• Title/Summary/Keyword: 전자기적합성

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Study on Synthesis and Electromagnetic Properties of Ni- Zn Ferrite Sintered at Low Temperature (저온 소결용 Ni-ZN계 페라이트의 합성 및 전자기적 특성 연구)

  • Kim, Chul-Won;Koh, Jae-Gui
    • Korean Journal of Materials Research
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    • v.12 no.8
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    • pp.600-607
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    • 2002
  • The Ni-Zn synthetic ferrite were acquired from thermally decomposing the metal nitrates Fe(NO$_3$)$_3$.$9H_2$O, Zn($NO_3$)$_2$.$6H_2$O, Ni($NO_3$)$_2$. $6H_2$O, and Cu($NO_3$)$_2$. $3H_2$O at $150^{\circ}C$ for 24 hours and was calcined at $500^{\circ}C$. Each of those was pulverized for 3, 6, 9, and 12 hours in a steel ball mill and was sintered between $700^{\circ}C$ and $1,000^{\circ}C$ for 1 hour, and then their microstructures and electromagnetic properties were examined. We could make the initial specimens chemically bonded in liquid at the temperature as low as $150^{\circ}C$, by using the melting points less than $200^{\circ}C$ of the metal nitrates instead of the mechanical ball milling, then narrowed a distance between the particles into a molecular level, and thus lowed sintering temperature by at least $200^{\circ}C$ to$ 300^{\circ}C$. Their initial permeability was 50 to 400 and their saturation magnetic induction density and coercive force 2,400 G and 0.3 Oe to 0.5 Oe each, which were similar to those of Ni- Zn ferrite synthesized in the conventional process. In the graph of initial permeability vs frequencies, we could observe a $180^{\circ}C$rotation of the magnetic domain, which appears in a broad band of microwave near the resonance frequency.

다층 그래핀 필름을 이용한 광섬유 방식 SPR 센서의 생체분자 검출 특성 분석

  • Kim, Jang-A;Kulkarni, Atul;Gang, Jun-Mo;Amin, Rashid;Choe, Jae-Bung;Park, Seong-Ha;Kim, Tae-Seong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.389-389
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    • 2011
  • 최근 생체분자 구조 연구가 의료진단, 생명 현상 규명 및 의약품 개발 등 다양한 분야에 응용되고 있으나 대부분의 분석방법이 제한적이어서 새로운 기술 개발의 필요성이 증대하고 있다. 종래의 DNA 등의 생체분자의 분석은 형광염료를 이용한 방법이 주로 이용되었다. 형광염료는 단백질을 포함한 여러 물질들에 대해 반응하지 않기 때문에 분석에 제한이 있으며, 이와 같은 단점을 보완하는 방법으로 SPR (surface plasmon resonance) 분석법이 연구되었다. SPR은 형광염료 분석에 필수적인 레이블링(labeling) 등의 전처리 과정 없이 높은 민감도로 분석이 가능한 장점이 있다. 한편, 그래핀은 뛰어난 전자기적 성질과 기계적 성질 을 가지는 반금속(semimetal)으로, 실험실 규모에서 안정적인 합성이 실현되면서 그 응용 분야에 대한 연구가 활발히 이루어 지고 있다. 그래핀은 큰 표면적 대 부피비를 가지며, 이는 검출물질과의 반응성이 좋아야 하는 센서기술에 있어서 장점으로 작용한다. 특히, 비금속성을 띠는 단층 그래핀을 여러 장 겹치면 금속성을 갖게 되기 때문에 SPR 센서의 금속 필름으로 응용이 가능하다. 본 연구에서는 SPR 현상을 이용하는 광섬유 센서의 감도와 정확도를 증진시키기 위해 광섬유 표면에 그래핀을 적용하였다. 광섬유는 상부 피복과 클래딩을 제거하여 코어를 노출시킨 후, 다층 그래핀 필름을 코팅함으로써 검출부를 구성한다. 그 후, DNA-biotin 용액, DNA-biotin 용액, 그리고 Streptavidin 단백질 복합 용액에 대한 검출기 신호를 분석하였다. 구성된 센서에 각 용액을 1 ${\mu}{\ell}$ 씩 반응시켜 분광계로 파장에 따른 광강도를 측정하는 실험을 수행했으며, 450 nm에서 460 nm 범위의 푸른빛의 광원을 사용하였다. 그래핀 필름의 유무에 따라 확연히 구분되는 경향을 보이는 결과를 얻었고 그래핀 필름이 기존 SPR 센서의 금속박막을 대체 할 수 있음을 확인하였다.

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Improvement of KOMPSAT-5 Image Resolution for Target Analysis (객체 분석을 위한 KOMPSAT-5 영상의 해상도 향상 성능 분석)

  • Lee, Seung-Jae;Chae, Tae-Byeong
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.30 no.4
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    • pp.275-281
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    • 2019
  • A synthetic aperture radar(SAR) satellite is more effective than an optical satellite for target analysis because an SAR satellite can provide two-dimensional electromagnetic scattering distribution of a target during all-weather and day-and-night operations. To conduct target analysis while considering the earth observation interval of an SAR satellite, observing a specific area as wide as possible would be advantageous. However, wider the observation area, worse is the resolution of the associated SAR satellite image. Although conventional methods for improving the resolution of radar images can be employed for addressing this issue, few studies have been conducted for improving the resolution of SAR satellite images and analyzing the performance. Hence, in this study, the applicability of conventional methods to SAR satellite images is investigated. SAR target detection was first applied to Korea Multipurpose Satellite-5(KOMPSAT-5) SAR images provided by Korea Aerospace Research Institute for extracting target responses. Extrapolation, RELAX, and MUSIC algorithms were subsequently applied to the target responses for improving the resolution, and the corresponding performance was thereby analyzed.

