• Title/Summary/Keyword: 은 나노입자

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Thermal Dewetting Process를 이용한 비주기 서브파장 구조물의 제작방법

  • Lee, Jong-Heon;Song, Yeong-Min
    • Proceedings of the Korean Vacuum Society Conference
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    • 2016.02a
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    • pp.346.1-346.1
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    • 2016
  • 본 연구에서는 열처리(Thermal Dewetting Process)와 빗각 증착(Oblique angle deposition)을 이용하여 비주기 서브파장 구조물을 마이크로 렌즈 형태의 유리 기판 상부에 제작하였다. 먼저 $2{\times}2cm2$ 크기의 유리 기판에 기존 리소그래피 공정으로 원기둥 형태의 감광액을 형성한다. 이후 Hot-plate로 $180^{\circ}C$에서 90초간 열을 가해 지름이 $20{\mu}m$인 반구형태로 변형시킨 뒤 반응성이온식각 공정을 진행하여 마이크로 렌즈를 제작한다. 렌즈의 표면에 나방 눈 구조를 형성하기 위해 전자빔 증착으로 15nm의 은 박막을 쌓은 뒤 $500^{\circ}C$에서 1분간 열처리 공정을 진행하였다. 열이 가해졌을 때 은 박막은 표면자유에너지를 최소화하기 위해 나노 크기의 덩어리진 입자 형태로 변화한다. 여기서 형성되는 나노입자의 크기가 렌즈 표면 중심에서 가장자리로 갈수록 작아진다는 것을 주사전자현미경을 통해 확인하였다. 증착 각도가 증가할수록 열처리 공정 후의 은 나노입자의 크기가 점점 작아진다는 것을 검증하기 위해 은 박막의 증착 각도를 $0^{\circ}$, $35^{\circ}$, $55^{\circ}$, $70^{\circ}$로 증착 후 열처리 공정을 진행하여 확인하였다. 비스듬하게 증착되어 형성된 박막은 다공형태로 낮은 밀도를 가지는데 이는 박막 두께 감소를 일으킨다. 따라서 증착 각도가 증가할수록 열처리 공정 후의 은 나노입자의 크기는 점점 작아진다. 이후 은 나노입자를 마스크로 하여 다시 반응성이온식각 공정을 진행하였으며 식각 후 나머지 은 나노입자들은 HNO3용액에서 1분간 처리하여 제거하였다. 제작된 구조물의 평균 직경과 크기는 각각 ~220nm 및 ~250nm인 것으로 확인하였다. 위와 같은 공정을 통해 다양한 크기를 가진 비주기 서브파장 구조물을 제작할 수 있다. 구조물의 주기가 파장 길이보다 짧을 경우 분산이 최소화되며 넓은 파장 대역에서 무반사 효과를 얻을 수 있다. 이 공정은 마스크를 통한 리소그래피의 한계를 극복할 수 있으며 여러 곡면형 표면에 적용가능한 장점이 있다. 또한 프리즘, 렌즈, 광섬유와 같은 광소자의 광투과율을 향상시키는데 이용될 수 있다.

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Biosynthesis of Silver Nanoparticles Using Microorganism (미생물을 이용한 은 나노입자 생합성)

  • Yoo, Ji-Yeon;Jang, Eun-Young;Hong, Chang-Oh;Kim, Keun-Ki;Park, Hyean-Cheal;Lee, Sang-Mong;Kim, Young-Gyun;Son, Hong-Joo
    • Journal of Life Science
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    • v.28 no.11
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    • pp.1354-1360
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    • 2018
  • The aim of this study was to develop a simple, environmentally friendly synthesis of silver nanoparticles (SNPs) without the use of chemical reducing agents by exploiting the extracellular synthesis of SNPs in a culture supernatant of Bacillus thuringiensis CH3. Addition of 5 mM $AgNO_3$ to the culture supernatant at a ratio of 1:1 caused a change in the maximum absorbance at 418 nm corresponding to the surface plasmon resonance of the SNPs. Synthesis of SNPs occurred within 8 hr and reached a maximum at 40-48 hr. The structural characteristics of the synthesized SNPs were investigated by various instrumental analysis. FESEM observations showed the formation of well-dispersed spherical SNPs, and the presence of silver was confirmed by EDS analysis. The X-ray diffraction spectrum indicated that the SNPs had a face-centered cubic crystal lattice. The average SNP size, calculated using DLS, was about 51.3 nm and ranged from 19 to 110 nm. The synthesized SNPs exhibited a broad spectrum of antimicrobial activity against a variety of pathogenic Gram-positive and Gram-negative bacteria and yeasts. The highest antimicrobial activity was observed against C. albicans, a human pathogenic yeast. The FESEM observations determined that the antimicrobial activity of the SNPs was due to destruction of the cell surface, cytoplasmic leakage, and finally cell lysis. This study suggests that B. thuringiensis CH3 is a potential candidate for efficient synthesis of SNPs, and that these SNPs have potential uses in a variety of pharmaceutical applications.

