• 제목/요약/키워드: nano-Silica

검색결과 411건 처리시간 0.027초

전도성 나노 구리잉크의 잉크젯 프린팅 유변학적 거동 및 광소결 특성 평가 (Rheological behavior and IPL sintering properties of conductive nano copper ink using ink-jet printing)

  • 이제영;이도경;남산;최정훈;황광택;김진호
    • 한국결정성장학회지
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    • 제30권5호
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    • pp.174-182
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    • 2020
  • 최근 잉크젯 프린팅 기술을 이용한 인쇄전자 분야가 차세대 기술로서 각광받고 있으며, 복수의 프린트 헤드(head)로부터 다양한 잉크 형태의 소재를 정밀하게 출력하여 적층할 수 있는 3D 프린팅 기술에 관한 연구가 활발하게 진행되고 있다. 본 연구에서는 잉크젯 3D 프린팅 기술을 이용하여 광경화성 실리카 잉크와 PVP가 첨가된 나노 구리 잉크로 절연층과 전도층의 복합구조체를 제작하였다. 프린팅 구동 조건과 잉크의 유변학적 거동을 최적화하여 정밀한 광경화 실리카 절연층을 적층 제조하였으며, 절연층의 저항은 2.43 × 1013 Ω·cm의 값을 나타내었다. 광경화 실리카 절연층 위에는 액적 간격 제어를 통하여 나노 구리 전도층을 프린팅하였다. PVP 첨가 나노 구리 잉크의 소결은 IPL 광소결 공정을 이용하였으며, 어닐링 온도와 인가 전압 변화에 따른 전기적, 기계적 특성을 확인하였다. 100℃ 어닐링 온도와 700 V IPL 광소결 조건에서 PVP가 첨가된 나노 구리 전도층의 저항은 29 μΩ·cm으로 매우 낮으며, 광경화 실리카 절연층과의 접착력은 매우 우수한 것으로 확인하였다.

나노구체의 자기조립 성질과 표면장력을 이용한 나노유체필터 및 나노포어 마이크로믹서 (Development of the Nanofluidic Filter and Nanopore Micromixer Using Self-Assembly of Nano-Spheres and Surface Tension)

  • 서영호;최두선
    • 대한기계학회논문집A
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    • 제31권9호
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    • pp.910-914
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    • 2007
  • We present a simple and an inexpensive method for the fabrication of a nano-fluidic filter and a nano-pore micromixer using self-assembly of nano-spheres and surface tension. Colloid-plug was formed by surface tension of liquid in a microchannel to fabricate nanofluidic filter. When colloid is evaporated, nano-spheres in a colloid are orderly stacked by a capillary force. Orderly stacked nano-spheres form 3-D nano-mesh which can be used as a mesh structure of a fluidic filter. We used silica nano-sphere whose diameter is $567{\pm}85nm$, and silicon micro-channel of $50{\mu}m$-diameter. Fabricated nano-fluidic filter in a micro-channel has median pore diameter of 158nm which was in agreement with expected diameter of the nano-pore of $128{\pm}19nm$. A nano-pore micromixer consists of $200\;{\mu}m-wide,\;100\;{\mu}m-deep$ micro-channel and self-assembled nano-spheres. In the nano-pore micromixer, two different fluids had no sooner met together than two fluids begin to mix at wide region. From the experimental study, we completely apply self-assembly of nano-spheres to nano-fluidic devices.

나노 기공성 단열 실리카 모노리스 제조 및 특성 연구 (Preparation and characterization of nanoporous monolith with high thermal insulation performance)

