• 제목/요약/키워드: hydrophobic functional group

검색결과 36건 처리시간 0.026초

UV Laser를 이용한 광화학적 패터닝과 습식에칭에 따른 알칸티올 분자 작용기의 특성 연구 (A Study on the Characteristics of the Functional Groups of the Alkanethiol Molecules in UV Laser Photochemical Patterning and Wet Etching Process)

  • 허갑수;장원석
    • 한국정밀공학회지
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    • 제24권5호
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    • pp.104-109
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    • 2007
  • Photochemical patterning of self-assembled mono layers (SAMs) has been performed by diode pumped solid state (DPSS) 3rd harmonic Nd:$YVO_4$ laser with wavelength of 355 nm. SAMs patternings of parallel lines have subsequently been used either to generate compositional chemical patterns or fabricate microstructures by a wet etching. This paper describes a selective etching process with patterned SAMs of alkanetiolate molecules on the surface of gold. SAMs formed by the adsorption of alkanethiols onto gold substrate employs as very thin photoresists. In this paper, the influence of the interaction between the functional group of SAMs and the etching solution is studied with optimal laser irradiation conditions. The results show that hydrophobic functional groups of SAMs are more effective for selective chemical etching than the hydrophilic ones.

PDMS (Polydimethylsilioxane)-Coated Silica Nanoparticles for Selective Removal of Oil and Organic Compound from Water

  • Cho, Youn Kyoung;Kim, Dae Han;Yoon, Hye Soo;Jeong, Bora;Kim, Young Dok
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.257-257
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    • 2013
  • In order to selectively remove oil and organic compound from water, silica nanoparticles with hydrophobic coating was used. Since silica nanoparticles are generally hydrophilic, removal efficiency of oil and organic compound, such as toluene, in water can be decreased due to competitive adsorption with water. In order to increase the removal efficiency of oil and toluene, hydrophobic polydimethylsiloxane (PDMS) was coated on silica nanoparticles in the form of thin film. Hydrophobic property of the PDMS-coated silica nanoparticles and hydrophilic silica nanoparticles were easily confirmed by putting it in the water, hydrophilic particle sinks but hydrophobic particle floats. PDMS coated silica nanoparticles were dispersed on a slide glass with epoxy glue on and the water contact angle on the surface was determined to be over $150^{\circ}$, which is called superhydrophobic. FT-IR spectroscopy was used to check the functional group on silica nanoparticle surface before and after PDMS coating. Then, PDMS coated silica nanoparticles were used to selectively remove oil and toluene from water, respectively. It was demonstrated that PDMS coated nanoaprticles selectively aggregates with oil and toluene in the water and floats in the form of gel and this gel remained floating over 7 days. Furthermore, column filled with hydrophobic PDMS coated silica nanoparticles and hydrophilic porous silica was prepared and tested for simultaneous removal of water-soluble and organic pollutant from water. PDMS coated silica nanoparticles have strong resistibility for water and has affinity for oil and organic compound removal. Therefore PDMS-coated silica nanoparticles can be applied in separating oil or organic solvents from water.

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Methyl- $\beta$ -D-Fructofuranoside 합성을 위한 고정화 전화당 효소의 미소환경 최적화 (Microenvironmental Optimizaton of Immobilized Invertase for Methyl- $\beta$ -D-Fructofuranoside Synthesis)

  • 허주형;안형환
    • 대한안전경영과학회지
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    • 제1권1호
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    • pp.259-272
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    • 1999
  • In order to enhance the selectivity, productivity and yield of methyl fructoside, which was synthesized by enzymatic glycosylation of sucrose and methanol solution, controlling of surface property of solid support using different immobilization procedures optimized microenvironment of immobilized invertase. Silanization and polyethylene imine coating methods were adopted to give a hydrophobic and hydrophilic environment of immobilized invertase. As a result, polyethyleneimine coating method gave higher loading of enzyme, effective activity, and relative activity than silanization method, because it brought on increasing the functional density of amino group and enhancing the conservation of activity by regulating of hydrophilicity. And then, hydrophilic environment was possible to restraint the assessing of methyl fructoside molecule, which was more hydrophobic than sucrose, fructose, and glucose molecule in the reaction mixture, into .the active site of immobilizedinvertase. Consequently, hydrophilic microenvironment of immobilized invertase by polyethyleneimine coating obtained higher yield and productivity with increasing conversion than silanized and native invertase. Thus, this procedure optimized the microenvironment of immobilized invertase suitable for the enzymatic synthesis of methyl fructoside.

