• 제목/요약/키워드: Silver-nano process

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알코올환원법을 이용한 은나노입자 제조 및 이를 함유한 Ag/PET 마스터배치칩의 항균특성에 관한 연구 (Synthesis of Silver Nano-Particles using Alcohol Reducing Process and Antibacterial Properties of its Ag/PET Master Batch)

  • 손은종;황영구;신유식;정기훈;정해림;정성훈
    • 한국염색가공학회:학술대회논문집
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    • 한국염색가공학회 2011년도 제44차 학술발표회
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    • pp.56-56
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    • 2011
  • 알코올 환원법(alcohol reducing process)은 화학적 환원제가 필요하지 않은 화학합성법으로 메탄올, 에탄올, 프로판올, 이소프로판올, 부탄올 등 C1-C4의 알코올류, 에틸렌 글라이콜, 디에틸렌 글라이콜, 프로필렌 글라이콜과 같은 글리콜류 등이 용매이자 환원제로써 사용된다. 전형적으로 금속 전구체를 상기의 알코올류나 글리콜류에 용해 또는 분산시킨 후 그 용액을 환류 조건하에서 가열하게 되면 금속 이온과 용매간의 산화, 환원반응에 의하여 금속이온이 금속원자로 환원되며, 환원된 금속 입자들은 핵 행성과 성장 과정을 거쳐서 입자를 형성하게 된다. 본 연구에서는 알코올환원법을 이용하여 나노크기의 은입자제조를 시도하였고, 이를 PET 칩과의 마스터배치 제조을 시도하였으며, 이의 항균성능을 연구 고찰하였다. 30 ~ 80 nm의 은파우더를 제조할 수 있었으며, 우수한 항균성능을 갖는 Ag/PET 마스터배치를 제조할 수 있었다. 이를 활용하여 나노은입자기반의 항균섬유을 제조하여 이를 활용한 기모경편성물 제조의 기초데이타로 활용이 가능하리라고 사료된다.

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공정 모사를 통한 하수처리장 내 은나노물질 제거 평가 (Assessment of Removal of Silver Nanoparticle in Sewage Treatment Plant Waste Using Process Simulation)

  • 오승윤;김영훈
    • 청정기술
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    • 제20권2호
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    • pp.160-165
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    • 2014
  • 지난 수년간 나노기술의 혁신성과 다양한 나노소비제의 적용으로 수많은 나노물질들이 제조되었다. 아울러 나노물질과 나노소비재의 연간 생산량이 증가하고 있어서, 의도하지 않은 환경 노출이 야기되고 있다. 그러나 나노물질을 함유한 폐수는 기존 하폐수처리 시설을 이용하고 있는 실정이다. 국내는 지금까지 실제 하폐수처리장내 나노물질 제거효율을 평가한 사례가 없다. 이에 현장 노출평가에 앞서 파일럿 규모의 하수처리장치를 설계하고자, 설계인자 도출을 위한 슬러지내 나노물질 제거 모델식과 상용 공정 시뮬레이션을 이용하였다.

R2R 공정에서 적외선가열과 열풍을 혼합한 건조방식에서 전도성 금속 잉크의 건조 및 큐어링 공정 특성에 관한 실험적 연구 (An Experimental Study on the Drying and Curing Characteristics of Conductive metallic ink using Combined IR and Hot Air Type in the Roll-to-Roll System)

  • 김영모;홍승찬;이재효
    • 반도체디스플레이기술학회지
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    • 제9권2호
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    • pp.73-78
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    • 2010
  • This research is about the drying and curing characteristic of conductivity metallic ink on-line curing device in order to improve the curing time for productivity in RFID Gravure printing. The curing process is carried out to increase the electric conductivity after the metallic ink is printed on the substrate. The metal ink is composed of nano-sized silver or copper particles. In this research, the combined IR and Hot air curing system is used and its results is compared with those of oven, IR and Hot Air type respectively. Generally the curing time in the past is about 3 minutes. But the combined system (IR+Hot Air) in this research shows that curing time is less than 30 seconds. These results is much faster than those of other system. This study can be help to make Roll-to-Roll drying and curing process for mass and continuous production on-line.