  • 최현묵;김성우
    • 한국응용과학기술학회지
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    • 제31권1호
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    • pp.83-91
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    • 2014
  • 본 연구에서는 졸-겔, 용매치환, 표면개질, 상압건조 공정과 계면활성제에 의한 템플레이팅(templating) 공법 및 소결 공정을 이용하여 실리카 에어로겔 모노리스와 메조포러스 실리카 모노리스를 각각 합성하였다. 제조된 두 종류의 실리카 모노리스는 균열이 없이 비교적 투명하였으며, 매우 높은 기공율(92-94%) 및 비표면적($800-840m^2/g$)과 수 십 nm 수준의 기공 크기를 갖는 것으로 확인되었다. 표면개질을 적용한 실리카 에어로겔 샘플이 스피링백 효과로 인하여 메조포러스 실리카 모노리스에 비해 더욱 미세하고 균질한 나노 기공 구조를 보였을 뿐만 아니라, 그 단열 성능도 더욱 우수한 것으로 나타났다. 본 연구를 통해 합성된 두 종류의 실리카 모노리스를 중간층으로 적용한 복층 창유리의 단열 성능을 측정된 모노리스의 열전도도와 이론식을 근거로 조사한 결과, 기존의 상업적으로 응용되는 공기층 삽입 복층 창유리에 비해 우수한 단열 성능을 보이는 것으로 나타났다.

Surface Modification of Silica Spheres for Copper Removal

  • Kim, Byoung-Ju;Park, Eun-Hye;Kang, Kwang-Sun
    • 대한화학회지
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    • 제60권5호
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    • pp.317-320
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    • 2016
  • Efficient copper removal from water was achieved by using surface modified silica spheres with 3-mercaptopropyltrimethoxysilane (MPTMS) using base catalyst. The surface modification of silica spheres was performed by hydrolysis and condensation reactions of the MPTMS. The characteristic infrared absorption peaks at 2929, 1454, and 1343 cm−1 represent the −CH2 stretching vibration, asymmetric deformation, and deformation, respectively. The absorption peaks at 2580 and 693 cm−1 corresponding the −SH stretching vibration and the C-S stretching vibration indicate the incorporation of MPTMS to the surface of silica spheres. Field emission scanning electron microscope (FESEM) image of the surface modified silica sphere (SMSS) shows nano-particles of MPTMS on the surface of silica spheres. High concentration of copper solution (1000 ppm) was used to test the copper removal efficiency and uptake capacity. The FESEM image of SMSS treated with the copper solution shows large number of copper lumps on the surface of SMSS. The copper concentration drastically decreased with increasing the amount of SMSS. The residual copper concentrations were analyzed using inductively coupled plasma mass spectrometer. The copper removal efficiency and uptake capacity with 1000 ppm of copper solution were 99.99 % and 125 mg/g, respectively.

Review study towards effect of Silica Fume on the fresh and hardened properties of concrete

  • Imam, Ashhad;Kumar, Vikash;Srivastava, Vikas
    • Advances in concrete construction
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    • 제6권2호
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    • pp.145-157
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    • 2018
  • This paper presents a review on the use of Silica Fume (SF) as a mineral admixture in the concrete. Distinctive outcome from several researches have been demonstrated here, particularly emphasizing on the fresh and hardened properties of concrete when blended with Silica Fume (Micro-silica or Nano-silica). The results showed a substantial enhancement in the mechanical properties of concrete when replaced with SF. The review also presented a brief idea of percentage replacement of SF in case of normal and high-strength concrete. A decreasing trend in workability (slump value) has been identified when there is a increase in percentage replacement of SF. It can be concluded that the optimize percentage of replacement with SF lies in the range of 8-10% particularly for compressive strength. However the variation of blending goes up to 12-15% in case of split tensile and flexure strength of concrete. The study also demonstrates the effect of silica fume on durability parameters like water absorption, permeability, sulphate attack and chloride attack.

