• 제목/요약/키워드: printable

검색결과 109건 처리시간 0.027초

양성자 교환막 연료전지용 탄소 복합재료 분리판 개발 (Development of Carbon Composite Bipolar Plates for PEMFC)

  • 임준우
    • Composites Research
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    • 제32권5호
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    • pp.222-228
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    • 2019
  • 양성자 교환막 연료전지 (PEMFC) 시스템은 환경 친화적인 전력 공급원으로 많은 잠재적 용도를 가지고 있다. 탄소섬유 복합재료 분리판은 산성환경에서 내부식성이 우수하며 높은 비강도와 비강성을 갖지만, 상대적으로 낮은 전기전도도로 인하여 PEMFC의 효율을 떨어뜨린다. 본 연구에서는 분리판의 전기 저항을 감소시키기 위하여 전기 전도성 입자(흑연 분말과 카본 블랙)를 탄소-에폭시 복합재료 프리프레그에 도포하였다. 전기 저항과 기계적 특성을 기존의 시험 방법을 사용하여 측정하였으며, 개발된 탄소 복합재료 분리판의 단위 셀 성능평가를 실시하여 기존의 분리판과 비교하였다.

3D Printing of Materials and Printing Parameters with Animal Resources: A Review

  • Eun Young Jeon;Yuri Kim;Hyun-Jung Yun;Bum-Keun Kim;Yun-Sang Choi
    • 한국축산식품학회지
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    • 제44권2호
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    • pp.225-238
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    • 2024
  • 3D printing technology enables the production of creative and personalized food products that meet consumer needs, such as an attractive visual appearance, fortification of specific nutrients, and modified textures. To popularize and diversify 3D-printed foods, an evaluation of the printing feasibility of various food pastes, including materials that cannot be printed natively, is necessary. Most animal resources, such as meat, milk, and eggs, are not inherently printable; therefore, the rheological properties governing printability should be improved through pre-/post-processing or adding appropriate additives. This review provides the latest progress in extrusion-based 3D printing of animal resource-based inks. In addition, this review discusses the effects of ink composition, printing conditions, and post-processing on the printing performance and characteristics of printed constructs. Further research is required to enhance the sensory quality and nutritional and textural properties of animal resource-based printed foods.

The effect of film morphology by bar-coating process for large area perovskite solar modules

  • Ju, Yeonkyeong;Kim, Byeong Jo;Lee, Sang Myeong;Yoon, Jungjin;Jung, Hyun Suk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.416-416
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    • 2016
  • Organic-inorganic metal halide perovskite solar cells have received attention because it has a number of advantages with excellent light harvesting, high carrier mobility, and facile solution processability and also recorded recently power conversion efficiency (PCEs) of over 20%. The major issue on perovskite solar cells have been reached the limit of small area laboratory scale devices produced using fabrication techniques such as spin coating and physical vapor deposition which are incompatible with low-cost and large area fabrication of perovskite solar cells using printing and coating techniques. To solution these problems, we have investigated the feasibility of achieving fully printable perovskite solar cells by the blade-coating technique. The blade-coating fabrication has been widely used to fabricate organic solar cells (OSCs) and is proven to be a simple, environment-friendly, and low-cost method for the solution-processed photovoltaic. Moreover, the film morphology control in the blade-coating method is much easier than the spray coating and roll-to-roll printing; high-quality photoactive layers with controllable thickness can be performed by using a precisely polished blade with low surface roughness and coating gap control between blade and coating substrate[1]. In order to fabricate perovskite devices with good efficiency, one of the main factors in printed electronic processing is the fabrication of thin films with controlled morphology, high surface coverage and minimum pinholes for high performance, printed thin film perovskite solar cells. Charge dissociation efficiency, charge transport and diffusion length of charge species are dependent on the crystallinity of the film [2]. We fabricated the printed perovskite solar cells with large area and flexible by the bar-coating. The morphology of printed film could be closely related with the condition of the bar-coating technique such as coating speed, concentration and amount of solution, drying condition, and suitable film thickness was also studied by using the optical analysis with SEM. Electrical performance of printed devices is gives hysteresis and efficiency distribution.

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솔-젤법에 의해 제조된 실리콘 태양전지 전극형성용 나노 글래스 (Sol-gel Derived Nano-glass for Silicon Solar Cell Metallization)

  • 강성구;이창완;정윤장;김창균;김성탁;김동환;이영국
    • Current Photovoltaic Research
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    • 제2권4호
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    • pp.173-176
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    • 2014
  • We have investigated the seed layer formation of front side contact using the inkjet printing process. Conductive silver ink was printed on textured Si wafers with 80 nm thick $SiN_x$ anti reflection coating (ARC) layers and thickened by light induced plating (LIP). The inkjet printable sliver inks were specifically formulated for inkjet printing on these substrates. Also, a novel method to prepare nano-sized glass frits by the sol-gel process with particle sizes around 5 nm is presented. Furthermore, dispersion stability of the formulated ink was measured using a Turbiscan. By implementing these glass frits, it was found that a continuous and uniform seed layer with a line width of $40{\mu}m$ could be formed by a inkjet printing process. We also investigated the contact resistance between the front contact and emitter using the transfer length model (TLM). On an emitter with the sheet resistance of $60{\Omega}/sq$, a specific contact resistance (${\rho}_c$) below $10m{\Omega}{\cdot}cm^2$ could be achieved at a peak firing temperature around $700^{\circ}C$. In addition, the correlation between the contact resistance and interface microstructures were studied using scanning electron microscopy (SEM). We found that the added glass particles act as a very effective fire through agent, and Ag crystallites are formed along the interface glass layer.