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XAD 및 FT-IR을 이용한 영산강수계 광주시 유역 자연유기물질의 분포특성 연구 (A Study on Characteristics of Natural Organic Matter using XAD and FTIR in Yeongsan River System)

  • 이동진;전강민;김상돈;정수정;이경희;황태희;임병진;조재원
    • 생태와환경
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    • 제44권4호
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    • pp.358-363
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    • 2011
  • 본 연구는 영산강수계 광주지역에 대하여 XAD와 FTIR를 이용하여 자연유기물질에 대한 분포특성을 연구하였다. XAD 8/4 resin을 이용한 NOM fractionation 분석은 친수성 및 소수성을 변별하는데 사용되어졌다. FT-IR은 자연유기물의 구조에서 기능족을 분석하는데 사용되어졌다. XAD 조사에서 영산강본류의 광주상류지점(GJ-1), 광주하류지점(GJ-2), 광주천(GJC), 광주하수처리장(GJS) 등 4개 지점에서 대부분 친수성으로 조사되었다. 다만, 3월에 GJ-1 지점에서는 소수성이 주를 이루었다. 5월에는 수온의 상승과 함께 미생물의 활성의 증가로 4개 지점 공통적으로 친수성으로 조사되었고, 10월에는 3월과 매우 유사한 결과가 되었다. FT-IR 조사에서는 넓거나 높아 뚜렷한 피크들이 주로 지방족 화합물, 특히 OH 그룹, CH, $C-H_2$, $C-H_3$ 및 C-O 알코올 그룹들로 나타났고, 이들은 친수성 물질들이다. FT-IR 조사에서 그 외의 피크들은 약간의 방향족 화합물, 특히 C=O (Ketone) 그룹이 나타났다. 결과적으로 본 연구에서 영산강수계 광주지역은 주로 친수성 물질들이며, 지방족 화합물(OH, C-H etc.)인 것으로 조사되었다.

DMFC용 무기-유기 복합 전해질 막의 합성 (Synthesis of Inorganic-Organic Composite Electrolyte Membranes for DMFCs)

  • 김은형;윤국호;박성범;오명훈;김성진;박용일
    • 한국세라믹학회지
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    • 제45권2호
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    • pp.119-125
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    • 2008
  • The FAS(Fluoroalkylsilane)/Nafion inorganic-organic composite electrolyte membrane was successfully fabricated through sol-gel method. The FAS having hydrophobic functional group and silanol ligands is impregnated in $Nafion^{(R)}$ membrane to reduce methanol crossover. The prepared FAS/Nafion inorganic-organic composite electrolyte membrane consist of the hydrophobic FAS-derived silicate nano-particles and $Nafion^{(R)}$ matrix showed decrease of methanol crossover and reduction of humidity dependence without large sacrifice of proton conductivity. The microstructural analysis of the composite membranes was performed using FESEM and FTIR. And the effect of the incorporation of the hydrophobic FAS-derived silicate nano-particles into $Nafion^{(R)}$ membrane was investigated via solvent uptake, membrane expansion rate, humidity dependency of proton conductivity and contact angle measurement.

Dielectric Polymers for OTFT Application

  • Choi, Sung-Lan;Kim, Yeon-Ok;Kim, Hong-Doo
    • Journal of Information Display
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    • 제11권3호
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    • pp.95-99
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    • 2010
  • A series of new dielectric polymers with phenyl, epoxy, and carboxylicacid functional groups was prepared via free-radical polymerization. The effect of such dielectric polymers with various functional groups on the performance of OTFT was investigated. The nonpolar groups of terpolymer made the surface of the dielectric layer more hydrophobic and improved the crystal growth of pentacene on the gate insulator, resulting in higher mobility. By controlling the functional group, the electric characteristics of OTFT performance was varied, with $0.00017-0.15\;cm^2/V{\cdot}s$ mobility.

Lysyl Hydroxylase의 저해활성을 증가시키기 위한 Minoxidil 유도체들의 구조적인 요건 (Structural Requirements of Minoxidil Analogs for Enhancing Lysyl Hydroxylase Inhibitory Activity)

  • 명평근;성낙도;이재흥
    • KSBB Journal
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    • 제27권2호
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    • pp.121-126
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    • 2012
  • In order to explore structural features of minoxidil analogs with a view of enhancing lysyl hydroxylase (LH) inhibitory activity, molecular holographic QSAR (HQSAR) and CoMSIA (comparative molecular similarity indices analysis) were performed. The results from the atomic contributions with optimized the HQSAR 6-2 model indicated that, in case of pyrimidine-1-N-oxide substituent, C2 atom of pyrimidine ring and C'3-C'4 bond of 4-piperidinol group showed the highest impact on the inhibitory activity towards LH enzyme. It was also evident from the information of the optimized CoMSIA F5 model that the inhibitory activity mainly depended on the hydrophobic field contribution (36%) and the hydrogen bond (H-bond) field contribution (49.2%) of substrate molecule. Particularly, it is predicted that the functional groups which disfavor H-bond acceptors in large space around the piperidinol group and also the functional groups which favor the H-bond acceptors at C'4 (& C'5) atom in $R_5$ group play a role for increased inhibitory activity. With this in mind, it is likely that a novel candidate having more improved inhibitory activity on hair growth could be designed in the future.