Synthesis of Nanoporous Carbon as a Gas Adsorbent by Reverse Replication Process of Silica Template

  • Cho, Churl-Hee;Kim, Joon-Soo;Kim, Hong-Soo;Ahn, Young-Soo;Han, Moon-Hee;Yoo, Jong-Sung
    • 한국세라믹학회지
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    • 제40권6호
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    • pp.519-524
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    • 2003
  • Porous carbon with high surface area and pore volume was prepared by a reverse replication process and its toluene equilibrium adsorption behavior was investigated. The preparation process of the porous carbon was composed of fellowing sub-processes in series: synthesis and template preparation of silica gel, impregnation and polymerization of DVB monomer in silica template, carbonization of DVB polymer in a silica-polymer composite, and HF-assisted selective etching of silica in carbon-silica composite. The prepared porous carbon was nano porous and had ultrahigh specific surface area (2007 ㎡/g) and large pore volume (3.07 ㎤/g). The nanoporous carbon showed rapid toluene adsorption rate and good toluene adsorption capacity, compared with a commercial Y-type zeolite. In the present study, a reverse replication process to prepare nanoporous carbons will be introduced and its application potential as a gas adsorbent will be discussed.

나노 세리아 입자가 표면 코팅된 콜로이달 실리카 슬러리의 Oxide film 연마특성 (Polishing of Oxide film by colloidal silica coated with nano ceria)

  • 김환철;이승호;김대성;임형미
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2005년도 하계학술대회 논문집 Vol.6
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    • pp.35-37
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    • 2005
  • 100, 200nm 크기의 colloidal silica 각각에 나노 ceria 입자를 수열합성법으로 코팅하였다. Colloidal silica 입자에 ceria를 코팅 시 slurry의 pH조절과 수열처리에 이용하여 silica에 ceria가 코팅됨을 TEM과 zeta-potential을 이용하여 확인하였다. 연마 슬러리의 분산 안정성과 연마효율을 높이기 위하여 슬러리의 pH 는 9로 하였으며, 이때의 zeta-potential 값은 -25 mV이었다. 1 wt%로 제조된 연마슬러리를 이용하여, 4 inch $SiO_2$, $Si_3N_4$ wafer를 압력변화에 따른 연마특성을 관찰 하였다. Ceria coated colloidal silica 100 nm, 200 nm와 commercial한 $CeO_2$입자를 연마압력 6 psi로 oxide film을 연마한 결과 연마율이 각각 2490 ${\AA}/min$, 4200 ${\AA}/min$, 4300 ${\AA}/min$으로 측정되었다. 또한 $SiO_2$, $Si_3N_4$ film의 6 psi압력에서 ceria coated colloidal silica 100 nm, 200 nm와 commercial 한 $CeO_2$입자의 선택비는 3, 3.8, 6.7 이었다. 입자크기가 클수록 연마율이 높으며, Preston equation을 따라 연마 압력과 연마율이 비례하였다.

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Influence of nano alumina coating on the flexural bond strength between zirconia and resin cement

  • Akay, Canan;Tanis, Merve Cakirbay;Mumcu, Emre;Kilicarslan, Mehmet Ali;Sen, Murat
    • The Journal of Advanced Prosthodontics
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    • 제10권1호
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    • pp.43-49
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    • 2018
  • PURPOSE. The purpose of this in vitro study is to examine the effects of a nano-structured alumina coating on the adhesion between resin cements and zirconia ceramics using a four-point bending test. MATERIALS AND METHODS. 100 pairs of zirconium bar specimens were prepared with dimensions of $25mm{\times}2mm{\times}5mm$ and cementation surfaces of $5mm{\times}2mm$. The samples were divided into 5 groups of 20 pairs each. The groups are as follows: Group I (C) - Control with no surface modification, Group II (APA) - airborne-particle-abrasion with $110{\mu}m$ high-purity aluminum oxide ($Al_2O_3$) particles, Group III (ROC) - airborne-particle-abrasion with $110{\mu}m$ silica modified aluminum oxide ($Al_2O_3+SiO_2$) particles, Group IV (TCS) - tribochemical silica coated with $Al_2O_3$ particles, and Group V (AlC) - nano alumina coating. The surface modifications were assessed on two samples selected from each group by atomic force microscopy and scanning electron microscopy. The samples were cemented with two different self-adhesive resin cements. The bending bond strength was evaluated by mechanical testing. RESULTS. According to the ANOVA results, surface treatments, different cement types, and their interactions were statistically significant (P<.05). The highest flexural bond strengths were obtained in nano-structured alumina coated zirconia surfaces (50.4 MPa) and the lowest values were obtained in the control group (12.00 MPa), both of which were cemented using a self-adhesive resin cement. CONCLUSION. The surface modifications tested in the current study affected the surface roughness and flexural bond strength of zirconia. The nano alumina coating method significantly increased the flexural bond strength of zirconia ceramics.

