• 제목/요약/키워드: electrochemical sensor

검색결과 361건 처리시간 0.027초

전기저항형 센서 및 전기화학적 방법을 이용한 철근콘크리트 구조물의 부식속도 측정 방법에 관한 연구 (Study on The Corrosion Rate Monitoring of Steel in Concrete Using Electric resistance Sensor and Electrochemical Methods.)

  • 조용범;김용철;장상엽;고영태
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.1185-1192
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    • 2001
  • This paper reviews available techniques for monitoring corrosion of steel in concrete. The need for early detection and diagnosis of corrosion related deterioration in reinforced structures is widely acknowledged. This is particularly important in reinforced concrete structures on account of the economic and social significance of the problem. The current generally used on-site procedure for corrosion monitoring of reinforced structures employs a method of half-cell surface potential measurements. While the technique has provided a useful means of delineating areas of high or low corrosion risk, there are difficulties in its use and interpretation when assessing rates of deterioration. Electrochemical techniques are by far the most suitable for corrosion monitoring purpose and meet most of the requirements. The aim of this paper is to describe the electric resistance sensor(ER sensor) and electrochemical techniques employed to monitor and estimate corrosion rates of reinforcement. Early detection and diagnosis of corrosion hazards allows preventive measures to be taken, hence the typically expensive repair of severely deteriorated structures can be avoided.

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Determination of Ascorbic Acid, Acetaminophen, and Caffeine in Urine, Blood Serum by Electrochemical Sensor Based on ZnO-Zn2SnO4-SnO2 Nanocomposite and Graphene

  • Nikpanje, Elham;Bahmaei, Manochehr;Sharif, Amirabdolah Mehrdad
    • Journal of Electrochemical Science and Technology
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    • 제12권2호
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    • pp.173-187
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    • 2021
  • In the present research, a simple electrochemical sensor based on a carbon paste electrode (CPE) modified with ZnO-Zn2SnO4-SnO2 and graphene (ZnO-Zn2SnO4-SnO2/Gr/CPE) was developed for the direct, simultaneous and individual electrochemical measurement of Acetaminophen (AC), Caffeine (Caf) and Ascorbic acid (AA). The synthesized nano-materials were investigated using scanning electron microscopy, X-ray Diffraction, Fourier-transform infrared spectroscopy, and electrochemical impedance spectroscopy techniques. Cyclic voltammetry and differential pulse voltammetry were applied for electrochemical investigation ZnO-Zn2SnO4-SnO2/Gr/CPE, and the impact of scan rate and the concentration of H+ on the electrode's responses were investigated. The voltammograms showed a linear relationship between the response of the electrode for individual oxidation of AA, AC and, Caf in the range of 0.021-120, 0.018-85.3, and 0.02-97.51 μM with the detection limit of 8.94, 6.66 and 7.09 nM (S/N = 3), respectively. Also, the amperometric technique was applied for the measuring of the target molecules in the range of 0.013-16, 0.008-12 and, 0.01-14 μM for AA, AC and, Caf with the detection limit of 6.28, 3.64 and 3.85 nM, respectively. Besides, the ZnO-Zn2SnO4-SnO2/Gr/CPE shows an excellent selectivity, stability, repeatability, and reproducibility for the determination of AA, AC and, Caf. Finally, the proposed sensor was successfully used to show the amount of AA, AC and, Caf in urine, blood serum samples with recoveries ranging between 95.8% and 104.06%.

전기전도성 고분자 위에 고정된 압타머에 흡착된 테트라브롬페놀프탈레인 에틸 에스테르를 이용한 트롬빈 검출 (Thrombin Detection with Tetrabromophenolphthalein Ethyl Ester Adsorbed on Aptamer-attached Conductive Polymer)

  • 정새로미;노희복;심윤보
    • 전기화학회지
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    • 제19권4호
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    • pp.134-140
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    • 2016
  • 새로운 산화환원 표지자를 이용한 압타머 기반의 전기화학적 트롬빈 검출 바이오 센서를 개발하였다. 1차 지방족 아민(primary aliphatic amine) 으로 개질한 압타머를 전기 전도성 고분자 poly-(5,2':5',2"-terthiophene-3'-carboxylic acid) (polyTTCA) 층 위에 공유결합을 통해 고정하여 센서 표면을 개질하였다. Tetrabromophenolphthalein ethyl ester (KTBPE)를 압타머와 상호 작용시켜 전기화학적인 산화환원 표지자로 사용하였다. 압타머로 개질한 층 위에 KTBPE의 산화반응을 differential pulse voltammetry (DPV)를 사용하여 조사하였으며, 최종 센서의 특성은 voltammetry, QCM, and ESCA 를 사용하여 조사하였다. KTBEF와 압타머 센서와 반응 후, KTBPE의 산화 피크는 감소하였다. 센서의 선형 동적 범위는 10.0 ~ 100.0 nM 이었으며, 이 때 검출 한계는 $1.0{\pm}0.2nM$이었다.

