• 제목/요약/키워드: 전기화학 센서

검색결과 351건 처리시간 0.025초

Hydrogen Peroxide Sensitive Biosensors Based on Mugwort-Peroxidase Entrapped in Carbon Pastes (탄소반죽에 쑥 과산화효소를 고정한 과산화수소 감응 바이오센서)

  • Yoon, Kil Joong
    • Applied Chemistry for Engineering
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    • 제26권5호
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    • pp.624-629
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    • 2015
  • A biosensor including the homogenized tissue of mugwort embedded in carbon paste, which senses hydrogen peroxide, was constructed and its electrochemical properties were validated using voltammetry. The good linearity of Hanes-Woolf plot implied that the reduction reaction of substrate was catalyzed by mugwort peroxidase at the electrode surface. Also the small value of symmetry factor, 0.28, indicated that electrochemical kinetics of the sensor is very sensitive to the change of electrode potential. Many experimental results collected above proved that the dissociation of hydrogen peroxide is dependent on the catalytic power of mugwort peroxidase qualitatively and quantitatively at the surface of the mugwort electrode. It is our firm belief that the marketed HRP can be replaced with mugwort tissue.

Growth of carbon nanotubes on various metal substrates (다양한 금속기판 위 탄소나노튜브의 성장)

  • Choe, Gang-Hui;Kim, Jin-Ju;Jeong, Gu-Hwan
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 한국표면공학회 2009년도 춘계학술대회 논문집
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    • pp.260-260
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    • 2009
  • 탄소나노튜브 (carbon nanotube, CNT)는 우수한 전기적, 화학적, 기계적 성질과 큰 비표면적인 구조적인 특성에 기인하여 전자방출원 수직 소자에서의 interconnection, 에너지 저장 소자에서의 전극재료 및 고감도센서 등 다양한 분야로의 응용이 예상되고 있다 [1]. 본 연구에서는 이러한 응용을 위한 계면제어 측면제어 측면에서, 고전도성을 확보하기 위하여 금속 기판 위에 수직배향 탄소나노튜브(VCNT)를 직접 성장시키고자 하였다.

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Electrochemical Mass Transport Control in Biomimetic Solid-State Nanopores (생체모사형 나노포어를 활용한 전기화학 기반 물질전달 조절 시스템)

  • Soongyu Han;Yerin Bang;Joon-Hwa Lee;Seung-Ryong Kwon
    • Journal of the Korean Electrochemical Society
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    • 제26권4호
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    • pp.43-55
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    • 2023
  • Mass transport through nanoporous structures such as nanopores or nanochannels has fundamental electrochemical implications and many potential applications as well. These structures can be particularly useful for water treatment, energy conversion, biosensing, and controlled delivery of substances. Earlier research focused on creating nanopores with diameters ranging from tens to hundreds of nanometers that can selectively transport cationic or anionic charged species. However, recent studies have shown that nanopores with diameters of a few nanometers or even less can achieve more complex and versatile transport control. For example, nanopores that mimic biological channels can be functionalized with specific receptors to detect viruses, small molecules, and even ions, or can be made hydrophobic and responsive to external stimuli, such as light and electric field, to act as efficient valves. This review summarizes the latest developments in nanopore-based systems that can control mass transport based on the size of the nanopores (e.g., length, diameter, and shape) and the physical/chemical properties of their inner surfaces. It also provides some examples of practical applications of these systems.

Enzyme-Free Glucose Sensing with Polyaniline-Decorated Flexible CNT Fiber Electrode (Polyaniline을 이용한 CNT fiber 유연 전극 기반의 비효소적 글루코스 검출)

  • Song, Min-Jung
    • Korean Chemical Engineering Research
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    • 제60권1호
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    • pp.1-6
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    • 2022
  • As the demand for wearable devices increases, many studies have been studied on the development of flexible electrode materials recently. In particular, the development of high-performance flexible electrode materials is very important for wearable sensors for healthcare because it is necessary to continuously monitor and accurately detect body information such as body temperature, heart rate, blood glucose, and oxygen concentration in real time. In this study, we fabricated the nonenzymatic glucose sensor based on polyaniline/carbon nanotube fiber (PANI/CNT fiber) electrode. PANI layer was synthesized on the flexible CNT fiber electrode through electrochemical polymerization process in order to improve the performance of a flexible CNT fiber based electrode material. Surface morphology of the PANI/CNT fiber electrode was observed by scanning electron microscopy. And its electrochemical characteristics were investigated by chronoamperometry, cyclic voltammetry, electrochemical impedance spectroscopy. Compared to bare CNT fiber electrode, this PANI/CNT fiber electrode exhibited small electron transfer resistance, low peak separation potential and large surface area, resulting in enhanced sensing properties for glucose such as wide linear range (0.024~0.39 and 1.56~50 mM), high sensitivity (52.91 and 2.24 ㎂/mM·cm2), low detection limit (2 μM) and good selectivity. Therefore, it is expected that it will be possible to develop high performance CNT fiber based flexible electrode materials using various nanomaterials.