유기 강유전 박막의 종이기판 응용가능성 검토 (Experimental study on the Organic Ferroelectric Thin Film on Paper Substrate)

  • 박병은
    • 한국산학기술학회논문지
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    • 제16권3호
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    • pp.2131-2134
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    • 2015
  • 본 논문에서는 종이를 기판으로 사용하고 용액공정이 가능한 강유전체 메모리 소자의 제작 가능성을 검토하였다. 유기물 강유전체인 "폴리비닐리덴트리플루오르에틸렌" 용액을 하부전극이 형성된 종이기판 위에 스핀코핑 방법을 이용하여 도포하였다. 하부전극으로는 진공증착법을 이용하여 알루미늄을 증착하였고, 도포된 "폴리비닐리덴트리플루오르에틸렌" 용액은 열처리 과정을 통해 결정화하였다. 제작된 "폴리비닐리덴트리플루오르에틸렌" 박막은 주사 전자 현미경법(SEM), 원자간력 현미경(AFM)을 이용하여 박막의 단면 및 표면의 특성을 평가하였다. 전압에 따른 분극특성 측정을 통해, 종이기판 위에 형성된 "폴리비닐리덴트리플루오르에틸렌" 박막이 매우 훌륭한 강유전체 특성을 보여주고 있음을 확인하였다. 또한, 종이기판의 응용가능성을 검토하기 위하여, 실리콘 기판위에 제작한 "폴리비닐리덴트리플루오르에틸렌" 박막과의 비교에 있어서도 손색없는 강유전체 특성을 보여주고 있음을 알 수 있었다. 이러한 결과들은 종이를 기판으로 이용하여 전자소자들을 제작 할 수 있음을 시사하며, 또한 용액공정으로 고밀도의 저렴한 강유전체 메모리 소자를 손쉽게 제작 할 수 있다는 것을 의미한다.

융합 디지털콘텐츠에 적합한 UCI 식별자 구문구조 개선 (The Improved UCI Identifier Syntax for Convergence Digital Contents)

  • 강상욱;박상현;임규건
    • 전자공학회논문지
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    • 제53권9호
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    • pp.82-88
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    • 2016
  • 제안한 개선안은 인쇄, 바코드, QR코드 등 콘텐츠 유형에 따라 고정된 길이를 사용하여 코드 자체의 활용이 용이하면서 기존 식별자도 최대한 활용할 수 있게 한다. 이를 위해 우선 UCI 식별메타데이터 요소를 변경하여 기존의 UCI 식별자를 key로 변경하고 새로운 식별자를 UCI로 정의하여 사용하며, 새로운 UCI는 변환서비스 및 표현에 사용하고, key는 내부DB 관리용으로 사용한다. 또한 개체코드는 의미가 있는 코드와 의미가 없는 코드로 분류하며, 의미를 부여할 경우에는 음악, 만화, 영화 등의 콘텐츠 분야별 또는 게임, 광고 등 비즈니스 영역별로 표준화된 분류체계에 따른 의미의 부여가 가능하다. 한 기관이 자체적으로 의미를 부여해도 무관하지만 코드를 활용하고 이용하는 데는 불편함이 따를 경우에는 등록 관리기관 또는 단체에서 콘텐츠의 분류체계를 표준화하고, 이를 코드별 의미를 총괄기관에서 제정할 수 있도록 지원한다.

방사선 차폐를 위한 3D 프린팅용 텅스텐-고분자 복합체 설계 (3D Printing of Tungsten-Polymer Composites for Radiation Shielding)

  • 엄돈건;김신현
    • 한국방사선학회논문지
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    • 제14권5호
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    • pp.643-650
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    • 2020
  • 가공이 용이한 방사능 차폐 소재, 특히 3D 프린팅이 가능한 소재는 원전용 로봇을 구현하거나 개인용 보호 장구 설계에 매우 중요하다. 본 연구에서는 FDM 방식의 3D 프린팅에 널리 사용되는 고분자 소재인 PLA와 ABS에 방사능 차폐 성능이 우수한 텅스텐 입자를 도입함으로써 3D프린팅이 가능한 방사능 차폐 소재를 구현하였다. 해당 소재는 거시적인 응집체 형성 없이 질량비 기준 텅스텐 함량을 50%까지 도입할 수 있으며, 3D 프린팅을 통해 임의의 형상을 갖는 구조체를 형성할 수 있다. 본 연구에서는 하나의 적용예로 방사능에 취약한 PCB를 보호할 수 있는 로봇 부속품을 텅스텐-고분자 복합체를 이용해 출력하고, 이들을 조립하여 실제 구동 가능한 로봇을 구현하였다.

