• 제목/요약/키워드: shell-core

검색결과 693건 처리시간 0.033초

자동차용 팰트로부터 방출되는 휘발성 유기화합물의 저감 연구 (Reduction of Volatile Organic Compounds Emitted from Automobile Felt by Activated Carbon and Hollow Core/Mesoporous Shell Carbon Ball)

  • 박승규;김헌창
    • 공업화학
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    • 제21권6호
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    • pp.680-683
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    • 2010
  • 나노카본볼과 활성탄을 혼합하여 자동차용 팰트에서 발생하는 휘발성유기화합물의 흡착성능을 시험하였다. 자동차에서 발생하는 휘발성유기화합물의 양을 측정하는 최적의 분석방법으로 고성능 액체크로마토그래피와 가스크로마토그래피를 활용하였다. 새로 생산된 팰트에서는 포름알데히드가 0.3~6.0 ppm 존재하였으나 상온에서 14일 동안 숙성시키면 0.2~0.5 ppm으로 감소하였고, 아세트알데히드도 0.2~3.0 ppm에서 0.2~0.4 ppm으로 감소하였다. 새로 생산된 팰트에서 발생되는 총 휘발성유기화합물은 $8.49{\mu}g/TP$로 일본자동차협회의 허용치에 비하여 약 26배나 높게 관측되었으나, 나노카본볼과 활성탄 혼합물 0.2 wt%를 팰트에 첨가시키면 $0.32{\mu}g/TP$ 이하로 저감할 수 있었다.

금속이온에 의한 CdSe 나노결정의 형광 소광 및 회복 특성 (Photoluminescence Quenching and Recovery of the CdSe Nanocrystals by Metal Ions)

  • 방지원;김봄이;구은회;김성지
    • 대한화학회지
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    • 제60권2호
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    • pp.131-136
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    • 2016
  • CdSe 기반 나노결정의 구리이온에 의한 형광 소광 특성 및 아연이온에 의한 형광 회복 특성을 관찰하였다. 구리이온이 첨가되었을 경우, CdSe 양자점에서는 매우 빠르고 급격한 형광 소광 특성을 보이는 반면에 CdSe 나노라드의 경우에서는 형광이 서서히 소광되는 특성을 보인다. 구리이온으로 형광을 소광시킨 CdSe/CdS(핵/껍질) 양자점에 아연이온이 첨가되면 소광된 양자점의 형광이 회복된다. 용액 내 1 μM의 아연농도에서 양자점의 형광이 50% 증가됨을 확인하였으며, 아연 농도가 증가함에 따라 양자점의 형광세기가 증가되며 이는 Langmuir binding isotherm 모델로 해석할 수 있다. 이러한 연구를 바탕으로 CdSe 기반의 나노결정을 이용한 형광 화학 센서를 구현할 수 있을 것으로 기대한다.

자기치유성 마이크로캡슐 합성 공정에서의 포름알데히드 잔류량 연구 (A Study on Remaining Formaldehyde Concentration in the Synthesis of Self-Healing Microcapsules)

  • 김동민;이준서;유병철;정찬문
    • 한국건설순환자원학회논문집
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    • 제8권1호
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    • pp.129-133
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    • 2020
  • 우레아-포름알데히드(UF) 캡슐막의 마이크로캡슐 합성 공정에 있어서 반응 폐액에 포함된 포름알데히드의 잔류량을 GC-MS로 분석하였다. 포름알데히드의 반응에 영향을 주는 주된 인자로서 pH, 암모늄클로라이드 투입량, 온도의 3가지를 선정하고, 이 인자들이 반응 폐액 중의 포름알데히드 농도에 미치는 영향을 조사하였다. 실험 조건 중 암모늄클로라이드를 0.025g 투입한 경우에는 캡슐막 형성이 안 되거나 캡슐막이 약한 경향이 있어서 기본적으로 이 조건은 마이크로캡슐화에 부적절한 것으로 판단된다. 본 연구의 실험 조건에서 포름알데히드 잔류량이 최소화되는 마이크로캡슐화 조건은 70℃의 온도와 2.5의 pH에서 암모늄클로라이드를 0.050g 투입하는 조건임이 확인되었다. 본 연구의 결과는 보다 안전한 작업환경에서 마이크로캡슐화를 수행하는데 기여할 수 있을 것으로 기대된다.