Metal Oxide Thin Film Transistor with Porous Silver Nanowire Top Gate Electrode for Label-Free Bio-Relevant Molecules Detection

  • 유태희;김정혁;상병인;최원국;황도경
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.268-268
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    • 2016
  • Chemical sensors have attracted much attention due to their various applications such as agriculture product, cosmetic and pharmaceutical components and clinical control. A conventional chemical and biological sensor is consists of fluorescent dye, optical light sources, and photodetector to quantify the extent of concentration. Such complicated system leads to rising cost and slow response time. Until now, the most contemporary thin film transistors (TFTs) are used in the field of flat panel display technology for switching device. Some papers have reported that an interesting alternative to flat panel display technology is chemical sensor technology. Recent advances in chemical detection study for using TFTs, benefits from overwhelming progress made in organic thin film transistors (OTFTs) electronic, have been studied alternative to current optical detection system. However numerous problems still remain especially the long-term stability and lack of reliability. On the other hand, the utilization of metal oxide transistor technology in chemical sensors is substantially promising owing to many advantages such as outstanding electrical performance, flexible device, and transparency. The top-gate structure transistor indicated long-term atmosphere stability and reliability because insulator layer is deposited on the top of semiconductor layer, as an effective mechanical and chemical protection. We report on the fabrication of InGaZnO TFTs with silver nanowire as the top gate electrode for the aim of chemical materials detection by monitoring change of electrical properties. We demonstrated that the improved sensitivity characteristics are related to the employment of a unique combination of nano materials. The silver nanowire top-gate InGaZnO TFTs used in this study features the following advantages: i) high sensitivity, ii) long-term stability in atmosphere and buffer solution iii) no necessary additional electrode and iv) simple fabrication process by spray.

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Comparing the Effect of Three Processing Methods for Modification of Filament Yarns with Inorganic Nanocomposite Filler and their Bioactivity against Staphylococcus aureus

  • Dastjerdi, Roya;Mojtahedi, M.R.M.;Shoshtari, A.M.
    • Macromolecular Research
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    • 제17권6호
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    • pp.378-387
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    • 2009
  • This research compared three methods for producing and processing nanocomposite polypropylene filament yarns with permanent antimicrobial efficiency. The three methods used to mix antimicrobial agents based on silver nano particles with PP were as follows: 1) mixing of PP powder and inorganic nanocomposite filler with the appropriate concentration using a twin-screw extruder and preparing granules, 2) method 1 with a singlerather than twin-screw extruder, and 3) producing the masterbatch by a twin-screw extruder and blending it with PP in the melt spinning process. All pure polypropylene samples and other combined samples had an acceptable spinnability at the spinning temperature of $240^{\circ}C$ and take-up speed of 2,000 m/min. After producing as-spun filament yarns by a pilot plant, melt spinning machine, the samples were drawn, textured and finally weft knitted. The physical and structural properties (e.g., linear density, tenacity, breaking elongation, initial modulus, rupture work, shrinkage and crystallinity) of the as-spun and drawn yarns with constant and variable draw ratios (the variable draw ratio was used to gain a constant breaking elongation of 50%) were investigated and compared, while DSC, SEM and FTIR techniques were used to characterize the samples. Finally, the antibacterial efficiency of the knitted samples was evaluated. The experimental results revealed that the crystallinity reduction of the as-spun yarn obtained from method 1 (5%) was more than that of method 2 (3%), while the crystallinity of the modified as-spun yarns obtained with method 3 remained unchanged compared to pure yarn. However, the drawing procedure compensated for this difference. By applying methods 2 and 3, the drawing generally improved the tenacity and modulus of the modified fibers, whereas method 1 degraded the constant draw ratio. Although the biostatic efficiency of the nanocomposite yarns was excellent with all three methods, the modified fabrics obtained from methods 1 and 2 showed a higher bioactivity.