Fractional efficiency of Nanomaterials for the High efficiency respiratory filters (고효율 호흡보호구의 나노물질 입경별 제거 효율)

  • Lee, Gwang-Jae;Ji, Jun-Ho;Kim, Won-Geun;Yook, Se-Jin;Kim, Jong-Kyo;Kim, Jung-Ho
    • Particle and aerosol research
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    • v.12 no.3
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    • pp.95-102
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    • 2016
  • Controlling exposures to occupational hazards is important for protecting workers. Certified facepiece respirators are recommended when engineering controls do not adequately prevent exposures to airborne nanomaterials. The objective of this study is to carry out the experimental performance test to investigate the fractional efficiencies of the filter media for two grades of facepiece respirators. Experimental performance evaluations were carried out for the test NaCl particles and silver nanoparticles. For media of respirator filter, the penetration of NaCl particles was less than 5% and the most penetrating particle size occurred at about 40 nm. For silver nanoparticles, the most penetrating particle size was about 20nm with higher efficiency than those of NaCl particles. Charge characteristics of airborne nanoparticles is important because the media of respirator filter is made by the electret filter media.

The Study of Surface Plasmonic Bands Using Block Copolymer Nanopatterns (블록공중합체 나노패턴을 이용한 표면 플라즈몬 연구)

  • Yoo, Seung Min
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.11
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    • pp.88-93
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    • 2017
  • It is important to develop a simple method oftuning localized surface plasmon resonance(LSPR) properties, due to their numerous applications. In addition, the careful examination of the shape, size and combination of metal nanoparticles is useful for understanding the relation between the LSPR properties and metal nanostructures. This article describes the dependence of theLSPR properties on the arrays of metal nanoparticles obtained from a block copolymer(BCP) micellar thin film. Firstly, two different Au nanostructures, having a dot and ring shape, were fabricated using conventional block copolymer micelle lithography. Then, Ag was plated on the Au nanostructures through the silver mirror reaction technique to obtain Au/Ag bimetallic nanostructures. During the production of these metallic nanostructures, the processing factors, such as the pre-treatment by ethanol, silver mirror reaction time and removal or not of the BCP, were varied. Once the Au nanoparticles were synthesized, Ag was properly plated on the Au, providing two distinguishable characteristic plasmonic bands at around 525nm for Au and around 420nm for Ag, as confirmed bythe UV-vis measurements. However, when a small amount of Au seed nanoparticles, which accelerate the Ag plating speed,was formed by usinga block copolymer with a relatively highmolecular weight, all of the Au surfaces were fully covered by Ag during the silver mirror reaction, showing only the characteristic peak for Ag at around 420nm. The Ag plating technique on Au nanoparticles pre-synthesized from a block copolymer is useful to study the LSPR properties carefully.

Removals of Formaldehyde by Silver Nano Particles Attached on the Surface of Activated Carbon (나노 은입자가 첨착된 활성탄의 포름알데히드 제거특성)

  • Shin, Seung-Kyu;Kang, Jeong-Hee;Song, Ji-Hyeon
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.10
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    • pp.936-941
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    • 2010
  • This study was conducted to investigate formaldehyde removals by silver nano-particles attached on the surface of granular activated carbon (Ag-AC) and to compare the results to those obtained with ordinary activated carbon (AC). The BET analysis showed that the overall surface area and the fraction of micropores (less than $20{\AA}$ diameter) of the Ag-AC were significantly decreased because the silver particles blocked the small pores on the surface of the Ag-AC. The formaldehyde removal capacity of the Ag-AC determined using the Freundlich isotherm was higher than that of AC. Despite the decreased BET surface area and micropore volume, the Ag-AC had the increased removal capacity for formaldehyde, presumably due to catalytic oxidation by silver nano-particles. In contrast, the adsorption intensity of the Ag-AC, estimated by 1/n in the Freundlich isotherm equation, was similar to that of the ordinary AC, indicating that the surface modification using silver nano-particles did not affect the adsorption characteristics of AC. In a column experiment, the Ag-AC also showed a longer breakthrough time than that of the AC. Simulation results using the homogeneous surface diffusion model (HSDM) were well fitted to the breakthrough curve of formaldehyde for the ordinary AC, but the predictions showed substantial deviations from the experimental data for the Ag-AC. The discrepancy was due to the catalytic oxidation of silver nano-particles that was not incorporated in the HSDM. Consequently, a new numerical model that takes the catalytic oxidation into accounts needs to be developed to predict the combined oxidation and adsorption process more accurately.

Preparation of Silver/Polystyrene Nanocomposites by Radical Polymerization Using Silver Carbamate Complex (은 카바메이트 복합체를 이용한 라디칼 중합에 의한 은/폴리스티렌 나노복합체의 제조)

  • Park, Heon-Su;Park, Hyung-Seok;Gong, Myoung-Seon
    • Polymer(Korea)
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    • v.34 no.2
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    • pp.144-149
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    • 2010
  • Ag/polystyrene(PS) nanocomposites were prepared by in situ reduction of silver 2-ethylhexylcarbamate (Ag-CB) complex and follwing radical polymerization only by heating at 110 $^{\circ}C$. In contrast to this conventional heating method, the microwave irradiation afforded well-dispersed silver nanoparticles(NPs) in styrene monomer without polymerization. The synthesis of Ag NPs proceeded uniformly throughout the reaction vessel only under microwave irradiation, completing the reaction simultaneously in the whole reaction solution. Successive polymerization of the monomer containing the resultant NPs has successfully produced a hybrid of the silver NPs dispersed in PS matrix. Ag/PS (0.1/100) nanocomposites were prepared successfully by melt-mixing process using Ag/PS(4.0/100) as a master-batch. UV-VIS spectroscopy, TEM, and X-ray diffraction techniques were used to investigate the process of formation of Ag/PS nanocomposites.

