• 제목/요약/키워드: Superhydrophobic Surface

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Synthesis of Pd-decorated SiO2 layers with superhydrophobic and oleophilic micro-nano hierarchical (초소수성 및 친유성을 갖는 마이크로-나노 계층구조의 Pd 금속입자 기능화된 SiO2층 합성)

  • Kim, Jae-Hun;Lee, Jae-Hyeong;Kim, Jin-Yeong;Kim, Sang-Seop
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.67.2-67.2
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    • 2017
  • 본 연구에서는 $SiO_2$ 미세구조 상에 Pd 나노입자(NPs)를 증착하여, 불소화된 마이크로-나노 계층구조를 갖는 Pd-decorated $SiO_2$($Pd/SiO_2$)를 제작하였다. 마이크로 크기의 거칠기를 갖는 $SiO_2$ 층은 졸-겔 공정을 사용해서 제조된 용액을 전기분사함으로써 제조되었다. 이어서, 자외선(UV)을 이용한 광 환원법을 이용해 Pd 나노입자를 $SiO_2$ 층에 형성했다. 생성된 표면은 마이크로-나노의 계층구조 형태를 보여주었다. 해당 시편의 불소화 처리 후, 마이크로-나노의 계층구조 표면은 $170^{\circ}$ 이상의 물 접촉각(water contact angle; WCA) 및 $5^{\circ}$ 이하의 슬라이딩 각(sliding angle)을 보여줌으로써 물에 대해 탁월한 소수성을 나타내었다. 또한, 커피($CA=161^{\circ}$), 우유($CA=162^{\circ}$), 쥬스($CA=163^{\circ}$), 그리고 글리세롤($CA=165^{\circ}$)에 대해서도 우수한 소수 특성을 보여주었다. 또한, 이들 $Pd/SiO_2$ 층은 우수한 장기내구성 및 자외선 저항성을 보여주었다. 그리고 이어진 기름에 대한 접촉각 측정을 통해 해당 시편이 소유 특성이 아닌 친유 특성을 보여준다는 것을 확인할 수 있었고, 기름에 대한 CA는 약 ${\sim}10^{\circ}$로 매우 우수한 친유 특성을 나타내었다. 이와 같은 결과는 자체세정이 가능한 표면 및 지능형 물/기름 분리 시스템과 같은 스마트 장치에서 초소수성-친유성 특성을 갖는 계층구조의 $Pd/SiO_2$ 층을 사용할 가능성을 명확하게 보여준다고 판단된다.

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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
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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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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Effects of Relative Humidity and Fiber Properties on the Moisture Permeability of Multilayer Fabric Systems (환경 및 섬유 특성이 멀티레이어 직물시스템의 투습성에 미치는 영향)

  • Suhyun Lee;Sohyun Park
    • Fashion & Textile Research Journal
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    • v.25 no.1
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    • pp.119-126
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    • 2023
  • This study aimed to determine the effects of relative humidity and fiber properties on the moisture permeability of multilayer systems by measuring water vapor transmission in the overlapping condition of various fabrics. The results confirmed that the property of the fabric in contact with the humid environment affects the moisture permeability. If the layer facing the humid environment is hydrophobic and the layer facing the dry environment is superhydrophobic, water vapor transmission increases by up to 17.8% compared to the opposite conditions. Comparing the correction values of the water vapor transmission reflecting the thickness of the specimen under the multilayer condition showed that permeability was higher when the hydrophilic or hydrophobic layer was facing the humid environment. The opposite was true from the "push-pull" effect of absorption mechanism. In the case of moisture permeability, the more hydrophilic the surface facing the humid environment, the more permeable that water vapor diffuses and passes through. It was concluded that the "pull-push" effect, in which water vapor diffuses widely through the hydrophilic facing a humid environment and then passes through the hydrophobic layer, contributes to the improvement of permeability. Permeability differed according to the multilayer overlapping condition. When the relative humidity was high, the "pull-push" effect was insignificant. This is caused by water droplets absorption after the partial migration of water due to condensation. These results suggest that the overlapping conditions and properties of fabrics should vary depending on heavy sweating or not.