• Title/Summary/Keyword: shell-core

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Prediction of Atomic Configuration in Binary Nanoparticles by Genetic Algorithm (유전알고리즘을 이용한 이원계 나노입자의 원자배열 예측)

  • Oh, Jung-Soo;Ryou, Won-Ryong;Lee, Seung-Cheol;Choi, Jung-Hae
    • Journal of the Korean Ceramic Society
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    • v.48 no.6
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    • pp.493-498
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    • 2011
  • Optimal atomic configurations in a nanoparticle were predicted by genetic algorithm. A truncated octahedron with a fixed composition of 1 : 1 was investigated as a model system. A Python code for genetic algorithm linked with a molecular dynamics method was developed. Various operators were implemented to accelerate the optimization of atomic configuration for a given composition and a given morphology of a nanoparticle. The combination of random mix as a crossover operator and total_inversion as a mutation operator showed the most stable structure within the shortest calculation time. Pt-Ag core-shell structure was predicted as the most stable structure for a nanoparticle of approximately 4 nm in diameter. The calculation results in this study led to successful prediction of the atomic configuration of nanoparticle, the size of which is comparable to that of practical nanoparticls for the application to the nanocatalyst.

Effective electromechanical coupling coefficient of adaptive structures with integrated multi-functional piezoelectric structural fiber composites

  • Koutsawa, Yao;Tiem, Sonnou;Giunta, Gaetano;Belouettar, Salim
    • Smart Structures and Systems
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    • v.13 no.4
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    • pp.501-515
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    • 2014
  • This paper presents a linear computational homogenization framework to evaluate the effective (or generalized) electromechanical coupling coefficient (EMCC) of adaptive structures with piezoelectric structural fiber (PSF) composite elements. The PSF consists of a silicon carbide (SiC) or carbon core fiber as reinforcement to a fragile piezo-ceramic shell. For the micro-scale analysis, a micromechanics model based on the variational asymptotic method for unit cell homogenization (VAMUCH) is used to evaluate the overall electromechanical properties of the PSF composites. At the macro-scale, a finite element (FE) analysis with the commercial FE code ABAQUS is performed to evaluate the effective EMCC for structures with the PSF composite patches. The EMCC is postprocessed from free-vibrations analysis under short-circuit (SC) and open-circuit (OC) electrodes of the patches. This linear two-scale computational framework may be useful for the optimal design of active structure multi-functional composites which can be used for multi-functional applications such as structural health monitoring, power harvest, vibration sensing and control, damping, and shape control through anisotropic actuation.

이중발광 코어/쉘 나노형광체

  • Jang, Ho-Seong;U, Gyeong-Ja;Im, Gi-Pil
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.132.2-132.2
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    • 2014
  • 란탄족 원소가 도핑된 세라믹 나노결정, 즉, 나노형광체는 도핑되는 원소의 종류에 따라 다양한 색을 발광할 수 있다. 일반적으로 형광체는 외부에너지에 의해 여기된 후 흡수한 에너지 보다 작은 에너지의 가시광을 발광하게 된다. 이러한 현상은 downconversion 발광으로 알려져 있다. 그러나 모체에 Yb3+와 Er3+를 도핑하는 경우 적외선을 흡수하여 가시광선을 발광하는 upconversion 현상이 관찰된다. Upconversion 형광체를 이용하여 적외선을 가시광으로 변환시키면 sub-band gap 손실을 줄임으로써 태양전지 효율을 높일 수 있고, 바이오 이미징 감도를 높일 수도 있다. 그러나, upconversion 발광기구에서는 두 개의 적외선 광자가 흡수되어 하나의 가시광 광자가 방출되기 때문에 upconversion 발광 효율은 downconversion 발광 효율에 비하여 매우 낮은 특성을 보인다. 특히 형광체의 크기가 작아져 나노미터 영역의 크기가 되면 효율이 더욱 낮아지기 때문에 upconversion 나노형광체의 경우 효율을 증가시키기 위하여 형광체 주위로 결정질 쉘을 형성시키는 것이 필요하다. 이 때, 결정질 쉘에 downconversion 특성을 보일 수 있는 란탄족 원소를 도핑하는 경우 upconversion 발광 강도가 증대될 뿐 아니라, 하나의 나노입자에서 upconversion과 downconversion 두 가지 서로 다른 발광 특성을 관찰할 수 있다. 본 발표에서는 단일 나노입자에서 upconversion과 downconversion 발광을 보이는 이중발광 코어/쉘 나노형광체의 발광 특성에 대하여 논의하고자 한다.