Effect of Electric Field Concentration by Electrode Patterning on the Incipient Piezoelectric Strain Properties of Lead-Free Piezoceramics

  • Kang, Woo-Seok;Hong, Chang-Hyo;Lee, Young-Jin;Choi, Gangho;Shin, Dong-Jin;Lim, Dong-Hwan;Jeong, Soon-Jong;Jo, Wook
    • 한국세라믹학회지
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    • 제56권6호
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    • pp.549-557
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    • 2019
  • More than two decades of world-wide research efforts have resulted in several classes of potentially important materials. Among them are incipient piezoelectrics, which are especially useful for actuator applications. However, relatively large electric fields are required for activating the large incipient electromechanical strains. So far, many attempts have been made to reduce the required electric field by intentionally inhomogenizing the electric field distribution in the microstructure through core-shell and composite approaches. Here, we show that electric field concentration can be realized simply by adjusting electrode patterns. We have investigated the effect of electrode patterning on the incipient electromechanical strain properties of an exemplarily chosen lead-free relaxor system, revealing that electrode patterning does have a significant role on the strain properties of the given lead-free relaxor system. We believe that this approach would make a new strategy for ones to consider bringing the functional properties of electroceramics beyond their conventional limit.

Inverted CdSe@ZnS Quantum Dots Light-Emitting Diode using Low-Work Function Polyethylenimine Ethoxylated (PEIE) modified ZnO

  • Kim, Choong Hyo;Kim, Hong Hee;Hwang, Do Kyung;Suh, Kwang S;Park, Cheol Min;Choi, Won Kook
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.148-148
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    • 2015
  • Over the past several years, Colloidal core/shell type quantum dots lighting-emitting diodes (QDLEDs) have been developed for the future of optoelectronic applications. An inverted-type quantum-dot light-emitting-diode (QDLED), employing low work function organic material polyethylenimine ethoxylated(PEIE) (<10 nm)[1] modified ZnO nanoparticles (NPs) as electron injection and transport layer, was fabricated by all solution processing method, instead of electrode in the device. The PEIE surface modifier incorporated on the top of the ZnO NPs film, facilitates the enhancement of both electorn injection into the CdSe-ZnS QD emissive layer by lowering the workfunction of ZnO from 3.58eV to 2.87eV and charge balance on the QD emitter. In this inverted QDLEDs, blend of poly (9,9-di-n-octyl-fluorene-alt-benzothiadiazolo) and poly(N,N'-bis(4-butylphenyl)-N,N'-bis(phenyl)benzidine] are used as hole transporting layer (HTL) to improve hole transporting property. At the operating voltage of 7.5 V, the QDLED device emitted spectrally orange color lights with high luminance up to 11110 cd/m2, and showed current efficiency of 2.27 cd/A.[2]

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A Molecular Dynamics Simulation on the Self-assembly of ABC Triblok Copolymers. 2. Effects of Block Sequence

  • Jo, Won-Ho;Ko, Min-Jae;Kim, Seung-Hyun
    • Fibers and Polymers
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    • 제3권1호
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    • pp.8-13
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    • 2002
  • The effect of block sequence on the self-assembly of ABC-type triblock copolymers in the ordered state is investigated using an isothermal-isobaric molecular dynamics simulation. The block sequence has an important effect ,on the ]norphology of ABC triblock copolymers. Different morphologies are observed depending on the block sequence as well as the block composition. The triblock copolymers with the volume fraction of 1 : 1 : 1 ($f_A$=$f_B$=$f_C$= 0.33) show the three phase and four layered lamellar structures irrespective of the block sequence. The $A_{32}$$B_{16}$$C_{32}$triblock copolymer with $f_B$=0.2 shows a morphology In which cylinders of midblock B are formed at the interface between A and C lamellae, whereas the morphology of triblock copolymer $B_{16}$$C_{32}$ $A_{32}$ and $C_{32}$ $A_{32}$ $B_{16}$ show a cylindrical core-shell structure and a lamellar type morphology, respectively. The $A_{20}$$B_{40}$$C_{20}$the triblock copolymer with the block B as a major component shows a tricontinuous structure, whereas both $B_{40}$$C_{20}$$A_{20}$ and $C_{20}$$A_{20}$$B_{40}$ triblock coolymers exhibit the lamellar structures. When the block B has larger volrome fraction with $f_B$=0.75, the matrix is composed of block B, and other two blocks A and C form spherical domains.

