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        초 고농도 Ag 나노 졸의 입자크기 제어가 잉크 점성거동에 미치는 영향

        송해천,남산,이병석,최영민,류병환,Song, Hae-Chon,Nham, Sahn,Lee, Byong-Seok,Choi, Young-Min,Ryu, Beyong-Hwan 한국세라믹학회 2009 한국세라믹학회지 Vol.46 No.1

        The rheological properties of highly concentrated Ag nano sol depending on particle size were studied. The Ag nano sol was prepared by reducing the Ag ion in aqueous solution. The size of Ag nano particle was controlled by two steps of nucleation and growth, and the thickness of adsorption layer was varied by molecular weight of polyelectrolytes. The polyelectrolytes acted as not only ionic complex agent in ionic state and but also dispersant after formation of Ag nano sol. The effective volume was controlled by combination of varying the molecular weight of polyelectrolytes and the size Ag nano sol. The particle size and the viscosity of nano sol were characterized by particle size analyzer, HR-TEM and cone & plate viscometer. It was found that the 10 nm and 40 nm-sized Ag nano sols were prepared by controlling the nucleation and growth steps, respectively. Finally, we could prepare highly concentrated Ag nano sol over 50 wt%.

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        $La(Mg_{1/2}Ti_{1/2})O_3$ 세라믹스의 구조 및 고주파 유전 특성 연구

        여재현,백종후,남산,이확주,박현민,변재동,Yeo, Jae-Hyun,Baek, Jong-Hu,Nham, Sahn,Lee, Hwack-Joo,Park, Hyun-Min,Byun, Jae-Dong 한국재료학회 1999 한국재료학회지 Vol.9 No.9

        $La(Mg_{1/2}Ti_{1/2})O_3$ 세라믹스의 구조 및 고주파 유전특성에 관한 연구를 하였다. $La(Mg_{1/2}Ti_{1/2})O_3$ 는 B site 양이온이 1:1 규칙화된 단사정 구조를 가지고 있었고 격자상수는 $a = 5.5467(3) {\AA}, b = 5.5616(3) {\AA}, c = 7.8426(5) {\AA} 그리고 \beta = 89.9589 (2)^{\circ}$ 로 밝혀졌고. $P2_1/n$의 공간군을 가지고 있었다. $La(Mg_{1/2}Ti_{1/2})O_3$ 내부에는 산소팔면체의 동상 및 역상 기울림이 존재하고 $a^_a^_c^_$ 기울림 구조를 가지고 있음을 알수 있었다. 또한 A site 양이온의 역 평행이동도 발견되었다. $1600^{\circ}C$ 이상에서 소결된 시료는 모두 95% 이상의 상대이론 밀도를 가지고 있었고 유전상수는 대략 28 정도였다. $1630^{\circ}C$ 에서 5시간 소결된 시료에서 최고높은 $Q\timesf_0$값, 63,000을 얻었다. LMT의 공진주파수 온도 계수는 $>-77 ppm/^{\circ}C ~ -79 ppm/^{\circ}C$였다. The crystal structure and the microwave dielectric properties of $La(Mg_{1/2}Ti_{1/2})O_3$ ceramics have been investigated. $La(Mg_{1/2}Ti_{1/2})O_3$ has the 1:1 ordered monoclinic structure with the lattice parameters of $a = 5.5467(3){\AA}, b = 5.5616(3){\AA}, c = 7.8426(5) {\AA} and \beta = 89.9589 (2)^{\circ}$ The spacegroup of LMT is $P2_1/n$. Monoclinic LMT has the in­phase and anti-phase tilting of octahedra with the $a^_a^_c^_$ tilting system. Anti-parallel shift of A-site cations was also found in LMT. The relative density of the specimens sintered above $1600^{\circ}C$ was ranged between 95 % and 96 % of the theoretical density and the dielectric constant of specimens was about 28. The highest $Q\timesf$ achieved in this investigation was 63,100 for the specimen sintered at $1630^{\circ}C$ for 5 hr. Temperature coefficient of resonance frequency ranged from $>-74 ppm/^{\circ}C ~ -79 ppm/^{\circ}C$.

      • Changes in the composition according to the manufacturer and the characteristics of the ceramic support

        권용진(Kwom, Yongjin),최병현(Choi, Byunghyun),지미정(Jee, Mijung),안용태(Ahn, Yongtae),설광희(Seol, Kwanghee),남산(Nham, Shan) 한국신재생에너지학회 2011 한국신재생에너지학회 학술대회논문집 Vol.2011 No.11

        In this study, we fabricated tubular ceramic support for segmented-in-series solid oxide fuel cell (SOFC) by using MAO(MgAl-stabilized ) as main material and activated carbon as pore former. Thermal expansion properties of ceramic support with different amounts of activated carbon were analyzed by using dilatometer to decide a suitable sintering temperature. The tubular ceramic supports with different amounts of activated carbon (15, 20, 30wt.%) were fabricated by the extrusion technique. After sintering at 1400?C for 2h, cross section and surface morphology of tubular ceramic support were analyzed by using SEM image. Also, the porosity, mechanical property, gas permeability of tubular ceramic supports was measured. Based on these results, we established the suitable fabrication technique of tubular ceramic support for segmented-in-series SOFC.

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