Pathogen-Imprinted Polymer Film Integrated probe/Ti3C2Tx MXenes Electrochemical Sensor for Highly Sensitive Determination of Listeria Monocytogenes

  • Xiaohua, Jiang;Zhiwen, Lv;Wenjie, Ding;Ying, Zhang;Feng, Lin
    • Journal of Electrochemical Science and Technology
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    • 제13권4호
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    • pp.431-437
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    • 2022
  • As one of the most hazardous and deadliest pathogens, Listeria monocytogenes (LM) posed various serious diseases to the human being, thus designing effective strategy for its detection is of great significance. In this work, by preparing Ti3C2Tx MXenes nanoribbon (Ti3C2TxR) as carrier and selecting thionine (Th) acted simultaneously as signal probe and functional monomer, a LM pathogen-imprinted polymers (PIP) integrated probe electrochemical sensor was design to monitor LM for the first time, that was carried out through the electropolymerization of Th on the Ti3C2TxR/GCE surface in the existence of LM. Upon eluting the templates from the LM imprinted cavities, the fabricated PIP/Ti3C2TxR/GCE sensor can rebound LM cells effectively. By recording the peak current of Th as the response signal, it can be weakened when LM cell was re-bound to the LM imprinted cavity on PIP/Ti3C2TxR/GCE, and the absolute values of peak current change increase with the increasement of LM concentrations. After optimizing three key parameters, a considerable low analytical limit (2 CFU mL-1) and wide linearity (10-108 CFU mL-1) for LM were achieved. In addition, the experiments demonstrated that the PIP/Ti3C2TxR sensor offers satisfactory selectivity, reproducibility and stability.

A Unified Potentiostat for Electrochemical Glucose Sensors

  • Sohn, Ki-Sung;Oh, Seok-Jae;Kim, Eui-Jin;Gim, Jeong-Min;Kim, Nam-Soo;Kim, Yeong-Seuk;Kim, Jong-Won
    • Transactions on Electrical and Electronic Materials
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    • 제14권5호
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    • pp.273-277
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    • 2013
  • A unified potentiostat circuit for both $O_2$- and $H_2O_2$- based electrochemical glucose sensors was proposed and its function was verified by circuit simulations and measurement results of a fabricated chip. This circuit consisted of an operational amplifier, a comparator and current mirrors. The proposed circuit was fabricated with a $0.13{\mu}m$ thick oxide CMOS process and an active area of $360{\mu}m{\times}100{\mu}m$. The measurements revealed an input operation range from 0.5 V to 1.6 V in the $H_2O_2$- based bio-sensor and from 1.7 V to 2.6 V in the $O_2$- based bio-sensor with a supply voltage of 3.3 V. The evaluation results showed that the proposed potentiostat circuit is suitable for measuring the electrochemical cell currents of both $O_2$- and $H_2O_2$- based glucose sensors.

고감도 수소센서를 위한 팔라듐 나노선의 전기화학적인 성장 (Electrochemical Growth of Palladium Nanowire for Highly Sensitive Hydrogen Sensor)

  • 조송이;강보라;임연호
    • 에너지공학
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    • 제19권1호
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    • pp.21-24
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    • 2010
  • 본 연구에서는 금속 전극사이에 팔라듐 나노선을 성장시키기 위해 직류와 이중전기영동 방법을 이용한 전기화학적 방법을 제안하였다. 팔라듐 나노선의 최적 성장 조건들을 파악하기 위해 교류의 인가 주파수 및 전압의 영향들이 조사되었다. 합성된 팔라듐 나노선들은 수백 나노미터의 직경과 $8\;{\mu}m$ 길이를 갖고 있으며, $1\;k{\Omega}$의 우수한 전기적 저항 특성을 보였다. 최종적으로 완성된 팔라듐 나노선들은 상온에서 수소 농도 100 ppm에서 2500 ppm의 범위에서 수소검출 평가를 수행하였으며, 수소센서에 적합한 우수한 검출 감도 및 응답시간을 보였다.