High Transparent, High Mobility MoO3 Intergraded InZnO Films for Use as a Transparent Anode in Organic Solar cells

  • Kim, Hyo-Jung;Kang, Sin-Bi;Na, Seok-In;Kim, Han-Ki
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.343-343
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    • 2014
  • We reported on the electrical, optical, structural and morphological properties fabricated by co-sputtering for use as an anode for organic solar cells (OSCs). By adjusting RF and DC power of $MoO_3$ and IZO targets during co-sputtering, we fabricated the $MoO_3$-IZO electrode with graded content of the $MoO_3$ on the IZO films. At optimized $MoO_3$ thickness of 20 nm, the $MoO_3$ graded IZO electrode showed a higher mobility ($33cm^2/V-Sec$) than directly deposited $MoO_3$ on IZO film ($26cm^2/V-Sec$). At visible range (400nm~800nm), optical transmittance of the $MoO_3$ graded IZO electrode is higher than that of directly deposited $MoO_3$ on IZO film. High mobility of $MoO_3$ graded on IZO is attributed to less interface scattering between $MoO_3$ and IZO. To investigate the feasibility of $MoO_3$ graded IZO films, we fabricated conventional P3HT:PCBM based OSCs with $MoO_3$ graded IZO as a function of MoO3 thickness. The OSC fabricated on the $MoO_3$ graded IZO anode showed a fill factor of 66.53%, a short circuit current of $8.121mA/cm^2$, an open circuit voltage of 0.592 V, and a power conversion efficiency of 3.2% comparable to OSC fabricated on ITO anode and higher than directly deposited $MoO_3$ on IZO film. We suggested possible mechanism to explain the high performance of OSCs with a $MoO_3$ graded IZO.

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Electrochromic Device for the Reflective Type Display Using Reversible Electrodeposition System

  • Kim, Tae-Youb;Cho, Seong M.;Ah, Chil Seong;Suh, Kyung-Soo;Ryu, Hojun;Chu, Hye Yong
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.232.1-232.1
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    • 2014
  • The green displays are the human friendly displays, the nature friendly displays, and the economical displays. Electrochromic displays are low cost and environmental devices because they do have more choice of colours and use much less power. The elements of the electrochromic devices consist of at least two conductors, an electrochromic material and an electrolyte. The optical properties were obtained using the optical contrast between the transparency of the substrate and the coloured state of the electrochromic materials. These devices can be fully flexible and printable. Due to the characteristics of the high coloration efficiency and memory effects, the electrochromic devices have been used in various applications such as information displays, smart windows, light shutters and electronic papers. Among these technical fields switchable mirrors have been received much attention in the applicative point of view of various electronic devices production. We have developed a novel silver (Ag) deposition-based electrochromic device for the reversible electrodeposition (RED) system. The electrochromic device can switch between transparent states and mirror states in response to a change in the applied voltage. The dynamic range of transmittance percent (%) for the fabricated device is about 90% at 550 nm wavelength. Also, we successfully fabricated the large area RED display system using the parted electrochromic cells of the honey comb structure.

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Brush-painted Ti-doped In2O3 Transparent Conducting Electrodes Using Nano-particle Solution for Printable Organic Solar Cells

  • 정진아;김한기
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.458.2-458.2
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    • 2014
  • We have demonstrated that simple brush-painted Ti-doped $In_2O_3$(TIO) films can be used as a cost effective transparent anodes for organic solar cells (OSCs). We examined the RTA effects on the electrical, optical, and structural properties of the brush painted TIO electrodes. By the direct brushing of TIO nanoparticle ink and rapid thermal annealing (RTA), we can simply obtain TIO electrodes with a low sheet resistance of 28.25 Ohm/square and a high optical transmittance of 85.48% under atmospheric ambient conditions. Furthermore, improvements in the connectivity of the TIO nano-particles in the top region during the RTA process play an important role in reducing the resistivity of the brush-painted TIO anode. In particular, the brush painted TIO films showed a much higher mobility ($33.4cm^2/V-s$) than that of previously reported solution-process transparent oxide films ($1{\sim}5cm^2/V-s$) due to the effects of the Ti dopant with higher Lewis acid strength (3.06) and the reduced contact resistance of TIO nanoparticles. The OSCs fabricated on the brush-painted TIO films exhibited cell-performance with an open circuit voltage (Voc) of 0.61 V, shot circuit current (Jsc) of $7.90mA/cm^2$, fill factor (FF) of 61%, and power conversion efficiency (PCE) of 2.94%. This indicates that brush-painted TIO film is a promising cost-effective transparent electrode for printing-based OSCs with its simple process and high performance.

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