핵/껍질 구조를 가진 두 종류의 자기 나노입자의 제조와 특성비교 (Preparation and characterization of magnetic nanoparticles with two kinds of core/shell structures)

  • 고영재;손인호;김영국;동성용;이근진;박규섭
    • 한국진공학회지
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    • 제10권1호
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    • pp.87-92
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    • 2001
  • 자기 Fe-Co(C)나노(nano)캡슐과 Fe-Co 나노입자들이 메탄과 혼합기체($H_2$+Ar) 두 종류의 분위기속에서 각각 아크방전으로 제조되었다. 이 두 종류의 초미세 입자들의 특성과 자기적 성질들을 XRD(X-ray Diffraction), Mossbauer 분광, XPS(X-ray Photoelectron Spectroscopy), TEM(transmission Electron Microscopy), EDS(Energy Disperse Spectroscopy), 화학적 분석, 산소량 측정과 자기 측정 등을 통하여 체계적으로 조사하였다. 메탄기체로부터 분해되어 나온 탄소원소가 미세입자들의 상구조, 자기적 상태 그리고 표면 특성들에 끼치는 효과를 아르곤원소를 사용했을 때와 비교하였다. 두 미세입자에서의 Fe/Co 질량비가 약간 다르게 나타났으며 Fe-Co나노입자의 크기가 Fe-Co(C)나노캡슬보다 약 두배였다. 또한 Fe-Co(C)나노캡슐의 포화자화값이 Fe-Co 나노입자보다 약 8% 높았으며 둘 다 유사한 상구조를 보였다. 핵 표면에 쌓인 껍질들이 매우 얇아 XRD측정으로는 그 존재를 탐지하기 어려웠으나 XPS분석을 통하여 그들이 탄소층과 산소층임을 결론지을 수 있었다.

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Synthesis and Characterization of Hollow Silicon-Carbon Composites as a Lithium Battery Anode Material

  • Han, Won-Kyu;Ko, Yong-Nam;Yoon, Chong-Seung;Choa, Yong-Ho;Oh, Sung-Tag;Kang, Sung-Goon
    • 한국재료학회지
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    • 제19권10호
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    • pp.517-521
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    • 2009
  • Si-C composite with hollow spherical structure was synthesized using ultrasonic treatment of organosilica powder formed by hydrolysis of phenyltrimethoxysilane. The prepared powder was pyrolyzed at various temperatures ranging from 900 to 1300 $^{\circ}C$ under nitrogen atmosphere to obtain optimum conditions for Li-ion battery anode materials with high capacity and cyclability. The XRD and elemental analysis results show that the pyrolyzed Si/C composite at 1100 $^{\circ}C$ has low oxygen and nitrogen levels, which is desirable for increasing the electrochemical capacity and reducing the irreversible capacity of the first discharge. The solid Si-C composite electrode shows a first charge capacity of $\sim$500 mAhg$^{-1}$ and a capacity fade within 30 cycles of 0.93% per cycle. On the other hand, the electrochemical performance of the hollow Si-C composite electrode exhibits a reversible charge capacity of $\sim$540 mAhg$^{-1}$ with an excellent capacity retention of capacity loss 0.43% per cycle up to 30 cycles. The improved electrochemical properties are attributed to facile diffusion of Li ions into the hollow shell with nanoscale thickness. In addition, the empty core space provides a buffer zone to relieve the mechanical stresses incurred during Li insertion.

