• 제목/요약/키워드: Inkjet-Printing Technology

검색결과 135건 처리시간 0.035초

저비용 수제 연신레오미터 개발 및 성능 평가 (Development and performance evaluation of a low-cost custom-made extensional rheometer)

  • 김시현;박한별;김정현
    • 한국가시화정보학회지
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    • 제21권1호
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    • pp.110-118
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    • 2023
  • Characterizing the extensional rheological properties of non-Newtonian fluids is crucial in many industrial processes, such as inkjet printing, injection molding, and fiber engineering. However, educational institutions and research laboratories with budget constraints have limited access to an expensive commercial extensional rheometer. In this study, we developed a custom-made extensional rheometer using a CO2 laser cutting machine and 3D printer. Furthermore, we utilized a smartphone with a low-cost microscopic lens for achieving a high spatial resolution of images. The aqueous polyethylene-oxide (PEO) solutions and a Boger fluid were prepared to characterize their extensional properties. A transition from a visco-capillary to an elasto-capillary regime was observed clearly through the developed rheometer. The extensional relaxation time and viscosity of the aqueous PEO solutions with a zero-shear viscosity of over 300 mPa·s could be quantified in the elasto-capillary regime. The extensional properties of the solutions with relatively small zero shear viscosity could be calculated using a smartphone's slow-motion feature with increasing temporal resolution of the images.

Three-dimensional bio-printing and bone tissue engineering: technical innovations and potential applications in maxillofacial reconstructive surgery

  • Salah, Muhja;Tayebi, Lobat;Moharamzadeh, Keyvan;Naini, Farhad B.
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제42권
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    • pp.18.1-18.9
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    • 2020
  • Background: Bone grafting has been considered the gold standard for hard tissue reconstructive surgery and is widely used for large mandibular defect reconstruction. However, the midface encompasses delicate structures that are surrounded by a complex bone architecture, which makes bone grafting using traditional methods very challenging. Three-dimensional (3D) bioprinting is a developing technology that is derived from the evolution of additive manufacturing. It enables precise development of a scaffold from different available biomaterials that mimic the shape, size, and dimension of a defect without relying only on the surgeon's skills and capabilities, and subsequently, may enhance surgical outcomes and, in turn, patient satisfaction and quality of life. Review: This review summarizes different biomaterial classes that can be used in 3D bioprinters as bioinks to fabricate bone scaffolds, including polymers, bioceramics, and composites. It also describes the advantages and limitations of the three currently used 3D bioprinting technologies: inkjet bioprinting, micro-extrusion, and laserassisted bioprinting. Conclusions: Although 3D bioprinting technology is still in its infancy and requires further development and optimization both in biomaterials and techniques, it offers great promise and potential for facial reconstruction with improved outcome.

1-Octanethiol이 코팅된 나노 구리 분말을 이용한 나노 잉크의 분산도에 대한 연구 (Investigation of Dispersion Stability of Conductive Nano Ink Using 1-Octanethiol Coated Copper Nano Powders)

  • 조단이;백종환;박중학;이선영
    • 한국세라믹학회지
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    • 제49권5호
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    • pp.417-422
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    • 2012
  • Copper nano particles have been considered as the materials for conductive ink due to its good thermal, electrical conductivity and low cost. However, copper nanoparticles oxidize easily, decreasing dispersion stability and electrical conductivity. Therefore, it is important to develop a method to minimize oxidation of copper nano particles to improve its dispersion stability property in copper nano ink. In this study, copper nano particles were coated with 1-Octanethiol VSAM(Vaporized Self Assembled Multilayers) to prevent oxidation and coated copper powders were dispersed in conductive ink successfully by studying its relationship of different chain length of solvents to 1-Octanethiol coating layer to fabricate nano ink. Various alcohol solvents, such as 1-Hexanol, 1-Octanol, and 1-Decanol were used. The coating layer was observed using FESEM and TEM. Furthermore, dispersion of copper nano particles in nano inks, was characterized using Turbiscan analyzer, viscometer, and contact angle measurement tool.

전자장치 응용을 위한 금속(은, 구리) 나노입자의 합성 (Synthesis of Metal Nanoparticles for the Application of Electronic Device)

  • 전병호;조수환;조정민;김성은;김동훈;김성진
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 하계학술대회 논문집
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    • pp.53-53
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    • 2010
  • The development of synthetic pathway to produce a highly yield nanoparticles is an important aspect of industrial technology. Herein, we report a simple, rapid approach to synthesize organic-soluble Cu and Ag nanoparticles in colloidal method for the application in a conductive pattern using inkjet printing. The silver nanoparticles have been synthesized in highly concentrated organic phase. The Cu nanoparticles have been synthesized by the reducing of the copper oxide materials using acid molecules in high concentrated organic phase. Their sintering and electric conductivity properties were investigated by melting process between $200^{\circ}C$ and $250^{\circ}C$ for application to printed electronics.

