• 제목/요약/키워드: Nano-coated film

검색결과 175건 처리시간 0.162초

전기방사법과 이원화 열처리 공정을 통한 은 나노섬유의 합성 및 투명전극으로의 응용 (Synthesis of Silver Nanofibers Via an Electrospinning Process and Two-Step Sequential Thermal Treatment and Their Application to Transparent Conductive Electrodes)

  • 이영인;좌용호
    • 한국재료학회지
    • /
    • 제22권10호
    • /
    • pp.562-568
    • /
    • 2012
  • Metal nanowires can be coated on various substrates to create transparent conducting films that can potentially replace the dominant transparent conductor, indium tin oxide, in displays, solar cells, organic light-emitting diodes, and electrochromic windows. One issue with these metal nanowire based transparent conductive films is that the resistance between the nanowires is still high because of their low aspect ratio. Here, we demonstrate high-performance transparent conductive films with silver nanofiber networks synthesized by a low-cost and scalable electrospinning process followed by two-step sequential thermal treatments. First, the PVP/$AgNO_3$ precursor nanofibers, which have an average diameter of 208 nm and are several thousands of micrometers in length, were synthesized by the electrospinning process. The thermal behavior and the phase and morphology evolution in the thermal treatment processes were systematically investigated to determine the thermal treatment atmosphere and temperature. PVP/$AgNO_3$ nanofibers were transformed stepwise into PVP/Ag and Ag nanofibers by two-step sequential thermal treatments (i.e., $150^{\circ}C$ in $H_2$ for 0.5 h and $300^{\circ}C$ in Ar for 3 h); however, the fibrous shape was perfectly maintained. The silver nanofibers have ultrahigh aspect ratios of up to 10000 and a small average diameter of 142 nm; they also have fused crossing points with ultra-low junction resistances, which result in high transmittance at low sheet resistance.

탄소 나노튜브가 도입된 정공 주입층에 의한 유기발광다이오드의 성능 특성 연구 (Performance Characteristics of Organic Electroluminescence Diode Using a Carbon Nanotube-Doped Hole Injection Layer)

  • 강학수;박대원;최영선
    • Korean Chemical Engineering Research
    • /
    • 제47권4호
    • /
    • pp.418-423
    • /
    • 2009
  • 유기발광다이오드(OLED)에서 정공 주입층(hole injection layer, HIL)으로 사용되는 poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate)(PEDOT:PSS)에 관능성기가 치환된 MWCNT(multi-wall carbon nanotube)를 도입하여 PEDOT:PSS-MWCNT 나노 복합재 박막을 제조하였다. PEDOT:PSS-MWCNT 박막 층은 ITO 유리 위에 스핀 코팅되어 제조하였으며 FT-IR과 UV-Vis 및 SEM을 이용하여 박막의 투과도 및 개질된 MWCNT 함량에 따른 박막의 모폴로지 특성을 관찰하였다. 또한, ITO/PEDOT:PSS-MWCNT/NPD/$Alq_3$/Al 다층 소자를 제조하여 J-V 및 L-V 특성을 고찰하였다. 산 처리에 의해 관능성기가 도입된 MWCNT는 PEDOT:PSS 용액 내에서 분산성이 확인되었으며, 제조된 박막은 우수한 투과도 특성을 보였다. 다층 소자 특성에서 PEDOT:PSS 층에 개질된 MWCNT 도입으로 MWCNT의 함량이 증가함에 따라 다층 소자의 전류 밀도가 증가됨을 확인하였고, 반면에 소자의 휘도는 급격히 감소하는 특성을 보였다. 이것은 MWCNT에 의하여 전하 이동은 수월하게 하였으나 MWCNT가 가지는 정공을 가두는 성질에 의해 정공 이동도가 저하되었기 때문인 것으로 판단된다.

Contact Transfer Printing Using Bi-layer Functionalized Nanobio Interface for Flexible Plasmonic Sensing

  • Lee, Jihye;Park, Jiyun;Lee, Junyoung;Yeo, Jong-Souk
    • 한국진공학회:학술대회논문집
    • /
    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
    • /
    • pp.413-413
    • /
    • 2014
  • In this paper, we present a fabrication method of functionalized gold nanostructures on flexible substrate that can be implemented for plasmonic sensing application. For biomolecular sensing, many researchers exploit unconventional lithography method like nanoimprint lithography (NIP), contact transfer lithography, soft lithography, colloidal transfer printing due to its usability and easy to functionalization. In particular, nanoimprint and contact transfer lithography need to have anti-adhesion layer for distinctive metallic properties on the flexible substrates. However, when metallic thin film was deposited on the anti-adhesion layer coated substrates, we discover much aggravation of the mold by repetitive use. Thus it would be impossible to get a high quality of metal nanostructure on the transferred substrate for developing flexible electronics based transfer printing. Here we demonstrate a method for nano-pillar mold and transfer the controllable nanoparticle array on the flexible substrates without an anti-adhesion layer. Also functionalization of gold was investigated by the different length of thiol applied for effectively localized surface plasmonic resonance sensing. First, a focused ion beam (FIB) and ICP-RIE are used to fabricate the nanoscale pillar array. Then gold metal layer is deposited onto the patterned nanostructure. The metallic 130 nm and 250 nm nanodisk pattern are transferred onto flexible polymer substrate by bi-layer functionalized contact imprinting which can be tunable surface energy interfaces. Different thiol reagents such as Thioglycolic acid (98%), 3-Mercaptopropionic acid (99%), 11-Mercaptoundecanoic acid (95%) and 16-Mercaptohexadecanoic acid (90%) are used. Overcoming the repeatedly usage of the anti-adhesion layer mold which has less uniformity and not washable interface, contact printing method using bi-layer gold array are not only expedient access to fabrication but also have distinctive properties including anti-adhesion layer free, functionalized bottom of the gold nano disk, repeatedly replicate the pattern on the flexible substrate. As a result we demonstrate the feasibility of flexible plasmonic sensing interface and anticipate that the method can be extended to variable application including the portable bio sensor via mass production of stable nanostructure array and other nanophotonic application.