A Study on Contact Resistance Properties of Metal/CVD Graphene (화학기상증착법을 이용하여 합성한 그래핀과 금속의 접촉저항 특성 연구)

  • Dong Yeong Kim;Haneul Jeong;Sang Hyun Lee
    • Journal of the Microelectronics and Packaging Society
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    • 제30권2호
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    • pp.60-64
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    • 2023
  • In this study, the electrical contact resistance characteristics between graphene and metals, which is one of important factors for the performance of graphene-based devices, were compared. High-quality graphene was synthesized by chemical vapor deposition (CVD) method, and Al, Cu, Ni, and Ti as electrode materials were deposited on the graphene surface with equal thickness of 50 nm. The contact resistances of graphene transferred to SiO2/Si substrates and metals were measured by the transfer length method (TLM), and the average contact resistances of Al, Cu, Ni, and Ti were found to be 345 Ω, 553 Ω, 110 Ω, and 174 Ω, respectively. It was found that Ni and Ti, which form chemical bonds with graphene, have relatively lower contact resistances compared to Al and Cu, which have physical adsorption properties. The results of this study on the electrical properties between graphene and metals are expected to contribute to the realization of high-performance graphene-based devices including electronics, optoelectronic devices, and sensors by forming low contact resistance with electrodes.

Synthesis of Graphene and Carbon Nanotubes Hybrid Structure and Their Electrical Characterization

  • Jeong, Sang-Hui;Song, U-Seok;Lee, Su-Il;Kim, Yu-Seok;Cha, Myeong-Jun;Kim, Seong-Hwan;Jo, Ju-Mi;Jeon, Cheol-Ho;Jeong, Min-Uk;Park, Jong-Yun
    • Proceedings of the Korean Vacuum Society Conference
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.404-404
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    • 2012
  • 저차원계 탄소 동소체는 특유의 구조에서 기인하는 우수한 물리적 성질로 인해 각광받고 있는 물질이다. 탄소원자가 육각형 격자 모양을 지닌 2차원계 물질인 그래핀(graphene)은 뛰어난 전기적, 물리적, 광학적 성질로 인해 전계효과 트랜지스터(field effect transistors), 투명전극(transparent electrodes), 에너지 저장체, 복합체, 화학/바이오 센서 등 다양한 분야에서 활용을 위한 연구가 진행되고 있다. 또한 그래핀이 튜브형태로 말려있는 1차원계 물질인 탄소나노튜브(carbon nanotube)의 전기적, 열적, 기계적 성질은 이를 전계방출 디스플레이(field emission display), 전도성 플라스틱, 가스 저장체, 슈퍼 커패시터 등에 적용가능하게 한다. 최근 2차원계 물질인 그래핀과 1차원계 물질인 탄소나노튜브의 장점을 극대화하기 위한 복합 나노 구조에 대한 다양한 연구가 진행되고 있는 추세이다[1-5]. 본 연구에서 그래핀-탄소나노튜브 혼성 구조의 제작은 다음과 같이 진행되었다. 우선 열 화학기상증착법(thermal chemical vapor deposition)을 이용하여 그래핀을 합성하였다. 합성된 그래핀은 메타크릴산메탈 수지(polymetylmethacrylate; PMMA)를 이용한 전사(transfer)방법을 이용하여 원하는 기판에 위치시키고, 직류 마그네트론 스퍼터링(DC magnetron sputtering)을 이용하여 탄소나노튜브의 합성을 위한 촉매층을 증착하였다. 이후 열 화학기상증착법을 이용하여 그래핀 위에 탄소나노튜브를 합성함으로써 그래핀-탄소나노튜브 혼성 구조를 제작하였다. 합성된 그래핀-탄소나노튜브의 구조적 특징은 주사 전자 현미경(scanning electron microscopy)을 통해 확인하였고, 촉매의 표면 형상 및 화학적 상태는 원자힘 현미경(atomic force microscopy)과 X선 광전자 분광법(X-ray photoelectron spectroscopy)을 통해 확인하였다. 또한 제작된 그래핀-탄소나노튜브의 전기적 특성 측정을 통해 나노전자소자로의 응용가능성을 조사하였다.

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Self-diagnosis Algorithm for Water Quality Sensors Based on Water Quality Monitoring Data (수질 모니터링 데이터 기반의 수질센서 자가진단 알고리즘)

  • HongJoong Kim;Jong-Min Kim;Tae-Hyung Kang;Gab-Sang Ryu
    • Journal of Internet of Things and Convergence
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    • 제9권1호
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    • pp.41-47
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    • 2023
  • Today, due to the increase in global population growth, the international community is discussing solving the food problem. The aquaculture industry is emerging as an alternative to solving the food problem. For the innovative growth of the aquaculture industry, smart fish farms that combine the fourth industrial technology are recently being distributed, and full-cycle digitalization is being promoted. Water quality sensors, which are important in the aquaculture industry, are electrochemical portable sensors that check water quality individually and intermittently, making it impossible to analyze and manage water quality in real time. Recently, optically-based monitoring sensors have been developed and applied, but the reliability of monitoring data cannot be guaranteed because the state information of the water quality sensor is unknown. Therefore, this paper proposes an algorithm representing self-diagnosis status such as Failure, Out of Specification, Maintenance Required, and Check Function based on monitoring data collected by water quality sensors to ensure data reliability.