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Fabrication of sub-micron sized organic field effect transistors

  • 박성찬;허정환;김규태;하정숙
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.84-84
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    • 2010
  • In this study, we report on the novel lithographic patterning method to fabricate organic-semiconductor devices based on photo and e-beam lithography with well-known silicon technology. The method is applied to fabricate pentacene-based organic field effect transistors. Owing to their solubility, sub-micron sized patterning of P3HT and PEDOT has been well established via micromolding in capillaries (MIMIC) and inkjet printing techniques. Since the thermally deposited pentacene cannot be dissolved in solvents, other approach was done to fabricate pentacene FETs with a very short channel length (~30nm), or in-plane orientation of pentacene molecules by using nanometer-scale periodic groove patterns as an alignment layer for high-performance pentacene devices. Here, we introduce the atomic layer deposition of $Al_2O_3$ film on pentacene as a passivation layer. $Al_2O_3$ passivation layer on OTFTs has some advantages in preventing the penetration of water and oxygen and obtaining the long-term stability of electrical properties. AZ5214 and ma N-2402 were used as a photo and e-beam resist, respectively. A few micrometer sized lithography patterns were transferred by wet and dry etching processes. Finally, we fabricated sub-micron sized pentacene FETs and measured their electrical characteristics.

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SLA을 이용한 소수성 표면 제작 (Fabrication of Hydrophobic Surfaces with Stereolithography)

  • 홍성호
    • Tribology and Lubricants
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    • 제37권1호
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    • pp.1-6
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    • 2021
  • This paper presents the experimental results of hydrophobic surfaces developed using a stereolithography-based additive-manufacturing technique. The additive manufacturing technique can be used to manufacture objects with complex geometries from computer-aided design data. Several additive manufacturing methods, such as selective laser sintering, fused deposition modeling, stereolithography apparatus (SLA), and inkjet-based system, have been developed. The SLA is a form of three-dimensional printing technology used to create prototypes, patterns, and production parts in successive layers through photochemical processes. Light causes chemical monomers and oligomers to cross-link together to form objects composed of polymers. Moreover, this method is economical for fabricating surfaces with high output resolution and quality. Here, we fabricate various surfaces using different shapes using an SLA. The surfaces with micro-patterns are fabricated for 10 cases, including the biomimetic surface. The fabricated surfaces with various micro-patterns are evaluated for hydrophobicity performance based on the static contact angle. The contact angle is measured three times for each case, and the averaged value is used. The results indicate that the arrangements in a staggered structure have a larger contact angle than those in a line when the same micro-pattern is applied. Moreover, the mimetic surfaces exhibit more hydrophobic characteristics than those of artificial micro-patterns.

Reduced graphene oxide field-effect transistor for biomolecule detection and study of sensing mechanism

  • Kim, D.J.;Sohn, I.Y.;Kim, D.I.;Yoon, O.J.;Yang, C.W.;Lee, N.E.;Park, J.S.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.431-431
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    • 2011
  • Graphene, two dimensional sheet of sp2-hybridized carbon, has attracted an enormous amount of interest due to excellent electrical, chemical and mechanical properties for the application of transparent conducting films, clean energy devices, field-effect transistors, optoelectronic devices and chemical sensors. Especially, graphene is promising candidate to detect the gas molecules and biomolecules due to the large specific surface area and signal-to-noise ratios. Despite of importance to the disease diagnosis, there are a few reports to demonstrate the graphene- and rGO-FET for biological sensors and the sensing mechanism are not fully understood. Here we describe scalable and facile fabrication of rGO-FET with the capability of label-free, ultrasensitive electrical detection of a cancer biomarker, prostate specific antigen/${\alpha}1$-antichymotrypsin (PSA-ACT) complex, in which the ultrathin rGO sensing channel was simply formed by a uniform self-assembly of two-dimensional rGO nanosheets on aminated pattern generated by inkjet printing. Sensing characteristics of rGO-FET immunosensor showed the highly precise, reliable, and linear shift in the Dirac point with the analyte concentration of PSA-ACT complex and extremely low detection limit as low as 1 fg/ml. We further analyzed the charge doping mechanism, which is the change in the charge carrier in the rGO channel varying by the concentration of biomolecules. Amenability of solution-based scalable fabrication and extremely high performance may enable rGO-FET device as a versatile multiplexed diagnostic biosensor for disease biomarkers.

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유기박막트랜지스터 응용을 위한 탄소가 도핑된 몰리브덴 박막의 특성 (Characteristics of Carbon-Doped Mo Thin Films for the Application in Organic Thin Film Transistor)

