• 제목/요약/키워드: Growth temperature reduction

검색결과 398건 처리시간 0.034초

Fabrication and Characterization of InGaN/GaN LED structures grown on selectively wet-etched porous GaN template layer

  • Beck, Seol;Cho, Yong-Hoon
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.124-124
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    • 2010
  • Much interest has been focused on InGaN-based materials and their quantum structures due to their optoelectronics applications such as light emitting diode (LED) and photovoltaic devices, because of its high thermal conductivity, high optical efficiency, and direct wide band gap, in spite of their high density of threading dislocations. Build-in internal field-induced quantum-confined Stark effect in InGaN/GaN quantum well LED structures results in a spatial separation of electrons and holes, which leads to a reduction of radiative recombination rate. Therefore, many growth techniques have been developed by utilizing lateral over-growth mode or by inserting additional layers such as patterned layer and superlattices for reducing threading dislocations and internal fields. In this work, we investigated various characteristics of InGaN multiple quantum wells (MQWs) LED structures grown on selectively wet-etched porous (SWEP) GaN template layer and compared with those grown on non-porous GaN template layer over c-plane sapphire substrates. From the surface morphology measured by atomic force microscope, high resolution X-ray diffraction analysis, low temperature photoluminescence (PL) and PL excitation measurements, good structural and optical properties were observed on both LED structures. However, InGaN MQWs LED structures grown on SWEP GaN template layer show relatively low In composition, thin well width, and blue shift of PL spectra on MQW emission. These results were explained by rough surface of template layer, reduction of residual compressive stress, and less piezoelectric field on MQWs by utilizing SWEP GaN template layer. Better electrical properties were also observed for InGaN MQWs on SWEP GaN template layer, specially at reverse operating condition for I-V measurements.

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The quality investigation of 6H-SiC crystals grown by conventional PVT method with various SiC powders

  • Yeo, Im-Gyu;Lee, Won-Jae;Shin, Byoung-Chul
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 하계학술대회 논문집
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    • pp.113-114
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    • 2009
  • Silicon carbide is one of the most attractive and promising wide band-gap semiconductor material with excellent physical properties and huge potential for electronic applications. Up to now, the most successful method for growth of large SiC crystals with high quality is the physical vapor transport (PVT) method [1, 2]. Since further reduction of defect densities in larger crystal are needed for the true implementation of SiC devices, many researchers are focusing to improve the quality of SiC single crystal through the process modifications for SiC bulk growth or new material implementations [3, 4]. It is well known that for getting high quality SiC crystal, source materials with high purity must be used in PVT method. Among various source materials in PVT method, a SiC powder is considered to take an important role because it would influence on crystal quality of SiC crystal as well as optimum temperature of single crystal growth, the growth rate and doping characteristics. In reality, the effect of powder on SiC crystal could definitely exhibit the complicated correlation. Therefore, the present research was focused to investigate the quality difference of SiC crystal grown by conventional PVT method with using various SiC powders. As shown in Fig. 1, we used three SiC powders with different particles size. The 6H-SiC crystals were grown by conventional PVT process and the SiC seeds and the high purity SiC source materials are placed on opposite side in a sealed graphite crucible which is surrounded by graphite insulation[5, 6]. The bulk SiC crystal was grown at $2300^{\circ}C$ of the growth temperature and 50mbar of an argon pressure. The axial thermal gradient across the SiC crystal during the growth is estimated in the range of $15\sim20^{\circ}C/cm$. The chemical etch in molten KOH maintained at $450^{\circ}C$ for 10 min was used for defect observation with a polarizing microscope in Nomarski mode. Electrical properties of bulk SiC materials were measured by Hall effect using van der Pauw geometry and a UV/VIS spectrophotometer. Fig. 2 shows optical photographs of SiC crystal ingot grown by PVT method and Table 1 shows electrical properties of SiC crystals. The electrical properties as well as crystal quality of SiC crystals were systematically investigated.

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수도의 저온장해에 관한 생리 생태학적 연구 (Physiological and Ecological Studies on the Low Temperature Damages of Rice (Oryza sativia L.))