Influence of nano-structured alumina coating on shear bond strength between Y-TZP ceramic and various dual-cured resin cements

  • Lee, Jung-Jin;Choi, Jung-Yun;Seo, Jae-Min
    • The Journal of Advanced Prosthodontics
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    • 제9권2호
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    • pp.130-137
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    • 2017
  • PURPOSE. The purpose of this study was to evaluate the effect of nano-structured alumina surface coating on shear bond strength between Y-TZP ceramic and various dual-cured resin cements. MATERIALS AND METHODS. A total of 90 disk-shaped zirconia specimens (HASS CO., Gangneung, Korea) were divided into three groups by surface treatment method: (1) airborne particle abrasion, (2) tribochemicalsilica coating, and (3) nano-structured alumina coating. Each group was categorized into three subgroups of ten specimens and bonded with three different types of dual-cured resin cements. After thermocycling, shear bond strength was measured and failure modes were observed through FE-SEM. Two-way ANOVA and the Tukey's HSD test were performed to determine the effects of surface treatment method and type of cement on bond strength (P<.05). To confirm the correlation of surface treatment and failure mode, the Chi-square test was used. RESULTS. Groups treated with the nano-structured alumina coating showed significantly higher shear bond strength compared to other groups treated with airborne particle abrasion or tribochemical silica coating. Clearfil SA Luting showed a significantly higher shear bond strength compared to RelyX ARC and RelyX Unicem. The cohesive failure mode was observed to be dominant in the groups treated with nano-structured alumina coating, while the adhesive failure mode was prevalent in the groups treated with either airborne particle abrasion or tribochemical silica coating. CONCLUSION. Nano-structured alumina coating is an effective zirconia surface treatment method for enhancing the bond strength between Y-TZP ceramic and various dual-cured resin cements.

나노 실리카 분말을 혼입한 콘크리트의 내화성능연구 (A Study on Fire-Resistant Performance of Concrete Using Nano-Silica Perticles)

  • 조병완;박종빈;박종화
    • 콘크리트학회논문집
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    • 제17권2호
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    • pp.247-254
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    • 2005
  • 일반적으로 콘크리트는 다른 구조재료에 비해서 우수한 내화성능을 가지고 있기 때문에 내화구조 또는 방화구조 재료로 널리 사용되고 있으나, 화재시 가열에 의해 열응력과 열변형에 의한 손상뿐 아니라 폭렬현상과 같은 국부적인 파괴가 일어나게 된다. 따라서 이를 보완하기 위한 여러 연구가 진행되어지고 있다. 또한 최근, 첨단 나노기술은 일반적인 재료들과 다른 독특한 물리적, 화학적 특성을 갖도록 개발되고 있다. 나노 $SiO_2$가 혼입된 콘크리트의 내부온도, 중량손실률 및 압축강도 특성을 비교$\cdot$검토하여 높은 응력의 내화와 낮은 열적 거동의 증진을 연구하였다. 본 연구에서는 나노입자가 시멘트 중량의 0, 2, 4, $6\%$ 포함된 시편 (${\Phi}100{\times}200 mm$)과 화력 온도 $200^{\circ}C$, $500^{\circ}C$, $800^{\circ}C$에서 실험을 수행하였다. 그 결과 나노 입자 혼입률이 증가할수록 화력을 가한 후의 콘크리트 중량 손실률은 점차 감소하고, 압축, 강도는 효과적으로 증가하였다. 따라서 고온에서의 물리적 역학적 실험결과 강도 및 내부온도 증가면에서는 보통 콘크리트와 비교하여 충분히 건설용 구조재료로서의 사용이 가능할 것으로 판단된다.