Localized Surface-Plasmon Resonance of Ag Nanoparticles Produced by Laser Dewetting to Improve the Performance of a Sensitized TiO2 Solar Cell (레이저 Dewetting에 의해 형성된 은 나노입자의 국소 표면플라즈몬 공명을 이용한 감응형 TiO2 태양전지 성능 향상)

  • Lee, Jeeyoung;Lee, Myeongkyu
    • Korean Journal of Optics and Photonics
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    • v.29 no.5
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    • pp.215-219
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    • 2018
  • In this paper we show that the localized surface-plasmon resonance of Ag nanoparticles produced by laser dewetting can be effectively utilized for improving the photocurrent and efficiency of a dye-sensitized $TiO_2$ solar cell. An Ag thin film deposited on a conducting glass substrate was dewetted into nanoparticles by a pulsed laser. A dye-sensitized $TiO_2$ solar cell fabricated on this substrate containing the Ag nanoparticles exhibited improved photovoltaic performance, compared to a reference cell. This is attributed to the increased light trapping that arises from the localized surface-plasmon resonance of the dewetted Ag nanoparticles.

Preparation of Silver Nanoparticles with Various Morphology Using Amphiphilic Graft Copolymer Membranes (양쪽성 가지형 공중합막을 이용한 다양한 모양의 은 나노입자 제조)

  • Seo, Jin-Ah;Choi, Jin-Kyu;Ahn, Sung-Hoon;Yeon, Seung-Hyeon;Kim, Jong-Hak
    • Membrane Journal
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    • v.20 no.2
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    • pp.169-172
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    • 2010
  • Silver ions of poly(vinyl chloride)-g-poly(styrene sulfonic acid) (PVC-g-PSSA) graft copolymer were reduced to form silver nanoparticles under thermal condition ($80^{\circ}C$). We were successful in synthesizing silver nanoparticles with various morphologies by changing reaction time. At short reaction times (~1 h), silver nanoparticles with 5 nm in size were formed without disrupting a microphase-separated structure of graft copolymer. At medium reaction times (~5 h), silver nanoparticles were aggregated to form large clusters ranging 30~50 nm in size. At much longer reaction times (~18 h), hurricane-like silver clusters were observed due to strong particle aggregation.

Resazurin Redox Reaction Mechanism Using Silver Nanoparticles Synthesized with Monosaccharides and Disaccharides (단당류와 이당류를 환원제로 합성한 은 나노입자의 Resazurin 산화환원반응 메커니즘)

  • Park, Young Joo;Chang, Ji Woong
    • Applied Chemistry for Engineering
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    • v.31 no.3
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    • pp.299-304
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    • 2020
  • Nanoparticles play an important role as a catalyst in many chemical syntheses. Colloidal nanoparticles were usually synthesized with reducing, capping, and shape directing agents which induce surface poisoning of catalysts. A new green synthesis for silver nanoparticles was developed by utilizing less additives which could be a hazardous waste. A crystallization technique was employed to reduce the amount of reducing and capping agents during synthesis resulting in less surface poisoning of the nanoparticle. The synthesized Ag nanoparticles using monosaccharides and disaccharides as reducing agents could be used as a catalyst for the redox reaction of resazurin and the mechanism of the reaction using Ag nanoparticles was studied.

탄소섬유 상 Seed 입자의 결정구조에 따른 은나노구조체 형상 제어

  • Lee, Su-Min;Lee, Jae-Hyeok;Kim, Gwang-Beom;Kim, Seon-Min
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.383-383
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    • 2012
  • 최근 나노 소재의 활용 가능성이 확대되어감에 따라 다양한 소재의 나노구조체에 대한 연구가 진행되어 왔다. 그 중 은(Silver)은 열전도율과 전기전도율이 가장 우수한 금속으로 다양한 형태의 은 나노 입자를 형성할 수 있고. 이를 탄소, 비석, 고분자 등의 기판에 다양한 방법으로 성장시키는 연구가 진행되었다. 기판으로 사용되는 재료 중 탄소 복합소재는 내열성, 화학적 안정성, 열전도성, 저열팽창성에 따른 치수 안정성, 유연성 등의 우수한 특징을 지니고 있으며 최근까지 방열 소재로서 활용되고 있다. 본 연구에서는 탄소섬유의 표면에 다양한 결정 구조를 가지는 Ag seed 입자를 형성하고 폴리올 공정을 통하여 와이어 형태의 나노구조체를 성장시켜 그 형상제어 특성을 FE-SEM을 통하여 확인하였다.

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