신축성 금속 나노선 압저항 전극 기반 로젯 스트레인 센서 (Rosette Strain Sensors Based on Stretchable Metal Nanowire Piezoresistive Electrodes)

  • 김강현;차재경;김종만
    • 대한금속재료학회지
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    • 제56권11호
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    • pp.835-843
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    • 2018
  • In this work, we report a delta rosette strain sensor based on highly stretchable silver nanowire (AgNW) percolation piezoresistors. The proposed rosette strain sensors were easily prepared by a facile two-step fabrication route. First, three identical AgNW piezoresistive electrodes were patterned in a simple and precise manner on a donor film using a solution-processed drop-coating of the AgNWs in conjunction with a tape-type shadow mask. The patterned AgNW electrodes were then entirely transferred to an elastomeric substrate while embedding them in the polymer matrix. The fabricated stretchable AgNW piezoresistors could be operated at up to 20% strain without electrical or mechanical failure, showing a maximum gauge factor as high as 5.3, low hysteresis, and high linearity ($r^2{\approx}0.996$). Moreover, the sensor responses were also found to be highly stable and reversible even under repeated strain loading/unloading for up to 1000 cycles at a maximum tensile strain of 20%, mainly due to the mechanical stability of the AgNW/elastomer composites. In addition, both the magnitude and direction of the principal strain could be precisely characterized by configuring three identical AgNW piezoresistors in a delta rosette form, representing the potential for employing the devices as a multidimensional strain sensor in various practical applications.

고효율 다결정 실리콘 태양전지 제작을 위한 나노크기의 피라미드 텍스쳐 제작 (Nanoscale Pyramid Texture for High Efficiency Multi-Crystalline Silicon Solar Cells)

  • 허종;박민준;지홍섭;김진혁;정채환
    • Current Photovoltaic Research
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    • 제5권1호
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    • pp.25-27
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    • 2017
  • Nanoscale textured black silicon has attracted intensive attention due to its great potential as applications in multicrystalline silicon-based solar cells. It absorbs sunlight over a broad range of wavelengths but introduces large recombination centers, non-uniform doping into cell. In this study, we present a metal-assisted chemical etching technique plus alkaline etching process to fabricate nanoscale pyramid structures with optimized condition. To make the structures, silver nanoparticles-loaded mc-Si wafer was submerged into $H_2O_2/HF$ solution first for nanohole texturing the wafer and textured wafer etched again with KOH solution for making nanoscale pyramid structures. The average reflectivity (350-1050 nm) is about 8.42% with anti-reflection coating.

제조공법에 따른 디스플레이 소자용 silver-grid 투명전극층의 특성 비교 (Comparison of characteristics of silver-grid transparent conductive electrodes for display devices according to fabrication method)

  • 최병수;최석환;류정호;조현
    • 한국결정성장학회지
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    • 제27권2호
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    • pp.75-79
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    • 2017
  • 고밀도 플라즈마 식각 및 lift-off 두 가지 공정으로 honeycomb 형상의 Ag-grid 투명전극층을 제작하였고 제조 공법에 따른 광학적 및 전기적 특성을 비교하였다. 플라즈마 식각 조건 선정을 위하여 Ag 박막의 $10CF_4/5Ar$ 유도결합 플라즈마 식각특성을 조사하였다. 비교적 낮은 ICP source power 또는 rf chuck power 영역에서는 power 증가에 따라 Ag 식각속도가 증가하였고, 높은 power 조건에서는 $Ar^+$ 이온 에너지 감소 또는 $Ar^+$ 이온에 의한 F radical 제거로 인해 식각속도가 감소하였다. $10CF_4/5Ar$ 플라즈마 식각 공정에 의해 제작된 Ag-grid 전극층은 lift-off 공정으로 제작된 전극층에 비해 grid 패턴 형상의 왜곡이나 단절이 없는 더 우수한 grid 패턴 전사 효율과 가시광선 영역에서 더 높은 83.3 %(pixel 크기 $30{\mu}m$/선폭 $5{\mu}m$)와 71 %(pixel 크기 $26{\mu}m$/선폭 $8{\mu}m$)의 광투과율을 각각 나타내었다. 반면에 lift-off 공정으로 제작된 Ag-grid 전극층은 플라즈마 식각 공정 시편보다 더 우수한 $2.163{\Omega}/{\square}$(pixel 크기 $26{\mu}m$/선폭 $8{\mu}m$)과 $4.932{\Omega}/{\square}$(pixel 크기 $30{\mu}m$/선폭 $5{\mu}m$)의 면저항 특성을 나타내었다.