Electrochemical Determination of Epinephrine Using Doubly Modified Electrodes with Ni(II)-Macrocyclic Complex and Polyuretane (니켈(II)-거대고리 착물과 폴리 우레탄으로 변성한 이중 전극에서 에피네피린의 전기화학적 정량)

  • Xu, Guang-Ri;Cho, Hyung-Hwa;Kweon, Soo-Geong;Lee, Sang-Hag;Bae, Zun-Ung
    • Journal of the Korean Electrochemical Society
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    • 제10권3호
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    • pp.190-195
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    • 2007
  • A new electrochemical sensor to selectively determine epinephrine was developed and its analytical characteristics has been investigated. A glassy carbon electrode was modified with Ni(II)-macrocyclic complex which has electrocatalytic effect. It was further modified with physiologically suitable and negatively charged polyuretane benzyl L-glutamate(PUBLG). The present electrode showed long term stability and it could be applied to the selective determination of epinephrine in urine sample with various coexisting compounds. Under the optimum experimental conditions the linear range was $8.0\;{\times}\;10^{-7}\;-\;2.0\;{\times}\;10^{-4}\;M$ and the limit of detection was $1.0\;{\times}\;10^{-7}\;M$. The recovery of epinephrine in urine sample diluted 5 times with buffer solution was $101.5({\pm}3.2)%$ for 6 measurements.

Fabrication of a influenza A H1N1 sensor using ZnO nanostructure (산화아연 나노구조를 이용한 H1N1 인플루엔자 A 바이러스 센서 제작)

  • Jang, Yun-Seok;Park, Jung-Il;Nam, Yoon-Kyung;Pak, Jung-Ho
    • Proceedings of the KIEE Conference
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1690-1691
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    • 2011
  • 본 논문에서는 H1N1 인플루엔자 A 바이러스(influenza A H1N1 virus) 검출을 위한 산화아연 나노구조(zinc oxide nano structure) 기반의 전기화학적 면역센서를 제작하고 그 특성을 분석하였다. H1N1 인플루엔자 A 바이러스는 빠른 전파 속도 때문에 정확하고 빠른 검출이 필요하다. 먼저, 2 $mm^2$의 표면적을 갖는 패턴된 금 전극 위에 열수방식(hydrothermal method)으로 성장시킨 산화아연 나노구조가 선택적으로 형성되도록 리프트-오프(lift-off) 방법을 사용하였다. 0.01 M phosphate buffered saline(pH 7.4)에서 2 ${\mu}g$/mL 농도의 1차 항체를 정전기력에 의해 산화아연 나노구조에 고정화한 후, 10 pg/mL ~ 5ng/mL 농도의 H1N1 항원을 적용하여 포획 항체에 결합시키고 HRP(horseradish peroxidase) 효소가 결합된 검출 항체를 항원에 결합시키는 샌드위치 ELISA법을 이용하였다. HRP와 반응하는 TMB(3,3', 5,5'-tetramethylbenzidine)와 과산화수소가 포함된 acetate buffered 용액(pH 5)을 전해질로 사용하고 순환전압전류 측정법(cyclic voltammetry)으로 센서의 특성을 분석하였다. 측정된 순환전압전류그래프(cyclic voltammogram)에서 H1N1 항원 농도 10 pg/mL ~ 5 ng/mL의 응답 전류는 276.47 ${\pm}$ 21.72 nA (평균 ${\pm}$ 표준편차, n=4) ~ 478.89 ${\pm}$ 6.21 nA로 측정되었고, logarithmic하게 증가하는 응답 전류 특성을 보였다.

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Fabrication of Electrochemical Microbial Biosensor Based on MWNT Supports Prepared by Radiation-Induced Graft Polymerization (방사선 그래프트법에 의해 제조된 탄소나노튜브 지지체를 기반으로 한 전기화학 미생물 바이오센서의 제작)

  • Shin, Soo-Ran;Kwen, Hai-Doo;Choi, Seong-Ho
    • Polymer(Korea)
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    • 제35권3호
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    • pp.216-222
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    • 2011
  • A multi-walled carbon nanotube (MWNT) support with dual properties, an ionic property via tetra-amine and unpaired electrons via tri-amine, was prepared by radiation-induced graft polymerization of glycidyl methacrylate (GMA) and the subsequent amination of its epoxy group. The electrochemical microbial biosensor (EMB) was then fabricated by immobilization of a microbe (Alkaligenes spp.) onto the dual property-modified electrode, which was prepared with the mixture of the MWNT support and a $Nafion^{(R)}$ solution on a glass carbon (GC) electrode surface by a hand-casting method. The sensing range of the prepared EMB for phenol in a phosphate buffer solution was 0.005~7.0 mM. The total concentration of phenolic compounds in a commercial red wine was also determined using the EMB.