  • 오윤진
    • 한국작물학회지
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    • 제26권1호
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    • pp.1-31
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    • 1981
  • 수도품종들의 저온에 대한 생리생태적 반응특성을 구명하여 내냉성 품종육성과 냉해를 경감 수 있는 재배법개선기술을 확립하고저 1975년부터 1980년에 걸처서, 유일형과 일본형 및 인도형 품종들을 공시하여 그들의 생육시기별 시비조건별 저온반응의 특성을 검토하기 위하여 저온처리를 작물시험장 인공기상실에서 그러고 저수온처리에 관한 시험을 작물시험장 춘천출장소 냉수시험지에서 수행한 바 그 결과를 요약하면 다음과 같다. 1. 15\circ_C 저온하에서 70% 이상의 실용적 발아율 얻을 수 있는 기간은 일본형품종들은 15\circ_C에서 10 일간, 통일형품종들은 15 일간이었다. 통일형품종들의 저온발아성 검정은 저온에서 장기간 실시하는 것 보다 16\circ_C에서 6일간 치상하는 것이 적당하였다. 2. 유묘의 저온저항성은 3.0~3.5 엽기묘가 가장 낮고 묘영이 진전됨에 따라 점차 높아켰으며 3엽기와 6엽기의 저온저항성간에 는 고도의 정상관을 보였다. 3. 주ㆍ야 15~10\circ_C온도에서는 일본형 및 통일형 품종 모두 42일 처리정도에서 식물체가 고사하고 20~15\circ_C에서는 일본형 품종은 분벽이 잘 이루어지나 통일형품종은 약관 억제되며 25~15\circ_C에서는 양품종군 모두 분벽이 촉진되었다. 그러나 초장신장 속도는 저온일 수록 저하되었다. 4. 이삭의 지경 및 영화분화는 출수전 30일부터 출수기까지 주ㆍ야 25~20\circ_C처리와 30~25\circ_C 처리시에는 모든 품종에서 잘 이루어졌으나 20~15\circ_C 처리구에서는 통일형품종은 지경 및 영화 분화수화수가 전자에 비하여 감소하였고 일본형품종은 큰 차이가 없었으나 이삭의 추출은 억제되었다. 5. 저기온에 의한 출종지연은 감수분열기에 저온처리한 것이 분얼최성기에 저온처리한 것 보다도 1~3일 이 지연되였으며 같은 시기에서는 저온처리 일수가 길수록 출수지연도가 컸다. 6. 벼 생육기간별로 17\circ_C냉수를 10일간 처리한 경우에 출수지연도는 분얼기 > 감수분열기 > 수잉기의 순이였고 품종별로는 수원26004 > 수원23005 > Lengkwang의 순이있다 냉수처리에 의한 출수지연도는 간장단축률 및 불임율과 유의한 정의 상관을 보였다. 7. 감수분열기의 저기온(15\circ_C)과 고기온(25\circ_C)처리는 고기온(25\circ_C)과 저기온(17\circ_C) 처리보다 간장단축율이 켰으며 이삭 추출도도 낮았고 장간종인 Lengkwang은 단간종인 수원26004에 비하여 저기온에서의 간장단축율이 낮은 경향이었다 이삭 추출도는 출수기에 저온처리를 하였을 때 가장 낮았으며 통일형품종은 일본형품종보다 이삭 추출도가 현저히 낮았고 저온에 의하여 간장단축도 심한 품종은 이삭 추출도도 매우 낮았으며 이들 간에는 고도의 유의한 정의 상관이 있었다. 8. 분벽기의 냉수처리는 수수를 증대시키고 감수분열기의 냉수처리는 수수를 감소시켰다. 생육시기별로 냉수처리시기가 빠를수록 간장단축율이 크고 이삭 추출도도 낮아졌다. 9. 감수분열기의 17\circ_C 저온처리에 의한 불임유발은 3일간 처리로서는 크게 나타나지 않으나 9 일간처리에서는 심하게 나타났으며 수원26004와 밀양4002가 저온처리에서 불임율이 가장 낮았다. 저온처리가 임실장해를 가장 크게 유발한 것은 출수전 15일부터 출수전 5일까지 사이의 처리였으며 일본형인 진흥은 통일형인 통일, 수원26004보다 임실장해가 현저히 적었다. 그러나 감수분열기의 저온처리에 의한 임실장해정도와 출수기의 저온처리에 의한 임실장해정도간에는 유의한 정의 상관을 보였으며 또한 저온에 의하여 이삭 추출도가 낮거나 간장단축율이 큰 품종은 임실율도 떨어지는 경향이었다. 10. 냉수처리에 의한 임실장해는 감수분열기처리(엽이간장-15~10cm)에서 가장 크고 품종별로는 수원26004, 조생통일 > 농백, Towada > 저온저항성이 강한 Lengkwang순이었다. 냉수처리시의 수심과 유수의 위치는 임실비율과 매우 밀접한 관계가 있으며 수심이 20~40cm로서 유수의 위치가 물속에 있면 수원26004는 불임율이 높았고 유수의 위치가 물위에 있었던 Lengkwang은 불임율이 낮았다. 11. 수전기에 3 일간 15\circ_C의 저온처리를 한 경우 등숙에 큰 영향이 없었으나 6 일간 처리한 경우에는 수원287호와 수원 26004만이 60% 이하의 임실율을 보였으며 9 일간 처리한 경우에는 모든 품종에서 임실율이 60^ 이하로 떨어겼다. 그러나 출수 10일 후부터 17\circ_C로 20일간 처리한 경우에는 등숙장해가 크지 않았다. 12. 질소, 인산, 가리, 칼슘, 마그네지움 및 아연등의 양분흡수는 19$^{\circ}C$ $\pm$ 5보다 $25^{\circ}C$ $\pm$ 5에서 흡수가 증대되었으나 망간은 반대로 평균 25\circ_C보다 19$^{\circ}C$에서 흡수가 더욱 많았다. 13. 냉수답에서 질소, 인산, 규산 및 퇴비시용은 분벽 및 수수를 증가시키고 임실율을 향상시키며 수량을 증대시켰다.

