/Cotton Blend

  • Kong, Young-Kun;Chang, Hun-Sun;Lee, Jong-Kwang;Park, Jai-Ho
    • Nuclear Engineering and Technology
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    • v.12 no.1
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    • pp.1-8
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    • 1980
  • The grafting studies were concentrated on working out the methodology for radiation of flame retardants to polyester/cotton (65/35) blend fabric. The Fyrol 76 was used as a flame retardant in develping methodology for localizing flame retardants on the surface of the blend fabric. By judicious control of the swelling conditions, time_of contact with the monomer, and dose rate, locating the graft in the fiber became possible. The yield of the graft polymerization was depended upon the total dose and the preswelling conditions. Oxygen Index was used to evaluate the effect of the location of Fyrol 76 and other flame retardants within the surface upon the flame retardance efficiencies. To get a better flame retardance efficiency by :the localized grafting of Fyrol 76 to polyester/cotton blend fabric, a technique of one step processing at room temperature was developed substituting the ordinary two-step processing at high temperature.

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Synthesis of Aminated Hollow PP-g-GMA Fibrous Ion-Exchanger for Separation of Urokinase (유로키나제 분리를 위한 아민화 HPP-g-GMA 중공사 이온교환체의 합성에 관한 연구)

  • 황택성;이진혁
    • Polymer(Korea)
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    • v.26 no.2
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    • pp.160-167
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    • 2002
  • We synthesized HPP-g-GMA copolymer using pre-irradiation method by E-beam and aminated HPP-g-GMA using amination reaction. Degree of grafting increased with increasing GMA monomer concentration and showed the maximum value of 130% at 1.46 M of GMA. The degree of amination increased with increasing the degree of grafting. When the degree of grafting was 100%, degree of amination showed the maximum value of 37.4%. The ion exchange capacity of aminated HPP-g-GMA was about 3.78 meq/g, and it showed remarkable adsorption ability of hollow fiber ion exchanger. Through the BET analysis, the surface area of aminated HPP-g-GMA was 54.83 $\m^2/g$ and the mean pore size was $26\AA$. These showed the decrease of surface area and the slight increase of the mean pore size. SEM results show that the thickness of fiber increased after the step of reaction and there pore blocking phenomena was not observed. The aminated HPP-g-GMA was synthesized successfully and found to be suitable for the adsorption and separation of anion.

Evaluation of Porous PLLA Scaffold for Chondrogenic Differentiation of Stem Cells

  • Jung, Hyun-Jung;Park, Kwi-Deok;Ahn, Kwang-Duk;Ahn, Dong-June;Han, Dong-Keun
    • Proceedings of the Polymer Society of Korea Conference
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    • 2006.10a
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    • pp.268-268
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    • 2006
  • Due to their multipotency, stem cells can differentiate into a variety of specialized cell types, such as chondrocytes, osteoblasts, myoblasts, and nerve cells. As an alternative to mature tissue cells, stem cells are of importance in tissue engineering and regenerative medicine. Since interactions between scaffold and cells play an important role in the tissue development in vitro, synthetic oligopeptides have been immobilized onto polymeric scaffolds to improve specific cell attachment and even to stimulate cell differentiation. In this study, chondrogenic differentiation of stem cells was evaluated using surface-modified PLLA scaffolds, i.e., either hydrophilic acrylic acid (AA)-grafted PLLA or RGD-immobilized one. Porous PLLA scaffolds were prepared using a gas foaming method, followed by plasma treatment and subsequent grafting of AA to introduce a hydrophilicity (PLLA-PAA). This was further processed to fix RGD peptide to make an RGD-immobilized scaffold (PLLA-PAA-RGD). Stem cells were seeded at $1{\times}10^{6}$ cells per scaffold and the cell-PLLA constructs were cultured for up to 4 weeks in the chondrogenic medium. Using these surface-modified scaffolds, adhesion, proliferation, and chondrogenic differentiation of stem cells were evaluated. The surface of PLLA scaffolds turned hydrophilic (water contact angle, 45 degrees) with both plasma treatment and AA grafting. The hydrophilicity of RGD-immobilized surface was not significantly altered. Cell proliferation rate on the either PLLA-PAA or PLLA-PAA-RGD surface was obviously improved, especially with the RGD-immobilized one as compared to the control PLLA one. Chondrogenic differentiation was clearly identified with Safranin O staining of GAG in the AA- or RGD-grafted PLLA substrates. This study demonstrated that modified polymer surfaces may provide better environment for chondrogenesis of stem cells.

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Grafting and Characterization of Zwitter Ionic Poly(ethylene glycol) on Gold-Coated Nitinol Surface Chemisorbed with L-Cysteine (시스틴으로 화학흡착된 금 코팅 니티놀 표면에 앙쪽성 이온 폴리에틸렌글리콜의 그래프트 및 특성 평가)

  • Shin, Hong-Sub;Park, Kwi-Deok;Kim, Jae-Jin;Kim, Ji-Heung;Han, Dong-Keun
    • Polymer(Korea)
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    • v.33 no.1
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    • pp.84-90
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    • 2009
  • Nitinol alloy (TiNi) has been widely used in vascular stents. To improve the blood compatibility of Nitinol alloy, its surface was chemically modified in this study. Nitinol was first coated with gold, then chemisorbed with L-cysteine (C/N), and followed by grafting of zwitter ionic poly(ethylene glycol) (PEG) (PEG-$N^+-SO_3{^-}$) to produce TiNi-C/N-PEG-N-S. The zwitter ionic PEG grafted on the Nitinol surface was identified by ATR-FTIR, ESCA and SEM. The hydrophilized surface was proven by the decrease of water contact angle. In addition, from the blood compatibility tests such as protein adsorption, platelet adhesion, and blood coagulation time, the surface-modified TiNi alloy exhibited a better blood compatibility as compared to the untreated Nitinol control. These results indicated a feasibility of synergistic effect of hydrophilic PEG and antithrombotic zwitter ion.