탄소섬유 토우의 전처리 효과와 비효소적 포도당 센싱 성능 평가 (Evaluation of Pretreatment Effect and Non-enzymatic Glucose Sensing Performance of Carbon Fibers Tow Electrode)

  • 송민정
    • Korean Chemical Engineering Research
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    • 제62권1호
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    • pp.13-18
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    • 2024
  • 웨어러블 디바이스용 유연 전극 소재 개발을 위해 탄소섬유 토우(carbon fibers tow)의 전처리에 따른 전기화학적 특성을 조사하고, 이를 활용하여 포도당을 타겟으로 전기화학적 비효소 센서를 제작하였다. 탄소섬유 토우는 탈사이징(desizing)과 활성화(activation) 공정을 통해 전처리 되었으며, 활성화는 화학적 산화와 전기화학적 산화의 두 가지 방법으로 이루어졌다. 전처리된 샘플은 주사전자 현미경(SEM)을 이용하여 표면 분석되었으며, 전기화학적 특성 및 센싱성능 분석은 시간대전류법와 순환전압 전류법, 전기화학 임피던스 분석법을 이용하여 수행되었다. 탄소섬유 토우는 전처리를 통해 감소된 Ret와 ΔEp, 증가된 Ip 등 향상된 전기화학적 특성을 보였으며, 두 활성화 방법에서는 유사한 전기화학적 특성이 얻어졌다. 본 연구에서는 전기화학센서 적용을 위해 전기화학적으로 활성화된 탄소섬유 토우를 최종 전극 물질로 선정하였다. 이 전극을 기반으로 제작된 비효소적 포도당 검출 센서는 0.09899~3.754 mM과 3.754~50 mM의 선형 구간에서 각각 0.744 mA/mM과 0.330 mA/mM 정도의 향상된 감도를 보였다. 본 연구를 통해 탄소섬유 토우의 전극 소재로서 사용 가능성을 확인했으며, 고성능 유연 전극 소재 개발에 기초 연구로 활용 가능할 것으로 기대된다.

A Study on the Development of Arduino-Electrochemical Cell and the Exploration of Educational Possibilities from the Perspective of Learning by Making

  • Yoon, Jihyun;Cheon, Ji-Hye;Kang, Seong-Joo
    • 대한화학회지
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    • 제65권3호
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    • pp.219-229
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    • 2021
  • In this study, the new electrochemical cell device using Arduino and sensor was developed, and experiments of changes in voltage at the time of serial and parallel connection of electrochemical cells were conducted to verify the effectiveness of the device. In addition, in order to examine the educational effects of the device, student's inquiry activities of measuring voltage of electrochemical cells and making objects using the voltage difference were conducted. As a result, it was confirmed that the electrochemical device using Arduino and sensor could not only perform automatic measurements and visualize data but also have a possibility to seek various educational effects through easy coding and modification of the device. Based on the results of students' performance, it was found that experimental activities using the device impart a positive effect not only on the understanding of scientific concepts, but also on the development of the practical ability to apply scientific knowledges to the real life. Educational implications are discussed in terms of 'learning by making'.

Glucose Diffusion Limiting Membrane Based on Polyethyleneimine (PEI) Hydrogel for the Stabilization of Glucose Sensor

  • Kim, Suk-Joon;Shin, Woonsup
    • Journal of Electrochemical Science and Technology
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    • 제12권2호
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    • pp.225-229
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    • 2021
  • Commercially available continuous glucose sensors require the operation stability for more than two weeks. Typically, the sensor comprises a sensing layer and an over-coating layer for the stable operation inside the body. In the sensing layer, enzymes and mediators are cross-linked together for the effective sensing of the glucose. The over-coating layer limits the flux of glucose and works as a biocompatible layer to the body fluids. Here, we report the simple preparation of the flux-limiting layer by the condensation of polyethyleneimine (PEI), tri-epoxide linker, and trimethylolpropane triglycidyl ether (PTGE). The sensor is constructed by a layer-by-layer drop-coating of the sensing layer containing glucose dehydrogenase and the PEI-derived blocking layer. It is stable for more than 14 days, which is enough for the sensor in the continuous monitor glucose monitoring (CGM) system.

일회용 전기화학적 에탄올 센서 (Disposable Type Electrochemical Ethanol Sensor)

  • 김문환;유재현;오현준;차근식;남학현;박성우;김영만
    • 분석과학
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    • 제12권3호
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    • pp.218-223
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    • 1999
  • 스크린 프린팅 기술을 이용하여 일회용 에탄올 센서를 개발하고 전기화학적 방법으로 그 성능을 조사하였다. 일회용 에탄올 센서는 폴리에스테르 기질 위에 탄소와 은 반죽 그리고 절연체 잉크로 작업 및 기준전극의 감응부위와 전기적 접촉부위의 형상을 차례로 인쇄한 후 알코올탈수소효소(ADH) 또는 알코올산화효소(AOD)를 알려진 전자전달 매개체(mediator)와 함께 작업전극에 고정시켜 제작하였다. 일회용 센서의 제작 과정에서 감응도와 재현성을 높이기 위하여 프린팅한 탄소 작업전극을 전처리 하는 몇 가지 방법들을 적용하고 그 결과들을 비교하였다. 제작된 일회용 센서는 소량의 혈액시료로 음주측정을 하는데, 그리고 발효공정 제어 등에 유용하게 사용될 수 있다.

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