분류된 천연유기물질을 이용한 막 오염 특성 평가 (Effect of Fractionated Organic Matter on Membrane Fouling)

  • 이병구;손희종;노재순;황영도;정철우;강임석
    • 대한환경공학회지
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    • 제27권12호
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    • pp.1321-1326
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    • 2005
  • 낙동강 원수의 경우 소수성 물질이 43%, 친수성 물질이 39%, 반친수성 물질이 18%를 차지하고 있는 것으로 나타났으며, 소수성 물질을 세분화하여 조사한 결과 fulvic acid는 62%, humic acid는 38%로 나타났으며, 또한, 카르복실기는 64%, 페놀기는 36%를 차지하고 있는 것으로 나타났다. 친수성 물질을 세분화하여 조사한 결과 HPI-N이 44%, HPI-C가 56%를 차지하고 있었다. 친수성 유기물질 중 HPI-C에 비하여 HPI-N이 막 오염을 더욱 많이 유발하였으며, 소수성 유기물질에서는 HA가 FA에 비하여 막 오염을 더 많이 유발하였으며, 작용기에 따른 막 오염 현상을 살펴보면 카르복실기의 경우 페놀기에 비하여 투과 flux 감소가 크게 나타나고 있다. 공극의 크기가 커질수록 공극 속으로 전달되는 고분자 유기물이 많이 발생하며 이러한 고분자 유기물이 공극을 막아버리는 현상에 의하여 투과 flux 감소가 발생하는 것으로 나타났다. 또한 공극의 크기가 상대적으로 큰 막의 경우 투과되는 양이 공극이 작은 막 보다 상대적으로 많기 때문에 운전초기에 많은 양의 유기물이 막으로 전달되어 막의 표면과 공극에 흡착되어 막의 공극의 크기가 커짐에 따라 투과 flux 감소가 크게 나타났다.

Preparation and Characterization of Hydrophobic Coatings from Carnauba Wax/Lignin Blends

  • BANG, Junsik;KIM, Jungkyu;KIM, YunJin;OH, Jung-Kwon;YEO, wanmyeong;KWAK, Hyo Won
    • Journal of the Korean Wood Science and Technology
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    • 제50권3호
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    • pp.149-158
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    • 2022
  • To realize the infinite possibilities of materials derived from wood, it is necessary to overcome the weak moisture stability of wood. Thus, the development of an eco-friendly hydrophobic coating agent is essential, and of these, woody biomass-based materials are strongly attractive as coatings. In this study, eco-friendly hydrophobic wood coatings were prepared using carnauba wax purified from palm leaves and sprouts, and kraft lignin. The physicochemical properties of the carnauba wax/lignin blends according to the ratio of carnauba wax and lignin were observed by morphology and functional group change. In addition, the coating performance of carnauba wax/lignin blend coatings was confirmed by measuring the contact angle change. It was found that the addition of lignin could accelerate the atomization of wax particles, and that micro-roughness can be realized when applied to the actual wood surface, to ensure that the coating effect over time lasts longer. In addition, it was confirmed that the addition of lignin increases the hydrogen-bond-based interaction with the wood of the coating, thereby providing better coating stability and increasing the durability of the coating solvent under friction. The carnauba wax/lignin paint developed in this way is eco-friendly because all components are made of wood-based raw materials and have an excellent affinity with wood surfaces. Therefore, it is expected to be applicable to the coating process of wood-plastic composites and timber composites.

Biosynthesis, Modification, and Biodegradation of Bacterial Medium-Chain-Length Polyhydroxyalkanoates

  • Kim, Do-Young;Kim, Hyung-Woo;Chung, Moon-Gyu;Rhee, Young-Ha
    • Journal of Microbiology
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    • 제45권2호
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    • pp.87-97
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    • 2007
  • Medium-chain-length polyhydroxyalkanoates (MCL-PHAs), which have constituents with a typical chain length of $C_{6}-C_{14}$, are polyesters that are synthesized and accumulated in a wide variety of Gram-negative bacteria, mainly pseudomonads. These biopolyesters are promising materials for various applications because they have useful mechanical properties and are biodegradable and biocompatible. The versatile metabolic capacity of some Pseudomonas spp. enables them to synthesize MCL-PHAs that contain various functional substituents; these MCL-PHAs are of great interest because these functional groups can improve the physical properties of the polymers, allowing the creation of tailor-made products. Moreover, some functional substituents can be modified by chemical reactions to obtain more useful groups that can extend the potential applications of MCL-PHAs as environmentally friendly polymers and functional biomaterials for use in biomedical fields. Although MCL-PHAs are water-insoluble, hydrophobic polymers, they can be degraded by microorganisms that produce extracellular MCL-PHA depolymerase. MCL-PHA-degraders are relatively uncommon in natural environments and, to date, only a limited number of MCL-PHA depolymerases have been investigated at the molecular level. All known MCL-PHA depolymerases share a highly significant similarity in amino acid sequences, as well as several enzymatic characteristics. This paper reviews recent advances in our knowledge of MCL-PHAs, with particular emphasis on the findings by our research group.