  • 김동현;박용섭
    • 한국전기전자재료학회논문지
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    • 제36권6호
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    • pp.588-593
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    • 2023
  • The advantage of OTFT technology is that large-area circuits can be manufactured on flexible substrates using a low-cost solution process such as inkjet printing. Compared to silicon-based inorganic semiconductor processes, the process temperature is lower and the process time is shorter, so it can be widely applied to fields that do not require high electron mobility. Materials that have utility as electrode materials include carbon that can be solution-processed, transparent carbon thin films, and metallic nanoparticles, etc. are being studied. Recently, a technology has been developed to facilitate charge injection by coating the surface of the Al electrode with solution-processable titanium oxide (TiOx), which can greatly improve the performance of OTFT. In order to commercialize OTFT technology, an appropriate method is to use a complementary circuit with excellent reliability and stability. For this, insulators and channel semiconductors using organic materials must have stability in the air. In this study, carbon-doped Mo (MoC) thin films were fabricated with different graphite target power densities via unbalanced magnetron sputtering (UBM). The influence of graphite target power density on the structural, surface area, physical, and electrical properties of MoC films was investigated. MoC thin films deposited by the unbalanced magnetron sputtering method exhibited a smooth and uniform surface. However, as the graphite target power density increased, the rms surface roughness of the MoC film increased, and the hardness and elastic modulus of the MoC thin film increased. Additionally, as the graphite target power density increased, the resistivity value of the MoC film increased. In the performance of an organic thin film transistor using a MoC gate electrode, the carrier mobility, threshold voltage, and drain current on/off ratio (Ion/Ioff) showed 0.15 cm2/V·s, -5.6 V, and 7.5×104, respectively.

인공땀으로 출력한 인공지문의 균질성 평가 (Evaluation of the consistency and homogeneity of artificial latent fingerprint printed with artificial sweat)

  • 홍인기;홍성욱
    • 분석과학
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    • 제28권1호
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    • pp.26-32
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    • 2015
  • 육안검사, 지문융선의 특징점 비교 및 자동지문식별시스템의 특징점 검색기능을 이용해 잉크젯 프린터로 인공잠재지문을 반복적으로 출력해도 인공잠재지문이 균질하고 일관성 있게 출력된다는 것을 입증하였다. 표준잠재지문 출력용 master fingerprint pattern은 살아있는 사람의 지문을 종이에 찍은 후 이를 스캐너로 스캔하여 만들었고 Adobe Photoshop CS 5의 output level 조절기능을 이용해 이 master fingerprint pattern의 세기를 조절하였다. 인공 표준잠재지문은 master fingerprint pattern을 인공땀으로 채운 잉크젯 프린터 카트리지로 출력하는 방법으로 만들었다. 인공땀으로 출력한 표준잠재지문은 ninhydrin과 1,2-Indandion(1,2-IND)/$ZnCl_2$로 처리하여 현출하였다. 두 시약으로 현출한 지문을 육안으로 검사한 결과 잉크를 묻혀 찍은 원지문에 있는 특징들이 표준잠재지문에서도 동일하게 나타나는 것을 확인할 수 있었다. 인공땀을 이용하여 표준잠재지문 100점을 출력한 후 이 중 50점은 ninhydrin으로, 나머지 50점은 1,2-IND/$ZnCl_2$로 처리하여 현출한 후 AFIS의 연산기능을 이용해 특징점을 검색한 결과 ninhydrin으로 현출한 지문은 $52.4{\pm}2.4$개(range = 48~56), 1,2-IND/$ZnCl_2$로 처리한 지문은 $50.2{\pm}1.9$개(range = 47~53)의 특징점이 검색되었다. 이처럼 표준편차가 적게 나타난 점으로 보아 인공적으로 만든 표준잠재지문은 반복적으로 균질하게 출력된다는 것을 알 수 있었다.

양자점 디스플레이 제작을 위한 양자점 패터닝 기술발전 동향 (Recent Developments in Quantum Dot Patterning Technology for Quantum Dot Display)

  • 진영준;정경준;정재한
    • 한국분말재료학회지
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    • 제31권2호
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    • pp.169-179
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    • 2024
  • 양자점 패터닝 기술은 최근 QLED, 센서, laser, 태양전지, 양자컴퓨터 등을 포함한 광전자 응용분야에서 많은 수요가 예상되고 있다. 최근 양자점 패터닝을 위한 다양한 기술이 등장했지만 여전히 실제 산업에 적용에는 힘든 실정이다. 1~100 ㎛에 걸친 다양한 패턴 크기를 구현할 수 있는 전사프린팅은 대면적화가 어렵고 공정과정 중 발생할 수 있는 양자점 필름의 불완전한 박리 문제로 인한 패터닝 수율 문제가 보고 되고 있다. 기존 반도체 공정을 활용할 수 있는 포토리소그래피를 활용한 양자점 패터닝은 초고해상도로 픽셀을 패터닝 할 수 있다는 장점이 있지만, 포토레지스트를 제거하기 위해 쓰이는 용매에 의해 양자점 패턴 자체가 손상될 수도 있고 오염되어 광 효율이 낮아질 수 있다는 우려가 있다. 포토레지스트를 사용하지 않고 양자점의 용해도를 활용한 직접 광경화 공정이 주목받았지만, 패터닝 과정 중 생기는 결함과 비방사성 재결합으로 인해 양자점의 발광 효율이 떨어진다는 단점이 있어 표면 처리 등의 연구가 더욱 요구된다. 잉크젯 프린팅은 대면적화가 쉽고 상대적으로 경제적이라는 장점이 있으나 패턴의 불균일성과 낮은 해상도의 단점이 있다. 다양한 양자점 패터닝 방법 기술개발을 통해 QLED 소자에만 국한되는 것이 아니라 태양전지, 양자 통신, 양자 컴퓨터 등에도 적용이 기대된다.