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Direct Printable Nanowire p-n Junction device

  • Lee, Tae-Il;Choi, Won-Jin;Kar, Jyoti Prakash;Moon, Kyung-Ju;Lee, Min-Jung;Jun, Joo-Hee;Baik, Hong-Koo;Myoung, Jae-Min
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2010.05a
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    • pp.30.2-30.2
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    • 2010
  • Nano-scale p-n junction can generate various nano-scale functional devices such as nanowire light emitting diode, nanowire solar cell, and nanowire sensor. The core shell type nanowire p-n junction has been considered for the high efficient devices in many previous reports. On the other hand, although device efficiency is relatively lower, the cross bar type p-n junction has simple topological structure, suggested by C.M. Lieber group, to integrate easily many p-n junction devices in one board. In this study, for the integration of the cross bar nanowire p-n junction device, a simple fabrication route, employed dielectrophoretic array and direct printing techniques, was demonstrated by the successful fabrication and programmable integration of the nanowire cross bar p-n junction solar cell. This direct printing process will give the single nanowire solar cell the opportunity of the integration on the circuit board with other nanowire functional devices.

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Effect of Radix Scutellariae on Nicotine Addiction (황금(黃芩)이 니코틴 중독에 미치는 효과)

  • Chang, Gyu-Tae;Kim, Jang-Hyun;Seo, Young-Min
    • The Journal of Pediatrics of Korean Medicine
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    • v.20 no.1
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    • pp.137-149
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    • 2006
  • Objective : The purpose of this study is to investigate the effect of Radix Scutellariae on repeated nicotine-induced locomotor activity and c-Fos expression utilizing Fos-like immuno-histochemistry method in the nucleus accumbens, and the striatum, one of the major projection areas of the control DA system. Methods : Male Sprague-Dawley rats were divided into untreated(normal), nicotine-treated (control), Radix Scutellariae-treated(sample) groups, RS group received Radix Scutellariae(100mg/kg, i.p.) 30minutes before injection of nicotine(0.4mg/kg, s.c.) for 7days. Rat were followed withdrawal for 3 days and one challenge for 1day. Results : Systemic challenge with nicotine produced a much larger locomotor activity and expression of c-Fos in the nucleus accumbens and the striatum. Pretreatment with Radix Scutellariae decreased in nicotine-induced locomotor activity and c-Fos expression in the core, shell, straitum area. Conclusion : These results demonstrated that reduction in locomotor activity by Radix Scutellariae may be mediated by reduction of dopamine release and of postsynaptic neuronal activity in striatum, the nucleus accumbens. Out results show neurochemical evidence for the biological effects of Radix Scutellariae that ultimately may help us to understand how Radix Scutellariae can be used to treat nicotine addiction.

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A Study on Oxidation-Resistance of Iron Nanoparticles Synthesized by Chemical Vapor Condensation Process (화학기상응축법으로 제조된 철 나노분말의 산화저항에 관한 연구)

  • Lee Dong-Won;Yu Ji-Hun;Bae Jeoung-Hyun;Jang Tae-Suk;Kim Byoung-Kee
    • Journal of Powder Materials
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    • v.12 no.3
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    • pp.225-230
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    • 2005
  • In order to prevent the oxide formation on the surface of nano-size iron particles and thereby to improve the oxidation resistance, iron nanoparticles synthesized by a chemical vapor condensation method were directly soaked in hexadecanethiol solution to coat them with a polymer layer. Oxygen content in the polymer-coated iron nanoparticles was significantly lower than that in air-passivated particles possessing iron-core/oxide-shell structure. Accordingly, oxidation resistance of the polymer-coated particles at an elevated temperature below $130^{\circ}C$ in air was $10\~40$ times higher than that of the air- passivated particles.

Improvement of Electrochemical Properties and Thermal Stability of a Ni-rich Cathode Material by Polypropylene Coating

  • Yoo, Gi-Won;Son, Jong-Tae
    • Journal of Electrochemical Science and Technology
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    • v.7 no.2
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    • pp.179-184
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    • 2016
  • The interface between the surface of a cathode material and the electrolyte gives rise to surface reactions such as solid electrolyte interface (SEI) and chemical side reactions. These reactions lead to increased surface resistance and charge transfer resistance. It is consequently necessary to improve the electrochemical characteristics by suppressing these reactions. In order to suppress unnecessary surface reactions, we coated cathode material using polypropylene (PP). The PP coating layer effectively reduced the SEI film that is generated after a 4.3 V initial charging process. By mitigating the formation of the SEI film, the PP-coated Li[(Ni0.6Co0.1Mn0.3)0.36(Ni0.80Co0.15Al0.05)0.64)]O2(NCS) electrode provided enhanced transport of Li+ ions due to reduced SEI resistance (RSEI) and charge transfer resistance (Rct). The initial charge and discharge efficiency of the PP-coated NCS electrode was 96.2 % at a current density of 17 mA/g in a voltage range of 3.0 ~ 4.3 V, whereas the efficiency of the NCS electrode was only 94.7 %. The presence of the protective PP layer on the cathode improved the thermal stability by reducing the generated heat, and this was confirmed via DSC analysis by an increased exothermic peak.