  • PDF

무전해 도금법으로 제조된 Co(Re,P) capping layer제조 및 특성 평가 (Synthesis and Characterization of The Electrolessly Deposited Co(Re,P) Film for Cu Capping Layer)

  • 한원규;김소진;주정운;조진기;김재홍;염승진;곽노정;김진웅;강성군
    • 한국재료학회지
    • /
    • 제19권2호
    • /
    • pp.61-67
    • /
    • 2009
  • Electrolessly deposited Co (Re,P) was investigated as a possible capping layer for Cu wires. 50 nm Co (Re,P) films were deposited on Cu/Ti-coated silicon wafers which acted as a catalytic seed and an adhesion layer, respectively. To obtain the optimized bath composition, electroless deposition was studied through an electrochemical approach via a linear sweep voltammetry analysis. The results of using this method showed that the best deposition conditions were a $CoSO_4$ concentration of 0.082 mol/l, a solution pH of 9, a $KReO_4$ concentration of 0.0003 mol/l and sodium hypophosphite concentration of 0.1 mol/L at $80^{\circ}C$. The thermal stability of the Co (Re,P) layer as a barrier preventing Cu was evaluated using Auger electron spectroscopy and a Scanning calorimeter. The measurement results showed that Re impurities stabilized the h.c.p. phase up to $550^{\circ}C$ and that the Co (Re,P) film efficiently blocked Cu diffusion under an annealing temperature of $400^{\circ}C$ for 1hr. The good barrier properties that were observed can be explained by the nano-sized grains along with the blocking effect of the impurities at the fast diffusion path of the grain boundaries. The transformation temperature from the amorphous to crystal structure is increased by doping the Re.

ITO/PET 기판 위에 성장된 산화아연 나노로드에 형성된 은 입자의 광학적 특성 및 소수성 표면 연구 (Optical and Hydrophobic Properties of Ag Deposited ZnO Nanorods on ITO/PET)

  • 고영환;김명섭;유재수
    • 한국진공학회지
    • /
    • 제21권4호
    • /
    • pp.205-211
    • /
    • 2012
  • 인듐주석산화막/폴리에틸렌 테레프탈레이트(ITO/PET: indium tin oxide/polyethylene terephthalate) 유연 기판 위에 성장된 산화아연(ZnO) 나노로드(nanorods)를 이용하여 형성된 은(Ag) 입자의 광학적 특성 및 소수성 표면에 대해 조사하였다. 시료를 준비하기 위해 스퍼터링법(sputtering)으로 코팅된 산화아연 씨드층(seed layer)을 이용하여 전기화학증착법(electrochemical deposition)으로 산화아연 나노로드를 성장시킨 후, 열증발증착법(thermal evaporation)을 사용하여 은을 증착하였다. 산화아연 나노로드의 불연속적인 표면 특성 때문에 은이 증착되면서 나노크기를 갖는 입자로 형성되었다. 비교를 위해 같은 조건으로 은을 평평한 ITO/PET에 증착하여 시료를 준비하였으며, 증착되는 은의 양을 조절하기 위해 100초에서 600초까지 열증발증착시간을 변화시켰다. 은 증착시간이 증가할수록 산화아연 나노로드 표면에 형성되는 은 입자의 크기와 양이 증가하였으며, 또한 빛의 흡수율이 가시광 영역에서 크게 증가하는 것을 확인하였다. 이는 은 입자의 국소표면플라즈몬공명(localized surface plasmon resonance)에서 기인된 것으로 짐작한다. 또한 물방울 테스트실험에서 평평한 ITO/PET에 증착된 은에서의 접촉각(contact angle)보다 산화아연 나노로드에 증착된 은 입자에서의 접촉각이 크게 증가함을 보여, 개선된 소수성 표면을 가질 수 있음을 확인하였다. 이러한 광학적 특성과 소수성 표면 결과는 산화아연 나노로드의 기반의 염료감응형 태양전지 또는 자정효과(self-cleaning)를 갖는 표면구조로 유연소자에 유용하게 응용할 수 있을 것으로 기대된다.