졸-겔법을 이용한 광증폭기의 Er 이온 캡슐화 및 광학적 특성 (Encapsulation and optical properties of Er3+ ions for planar optical amplifiers via sol-gel process)

  • Kim, Joo-Hyeun;Seok, Sang-Il;Ahn, Bok-Yeop
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2003년도 추계학술발표강연 및 논문개요집
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    • pp.135-135
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    • 2003
  • The fast evolution in the fold of optical communication systems demands powerful optical information treatment. These functions can be performed by integrated optical systems. A key component of such systems is erbium doped waveguide amplifier(EDWA). The intra 4f radiative transition of Er at 1.5 $\mu\textrm{m}$ is particularly interesting because this wavelength is standard in optical telecommunications. The fabrication of waveguide amplifier for integrated optics using sol-gel process has received an increasing attention. Potential advantage of lower cost by less capital equipment and easy processing makes this process an attractive alternatives to conventional technologies like flame hydrolysis deposition, ion exchange and chemical vapor deposition, etc. In addition, sol-gel process has been found to be extremely suitable for the control of composition and refractive index related directly with optical properties. The main drawback of such an amplifier with respect to the EDWA is the need for a much higher Er3+ concentration to compensate for the smaller interaction length. However, the high doping of Er might be resulted in the non-radiative relaxation by clustering of Er ions End co-operative upconversion. In order to solve this problem, we investigate the possibility of avoiding short Er-Er distances by encapsulation of Er3+ ions in hosts such as organic-inorganic hybrid materials. For inorganic-organic hybrid sols, methacryloxypropyltrimethoxysilane (MPTS), zirconyl chloride octahydrate and erbium(III) chloride hexahydrate were used as starting materials, followed by conventional sol-gel process. It was observed by TEM that nano sols having core/shell toplology were formed, depending on the mole ratio of Zr/Er. The surface roughness for the coatings on Si substrate was investigated by AFM as a function of Zr/Er ratio. The local environment and vibrational Properties of Er3+ ions were studied using Near-IR, FT-IR, and UV/Vis spectroscopy. Nano hybrid coatings derived from polymer and Er doped encapsulation Eave the good luminescence at 1.55$\mu\textrm{m}$.

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Rapid, Sensitive, and Specific Detection of Salmonella Enteritidis in Contaminated Dairy Foods using Quantum Dot Biolabeling Coupled with Immunomagnetic Separation

  • Kim, Hong-Seok;Chon, Jung-Whan;Kim, Hyunsook;Kim, Dong-Hyeon;Yim, Jin-Hyuk;Song, Kwang-Young;Kang, Il-Byung;Kim, Young-Ji;Lee, Soo-Kyung;Seo, Kun-Ho
    • Journal of Dairy Science and Biotechnology
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    • 제33권4호
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    • pp.271-275
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    • 2015
  • Colloidal semiconductor CdSe-ZnS core-shell nanocrystal quantum dot (Qdot) are luminescent inorganic fluorophores that show potential to overcome some of the functional limitations encountered with organic dyes in fluorescence labeling applications. Salmonella Enteritidis has emerged as a major cause of human salmonellosis worldwide since the 1980s. A rapid, specific, and sensitive method for the detection of Salmonella Enteritidis was developed using Qdot as a fluorescence marker coupled with immunomagnetic separation. Magnetic beads coated with anti-Salmonella Enteritidis antibodies were employed to selectively capture the target bacteria, and biotin-conjugated anti-Salmonella antibodies were added to form sandwich immune complexes. After magnetic separation, the immune complexes were labeled with Qdot via biotin-streptavidin conjugation, and fluorescence measurement was carried out using a fluorescence measurement system. The detection limit of the Qdot method was a Salmonella Enteritidis concentration of $10^3$ colony-forming units (CFU)/mL, whereas the conventional fluorescein isothiocyanate-based method required over $10^5CFU/mL$. The total detection time was within 2 h. In addition to the potential for general nanotechnology development, these results suggest a new rapid detection method of various pathogenic bacteria from a complex food matrix.

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