다공성 ZnO 막의 황화과정을 통해 형성된 ZnS 막의 미세구조 연구

  • An, Heung-Bae;Lee, Jeong-Yong;Kim, Yeong-Heon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.326-326
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    • 2012
  • ZnS를 합성하는 방법 중 thioacetamide (TAA)를 녹인 물에 ZnO template를 넣어서 황화시키는 방법이 있다. 이 방법은 실험과정이 간편할 뿐만 아니라 그 반응양의 조절도 용이해 ZnS-ZnO core-shell 구조나 ZnS hollow 구조 등을 만드는데 널리 사용되고 있다. 그러나 다양한 형태의 ZnS 구조체 합성에 관한 연구는 활발한 반면, ZnS의 상형성 과정이나 구조 변화와 같은 ZnO의 황화 과정 기구에 관한 연구는 매우 미비한 실정이다. ZnS는 기본적으로 저온에서는 cubic sphalerite 구조를, 고온에서는 hexagonal wurtzite 구조를 안정상으로 가진다. 또한, 8H나 15R 등과 같은 다양한 polytype 구조도 존재한다. 그러나 다양한 구조에서 비슷한 면간거리가 존재하기 때문에 결정구조의 분석이 어려운 실정이다. 이러한 비슷한 면간거리를 가지는 ZnS 등의 결정구조 분석에 있어 원자배열을 직접적으로 관찰할 수 있는 투과전자현미경 (TEM, transmission electron microscopye)을 이용한 연구는 큰 강점을 가진다. 본 연구에서는 다공성 ZnO 막을 황화시켜 형성된 ZnS 막의 미세구조 특성을 분석하였다. 다공성 ZnO 막은 패턴된 Si (111) 기판 위에 스핀코팅법을 이용하여 4,000 rpm의 속도로 증착되었으며 ZnO 결정화를 위해 150 도와 500도에서 각각 drying과 후열처리를 수행하였다. 이렇게 만들어진 ZnO 막을 TAA를 녹인 물에 넣어 48 시간 동안 반응시켰고 최종적으로 ZnS 막을 생성하였다. 다공성 ZnS 막의 미세구조를 분석하기 위해 주사전자현미경 (SEM, scanning electron microscope), X-선 회절분석기 (XRD, x-ray diffractometer), 그리고 투과전자현미경을 이용하였으며, 정확한 결정구조 분석을 위하여 결정구조 시뮬레이션을 병행하였다.

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Characteristics of Fe-Ni Nanopowders Prepared by Electrical Explosion of Wire in Water and Ethanol

  • Bac, L.H.;Kim, B.K.;Kim, J.S.;Kim, J.C.
    • Journal of Magnetics
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    • v.16 no.4
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    • pp.435-439
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    • 2011
  • In this work, we prepared Fe-Ni alloy nanopowders by wire electrical explosion in deionized water and ethanol. Particles size and morphology of the as-synthesized nanoparticles prepared in water and ethanol were observed by transmission electron microscopy. In both cases, the as-synthesized nanoparticles were in nearly spherical shape and their size distribution was broad. The particles prepared in the water were in core-shell structure due to the oxidation of Fe element. X-ray diffraction was used to analyze the phase of the nanopowders. It showed that the nanopowders prepared in water had ${\gamma}$-Fe-Ni solid solution and FeO phase. The samples obtained in ethanol were in two phases of Fe-Ni solid solution, ${\gamma}$-Fe-Ni and ${\alpha}$-Fe-Ni. Bulk samples were made from the as-synthesized nanopowders by spark plasma sintering at $1000^{\circ}C$ for 10 min. Structure of the bulk sample was observed by scanning electron microscope. Magnetic properties of the as-synthesized nanopowders and the bulk samples were investigated by vibrating sample magnetometer. The hysteresis loop of the assynthesized nanopowders and the sintered bulk samples revealed a ferromagnetic characteristic.

Numerical Study of Polarization-Dependent Emission Properties of Localized-Surface-Plasmon-Coupled Light Emitting Diodes with Ag/SiO2 Na

  • Moon, Seul-Ki;Yang, Jin-Kyu
    • Journal of the Optical Society of Korea
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    • v.18 no.5
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    • pp.582-588
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    • 2014
  • We study polarization-dependent spontaneous emission (SE) rate and light extraction efficiency (LEE) in localized-surface-plasmon (LSP)-coupled light emitting diodes (LEDs). The closely packed seven $Ag/SiO_2$ core-shell (CS) nanoparticles (NPs) lie on top of the GaN surface for LSP coupling with a radiated dipole. According to the dipole direction, both the SE rate and the LEE are significantly modified by the LSP effect at the $Ag/SiO_2$ CS NPs when the size of Ag, the thickness of $SiO_2$, and the position of the dipole source are varied. The enhancement of the SE rate is related to an induced dipole effect at the Ag, and the high LEE is caused by light scattering with an LSP mode at $Ag/SiO_2$ CS NPs. We suggest the optimum position of the quantum well (QW) in blue InGaN/GaN LEDs with $Ag/SiO_2$ CS NPs for practical application.