3D 다공성 구조의 Ag-VGCF 코팅 분리막을 이용한 리튬금속 이차전지 수명향상 (Improving the Cycle Performance of Li Metal Secondary Batteries Using Three-Dimensional Porous Ag/VGCF-Coated Separators)

  • 이범희;함동완;;김정태;유선율
    • 전기화학회지
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    • 제27권3호
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    • pp.88-96
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    • 2024
  • 리튬금속(Li metal)은 높은 비용량과 에너지 밀도, 낮은 표준 전극 전위로 인해 유망한 음극활 물질로 각광받아온 재료이지만, 충·방전 시 발생하는 수지상 결정인 덴드라이트(dendrite)로 인해 안전성 및 수명안정성에 한계가 있었다. 본 연구에서는 나노 파이버(Nano Fiber) 형태의 도전재인 vapor grown carbon fiber (VGCF)와 은(Ag)의 복합체가 코팅된 분리막을 개발하였으며, 해당 분리막이 리튬금속 음극의 전기화학 특성에 미치는 영향을 연구하였다. VGCF와 Ag의 시너지 효과를 확인하기 위하여 표면 처리되지 않은 분리막, VGCF만 단면 코팅 처리된 분리막을 각각 준비하여 Ag-VGCF 분리막과 비교 평가하였다. Bare 분리막의 경우, 초기 충·방전 과정에서 리튬금속 표면이 덴드라이트로 뒤덮인 반면, VGCF 분리막 및 Ag-VGCF 분리막 모두 분리막 표면에 코팅된 전도성 코팅층 내부에 리튬이 석출되는 거동을 보였다. 또한 Ag-VGCF 분리막은 VGCF 분리막 대비 더욱 균일한 형상의 석출 형태를 보였다. 그 결과 Ag-VGCF 분리막은 Bare 분리막 및 VGCF 분리막 대비 향상된 전기화학적 특성을 보였다.

Fabrication of Flexible Surface-enhanced Raman-Active Nanostructured Substrates Using Soft-Lithography

  • 박지윤;장석진;여종석
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.411-411
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    • 2012
  • Over the recent years, surface enhanced Raman spectroscopy (SERS) has dramatically grown as a label-free detecting technique with the high level of selectivity and sensitivity. Conventional SERS-active nanostructured layers have been deposited or patterned on rigid substrates such as silicon wafers and glass slides. Such devices fabricated on a flexible platform may offer additional functionalities and potential applications. For example, flexible SERS-active substrates can be integrated into microfluidic diagnostic devices with round-shaped micro-channel, which has large surface area compared to the area of flat SERS-active substrates so that we may anticipate high sensitivity in a conformable device form. We demonstrate fabrication of flexible SERS-active nanostructured substrates based on soft-lithography for simple, low-cost processing. The SERS-active nanostructured substrates are fabricated using conventional Si fabrication process and inkjet printing methods. A Si mold is patterned by photolithography with an average height of 700 nm and an average pitch of 200 nm. Polydimethylsiloxane (PDMS), a mixture of Sylgard 184 elastomer and curing agnet (wt/wt = 10:1), is poured onto the mold that is coated with trichlorosilane for separating the PDMS easily from the mold. Then, the nano-pattern is transferred to the thin PDMS substrates. The soft lithographic methods enable the SERS-active nanostructured substrates to be repeatedly replicated. Silver layer is physically deposited on the PDMS. Then, gold nanoparticle (AuNP) inks are applied on the nanostructured PDMS using inkjet printer (Dimatix DMP 2831) to deposit AuNPs on the substrates. The characteristics of SERS-active substrates are measured; topology is provided by atomic force microscope (AFM, Park Systems XE-100) and Raman spectra are collected by Raman spectroscopy (Horiba LabRAM ARAMIS Spectrometer). We anticipate that the results may open up various possibilities of applying flexible platform to highly sensitive Raman detection.

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