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착체중합법을 이용한 LiMn1.5Ni0.5O4 분말합성 및 특성평가 (Synthesis and characterization of LiMn1.5Ni0.5O4 powders using polymerization complex method)

  • 신재호;김진호;황해진;김응수;조우석
    • 한국결정성장학회지
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    • 제22권4호
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    • pp.194-199
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    • 2012
  • 스피넬 구조로 이루어진 $LiMn_2O_4$에서 Mn의 일부분을 Ni로 치환한 $LiMn_{1.5}Ni_{0.5}O_4$은 4.7 V 전압 영역에서 높은 방전 용량 및 우수한 충 방전 사이클 특성을 가진다. 본 연구에서는 착체중합법을 이용하여 $LiMn_{1.5}Ni_{0.5}O_4$를 합성하였다. Citric acid : metal의 몰비(5 : 1, 10 : 1, 15 : 1, 30 : 1) 및 하소 온도($500{\sim}900^{\circ}C$) 변화에 따라 합성된 $LiMn_{1.5}Ni_{0.5}O_4$ 분말의 특성을 조사하였다. 합성된 분말의 XRD 분석을 통해 저온($500^{\circ}C$) 및 고온($900^{\circ}C$) 영역에서 모두 단일상인 $LiMn_{1.5}Ni_{0.5}O_4$ 결정상을 관찰할 수 있었고, 하소 온도가 증가함에 따라 결정화 및 결정자 크기도 함께 증가하였다. 합성된 $LiMn_{1.5}Ni_{0.5}O_4$ 분말의 형상 및 비표면적 분석 결과, 저온영역에서는 CA 몰비가 증가할수록 입자사이즈는 감소하고 비표면적은 증가하는 것을 확인할 수 있었다. 반면에 고온영역에서는 온도 증가에 따른 입자 성장에너지가 CA 몰비 증가에 따른 입자 사이즈 감소 및 비표면적 증가 효과를 감소시키는 것을 관찰하였다.

Effects of Feed Processing Methods on Growth Performance and Ileal Digestibility of Amino Acids in Young Pigs