Performance Evaluation of Biofuel cell using Benzoquinone Entrapped Polyethyleneimine-Carbon nanotube supporter Based Enzymatic Catalyst (벤조퀴논 포집 폴리에틸렌이민-탄소나노튜브 지지체 기반 효소촉매의 바이오연료전지로서의 성능평가)

  • Ahn, Yeonjoo;Chung, Yongjin;Kwon, Yongchai
    • Korean Chemical Engineering Research
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    • v.55 no.2
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    • pp.258-263
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    • 2017
  • In this study, we synthesized biocatalyst consisting of glucose oxidase (GOx), polyethyleneimine (PEI) and carbon nanotube (CNT) with addition of p-benzoquinone (BQ) that was considered anodic catalysts of enzymatic biofuel cell (EBC). For doing this, PEI/CNT supporter was bonded with BQ by physical entrapping method stemmed from electrostatic attractive force ([BQ/PEI]/CNT). In turn, GOx moiety was further immobilized on the [BQ/PEI]/CNT to form GOx/[BQ/PEI]/CNT catalyst. This catalyst has a special advantage in that the BQ that has been usually dissolved into electrolyte was immobilized on supporter. According to the electrochemical analysis, maximum current density of the GOx/[BQ/PEI]/CNT catalyst was 1.9 fold better than that of the catalyst that did not entrap BQ with the value of $34.16{\mu}A/cm^2$, verifying that catalytic activity of the catalyst was enhanced by adoption of BQ. Also, when it was used as anodic catalyst of the EBC, its maximum power density was 1.2 fold better than that of EBC using the catalyst that did not entrap BQ with the value of $0.91mW/cm^2$. Based on such results, it turned out that the GOx/[BQ/PEI]/CNT catalyst was promising and viable as anodic catalyst of EBC.

Effect of Calcination Temperature on Electromagnetic Wave Absorption Properties of M-type Ferrite Composite (하소온도가 M형 페라이트 복합재의 전자파 흡수 특성에 미치는 영향)

  • Seong Jun Cheon;Jae Ryung Choi;Sang Bok Lee;Je In Lee;Horim Lee
    • Composites Research
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    • v.36 no.5
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    • pp.289-296
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    • 2023
  • In this study, we investigated the electromagnetic properties and microwave absorption characteristics of M-type hexagonal ferrites, which are known as millimeter-wave absorbing materials, according to their calcination temperature. The M-type ferrites synthesized using a molten salt-based sol-gel method exhibited a single-phase M-type crystal structure at calcination temperatures above 850℃. The synthesized particle size increased as well with the calcination temperature. Saturation magnetization increased gradually with increasing calcination temperature, but coercivity reached a maximum at 1050℃ and then rapidly decreased. After preparing a thermoplastic polyurethane (TPU) composite containing 70 wt% of M-type ferrites, we measured the complex permittivity and permeability in the Q-band (33-50 GHz) and V-band (50-75 GHz) frequency ranges, where ferromagnetic resonance occurred. Strong magnetic loss from ferromagnetic resonance occurred in the 50 GHz band for all composite samples. Based on the measured results, we calculated the reflection loss of the TPU/M-type ferrite composite. By calculating the reflection loss of the M-type ferrite composite, the M-type ferrite calcined at 1250℃ showed excellent electromagnetic wave absorption performance of more than -20 dB at 52 GHz with a thickness of about 0.5 mm.

Ultrastructural Differentiation of the Vacuole in Mesophyll Tissues of Orostachys (바위솔속 엽육조직 세포 내 액포의 미세구조 분화 양상)

  • Kim, In-Sun
    • Applied Microscopy
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    • v.39 no.4
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    • pp.333-340
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    • 2009
  • In the present study, ultrastructural features of the mesophyll tissue have been investigated in Crassulacean acid metabolism (CAM)-performing succulent Orostachys. A large central vacuole and numerous small vacuoles in the peripheral cytoplasm were characterized at the subcellular level in both developing and mature mesophyll cells. The most notable feature was the invagination of vacuolar membranes into the secondary vacuoles or multivesicular bodies. In many cases, tens of single, membrane-bound secondary vacuoles of various sizes were found to be formed within the central vacuole. multivesicular bodies containing numerous small vesicles were also distributed in the cytoplasm but were better developed within the central vacuole. Occasionally, electron-dense prevacuolar compartments, directly attached to structures appearing to be small vacuoles, were also detected in the cytoplasm. One or more huge central vacuoles were frequently observed in cells undergoing differentiation and maturation. Consistent with the known occurrence of morphologically distinct vacuoles within different tissues, two types of vacuoles, one representing lytic vacuoles and the other, most likely protein storage vacuoles, were noted frequently within Orostachys mesophyll. The two types coexisted in mature vegetative cells but did not merge during the study. Nevertheless, the coexistence of two distinct vacuole types in maturing cells implies the presence of more than one mechanism for vacuolar solute sorting in these species. The vacuolar membrane is known to be unique among the intracellular compartments for having different channels and/or pumps to maintain its function. In CAM plants, the vacuole is a very important organelle that regulates malic acid diurnal fluctuation to a large extent. The membrane invagination seen in Orostachys mesophyll likely plays a significant role in survival under the physiological drought conditions in which these Orostachys occur; by increasing to such a large vacuolar volume, the mesophyll cells are able to retain enormous amounts of acid when needed. Furthermore, the mesophyll cells are able to attain their large sizes with less energy expenditure in order to regulate the large degree of diurnal fluctuation of organic acid that occurs within the vacuoles of Orostachys.