  • Ohh, S.H.;Han, K.N.;Chae, B.J.;Han, In K.;Acda, S.P.
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권12호
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    • pp.1765-1772
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    • 2002
  • Three experiments were conducted to determine the feed processing method best suited for early and conventionallyweaned pigs, and to investigate the effects of different extrusion temperatures on ileal digestibility of amino acids in diets containing different protein sources. In exp.1, a total of 108 pigs (Landrace${\times}$Yorkshire${\times}$Duroc; 24 d of age and 7.60 kg average body weight) were alloted on the basis of sex, weight and ancestry to three treatments in a randomized complete block design. Feed processing methods used were mash (M), simple pellet (SP), and expanded pellet (EP). In exp. 2, a total of 96 pigs (Landrace${\times}$Yorkshire${\times}$Duroc; 14 d of age) were allotted on the basis of sex, weight, and ancestry to three treatments in a randomized complete block design. Diets were mash (M), expanded pellet (EP), and expanded pellet crumble (EPC). In exp. 3, a study was designed to investigate the effect of different extrusion temperatures (100, 120, and $140^{\circ}C$) over the control (untreated) on the ileal digestibility of amino acids in diets containing protein sources such as spray-dried plasma protein (SDPP), whey protein concentrate (WPC), and fish meal (FM). Results in exp.1 showed that ADG, ADFI and the F/G ratio of pigs fed the SP diet were improved (p<0.05) compared with those fed the M or the EP diets, but the digestibility of nutrients was not different (p>0.05) among the treatments. In exp. 2, pigs fed expanded pellet treatments (EP or EPC) had a significantly improved (p<0.05) F/G ratio compared to the pigs fed the M diet which was primarily attributed to the significant reduction (p<0.05) in ADFI, but the overall growth rate of pigs fed expanded pellet diets was not improved. In exp. 3, there was a significant interaction effect (p<0.05) between the extrusion temperature and protein source on the ileal digestibility of amino acids. With an extrusion temperature of $100^{\circ}C$, the ileal digestibility of Lys, Val, Gly and Ser was significantly lower in the diet containing WPC compared to the diet containing SDPP. Increasing the temperature to $120^{\circ}C$ led to significant differences (p<0.05) in the digestibility of Thr and Tyr between diets containing WPC and SDPP. Regardless of extrusion temperatures, the weaned pigs' diet containing either SDPP or FM had significantly higher Lys, Phe, Thr, Val, and Gly digestibility relative to the WPC diet. Results of the present study suggest that simple pelleting of diets containing protein sources such as whey protein concentrate, spray-dried plasma protein and fish meal would be better than the extruded or expanded pellet diets. Extruder or expander processing of weaned pigs' feed could reduce palatability and ileal digestibility of several amino acids and therefore may be responsible for a negative growth response in weaned pigs.

수도 IR 667의 적고현상에 미치는 질소의 영향에 관한 연구 (Studies on the Nitrogen Effect in Red Discoloration of Rice IR 667)

  • 곽병화
    • Journal of Plant Biology
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    • 제14권4호
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    • pp.5-13
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    • 1971
  • Pot and paddy field tests were conducted to study red discoloration of rice var. IR 667 leaves with reference to the leading Korean native variety Jinhung and Paldal, with the following results: 1. Minor elements such as Mn, Fe, B, Al, Ca and Si had no influence on the discoloration, but a supply of various soluble nitrogen compounds completely restricted it. The more prosperous the growth of IR 667 with nitrogen, the more severe the discoloration appears when nitrogen absorptin becomes limited. 2. Chlorotic pigments extracted from both IR 667 and Jinhung were compared spectrophotometrically, and found to have different spectral peaks. IR 667 had peak closer to red than Jinhung, indicating the characteristic of the variety. IR 667 was observed to be more sensitive to nitrogen deficiency than Jinhung or the other japonica variety. 3. It was concluded that all the factors limiting nitrogen supply for IR 667 growth, such as low nitrogen application, restriction of root respiration (low temperature, poor drainage, toxic gases or substances in the root zone, etc.) and pest injuries, would result in the appearance of the so-called red discoloration, because of the reduction in nitrogen uptake. Since, the discoloration of IR 667 is varietal characteristic when grown in Korea, control of it may be beneficial cultural practice in increasing grain yield, although the increased succeptibility to pests and a drop in the rate of maturity due to relatively high nitrogen level in the leaves may result in an unexpected drop in yield. It is anticipated that further exploration conducted from practical point of view will establish the relatioknships between the extent of red discoloration, nitrogen availability and grain yield in IR 667.

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Oxidation Behavior of Oxide Particle Spray-deposited Mo-Si-B Alloys

  • Park, J.S.;Kim, J.M.;Kim, H.Y.;Perepezko, J.H.
    • 열처리공학회지
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    • 제20권6호
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    • pp.299-305
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    • 2007
  • The effect of spray deposition of oxide particles on oxidation behaviors of as-cast Mo-14.2Si-9.6B (at%) alloys at $1200^{\circ}C$ up to for 100 hrs has been investigated. Various oxide powders are utilized to make coatings by spray deposition, including $SiO_2,\;TiO_2,\;ZrO_2,\;HfO_2$ and $La_2O_3$. It is demonstrated that the oxidation resistance of the cast Mo-Si-B alloy can be significantly improved by coating with those oxide particles. The growth of the oxide layer is reduced for the oxide particle coated Mo-Si-B alloy. Especially, for the alloy with $ZrO_2$ coating, the thickness of oxide layer becomes only one fifth of that of uncoated alloys when exposed to in air for 100 hrs. The reduction of oxide scale growth of the cast Mo-Si-B alloy due to oxide particle coatings are discussed in terms of the change of viscosity of glassy oxide phases that form during oxidation at high temperature.

Camphor-Naphthalene 동결제 조성이 Cu-Ni 다공체의 기공구조에 미치는 영향 (Effect of Sublimable Vehicle Compositions in the Camphor-Naphthalene System on the Pore Structure of Porous Cu-Ni)

  • 권나연;석명진;오승탁
    • 한국분말재료학회지
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    • 제22권5호
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    • pp.362-366
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    • 2015
  • The effect of sublimable vehicle composition in the camphor-naphthalene system on the pore structure of porous Cu-Ni alloy is investigated. The CuO-NiO mixed slurries with hypoeutectic, eutectic and hypereutectic compositions are frozen into a mold at $-25^{\circ}C$. Pores are generated by sublimation of the vehicles at room temperature. After hydrogen reduction at $300^{\circ}C$ and sintering at $850^{\circ}C$ for 1 h, the green body of CuO-NiO is completely converted to porous Cu-Ni alloy with various pore structures. The sintered samples show large pores which are aligned parallel to the sublimable vehicle growth direction. The pore size and porosity decrease with increase in powder content due to the degree of powder rearrangement in slurry. In the hypoeutectic composition slurry, small pores with dendritic morphology are observed in the sintered Cu-Ni, whereas the specimen of hypereutectic composition shows pore structure of plate shape. The change of pore structure is explained by growth behavior of primary camphor and naphthalene crystals during solidification of camphor-naphthalene alloys.

주조 스테인리스강 CF8M의 43$0^{\circ}C$ 열화거동에 관한 연구(I);열화기구.정적 및 피로강도평가 (A Study on the 43$0^{\circ}C$ Degradation Behavior of Cast Stainless Steel(CF8M)(I);Evaluation of Degradation mechanism, Static and Fatigue Strength)

  • 권재도;박중철;이용선;이우호;박윤원
    • 대한기계학회논문집A
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    • 제24권8호
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    • pp.1910-1916
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    • 2000
  • The five classes of the thermally aged CF8M specimen are prepared using an artificially accelerated aging method. Namely, after the specimens are held for 100, 300, 900, 1800, and 3600hrs at 430$^{\circ}C$ respectively, the specimens are water-cooled to room temperature. The impact energy variations are measures for both the aged and virgin specimens through the Charpy impact tests in addition to the microstructure observation, tensile, hardness and fatigue crack growth tests. From the present investigation the following results are obtained : 1) The difference among the thermally degraded specimens can be distinguished through their microstructures, 2) Hardness and tensile strength are increased to 300hrs, degradation specimen, while elongation and reduction area are decreased to 3600hrs degradation specimen, and impact energy is decreased to 1800hrs degradation specimen, 3) The FCG rates for thermally degraded specimens are larger than that of the virgin specimen.

다양한 동결제를 이용하여 동결건조 공정으로 제조한 Cu 다공체의 기공구조 특성 (Freeze Drying Process and Pore Structure Characteristics of Porous Cu with Various Sublimable Vehicles)

  • 이규휘;오승탁;석명진;정영근
    • 한국분말재료학회지
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    • 제27권3호
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    • pp.198-202
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    • 2020
  • The effect of sublimable vehicles on the pore structure of Cu fabricated by freeze drying is investigated. The 5 vol% CuO-dispersed slurries with camphene and various camphor-naphthalene compositions are frozen in a Teflon mold at -25℃, followed by sublimation at room temperature. After hydrogen reduction at 300℃ and sintering at 600 ℃, the green bodies of CuO are completely converted to Cu with various pore structures. The sintered samples prepared using CuO/camphene slurries show large pores that are aligned parallel to the sublimable vehicle growth direction. In addition, a dense microstructure is observed in the bottom section of the specimen where the solidification heat was released, owing to the difference in the solidification behavior of the camphene crystals. The porous Cu shows different pore structures, such as dendritic, rod-like, and plate shaped, depending on the composition of the camphornaphthalene system. The change in pore structure is explained by the crystal growth behavior of primary camphor and eutectic and primary naphthalene.