• 제목/요약/키워드: hydrogen sensing

검색결과 145건 처리시간 0.024초

A New Acridine-Imidazolium-Based Cholestane Receptor for Anion Sensing

  • Jadhav, Jyoti Ramesh;Ahmad, Md. Wasi;Kim, Hong-Seok
    • Bulletin of the Korean Chemical Society
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    • 제32권spc8호
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    • pp.2933-2937
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    • 2011
  • A new highly selective receptor (3) based on an acridine-imidazolium functionalized cholestane for anion sensing was designed and synthesized. A binding study of 3 with various anions was assessed by UV-vis and fluorescence spectroscopies in dry CH3CN. Receptor 3 showed the highest selectivity toward hydrogen pyrophosphate (Ka = $1.5{\times}10^4M^{-1}$).

Palladium-based Electrical and Optical Hydrogen Gas Sensors

  • Jinwoo, Lee;Minah, Seo
    • 센서학회지
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    • 제31권6호
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    • pp.397-402
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    • 2022
  • In this short review, we explore the recent progress in metal-based gas-sensing techniques. The strong interaction between the metal films and hydrogen gas can be considered to play a considerably important role in the gas-sensing technique. The physical and chemical reactions in Pd-Pd hydride systems were studied in terms of the phase transition and lattice expansion of the metals. Two types of represented detection, electrical and optical, were introduced and discussed along with their advantages.

연료전지 차량 스택 냉각수 부족 감지 방법에 관한 연구 (A Study on Sensing Method of the Stack Coolant Deficiency for FCEV)

  • 김형국;한수동;남기영;김치명;박용선
    • 한국수소및신에너지학회논문집
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    • 제25권5호
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    • pp.525-532
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    • 2014
  • The sensing of a stack coolant deficiency is very important in that cooling performance of a fuel cell, overheating prevention of a stack or coolant heater. This paper explains the performance comparison between the coolant contact/noncontact level sensors and coolant deficiency sensing logic using the pressure sensor in a stagnant or circulating flow. Throughout the comparison, the pressure sensor is more suitable than the other sensors in terms of the precision, fast response, sensing frequency. After the experiment, the pressure sensor is equipped to an FCEV(Fuel Cell Electric Vehicle) to verify sensing definitely. There was no miss-sensing using pressure sensor while FCEV runs in the conditions of the paved road and cross country road.

Pd-SiC 쇼트키 다이오드의 수소 가스 감응 특성 (Hydrogen Gas Sensing Characteristics of Pd-SiC Schottky Diode)

  • 김창교;이주헌;이영환;최석민;조남인
    • 센서학회지
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    • 제8권6호
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    • pp.448-453
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    • 1999
  • Pd-SiC 쇼트키 다이오드를 이용한 수소 가스 센서를 개발하였다. Pd-SiC 쇼트키 다이오드의 수소 가스 감지특성을 I-V 및 ${\Delta}I$-t 분석을 통하여 수소 농도와 온도 함수로서 분석하였다. 또한, 수소 흡착에 의한 Pd-SiC 쇼트키 다이오드의 장벽 높이의 변화를 조사하였다. 수소 원자의 흡착이 다이오드의 장벽 높이의 변화와 관계되는 것을 I-V 분석을 이용하여 정상 상태에서의 가스 반응 속도론에 의하여 확인하였다.

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과산화수소 용액에 담지 된 활성탄소섬유의 전자선 조사에 따른 일산화질소 가스 감응 (NO Gas Sensing of ACFs Treated by E-beam Irradiation in H2O2 Solution)

  • 이상민;박미선;정민정;이영석
    • 한국수소및신에너지학회논문집
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    • 제27권3호
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    • pp.298-305
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    • 2016
  • In this study, we treated pitch-based activated carbon fibers (ACFs) in hydrogen peroxide using electron beam (E-beam) irradiation to improve nitrogen monoxide (NO) sensing ability as an electrode material of gas sensor. The specific surface area of ACFs treated by E-beam irradiation with 400 kGy increased from $885m^2/g$ (pristine) to $1160m^2/g$ without any changes in structural property and functional group. The increase in specific surface area of the E-beam irradiated ACFs enhanced NO gas sensing properties such as response time and sensitivity. When the ACFs irradiated with 400 kGy, response time was remarkably reduced from 360 s to 210 s and sensitivity was increased by 4.5%, compared to the pristine ACFs. These results demonstrate convincingly that surface modification of ACFs using E-beam in hydrogen peroxide solution can enhance textural properties of ACFs and NO gas sensing ability of gas sensor at room temperature.

산소 분위기 열처리에 따른 ZnO 나노선의 상온 영역에서의 수소가스 검출 특성 향상 (Enhanced Hydrogen Gas Sensing Properties of ZnO Nanowires Gas Sensor by Heat Treatment under Oxygen Atmosphere)

  • 강우승
    • 한국표면공학회지
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    • 제50권2호
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    • pp.125-130
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    • 2017
  • ZnO nanowires were synthesized and annealed at various temperatures of $500-800^{\circ}C$ in oxygen atmosphere to investigate hydrogen gas sensing properties. The diameter and length of the synthesized ZnO nanowires were approximately 50-100 nm and a few $10s\;{\mu}m$, respectively. $H_2$ gas sensing performance of the ZnO nanowires sensor was measured with electrical resistance changes caused by $H_2$ gas with a concentration of 0.1-2.0%. The response of ZnO nanowires at room temperature to 2.0% $H_2$ gas is found to be two times enhanced by annealing process in $O_2$ atmosphere at $800^{\circ}C$. In the current study, the effect of heat treatment in $O_2$ atmosphere on the gas sensing performance of ZnO nanowires was studied. And the underlying mechanism for the sensing improvement of the ZnO nanowires was also discussed.

ZnO양자점 기반 센서의 초고감도 수소 검지 특성 (Ultra Sensitive Detection of H2 in ZnO QD-based Sensors)

  • 이현숙;김원경;이우영
    • 센서학회지
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    • 제29권2호
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    • pp.105-111
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    • 2020
  • Interest and demand for hydrogen sensors are increasing in the field of H2 leakage detection during storage/transport/use and detection of H2 dissolved in transformer oil for safety issues as well as in the field of breath analysis for non-invasively diagnosing a number of disease states for a healthy life. In this study, various ZnO-based sensors were synthesized by controlling the reduction in crystallite size, decoration of Pt nanoparticles, doping of electron donating atoms, and doping of various atoms with different ionic radii. The sensing response of the various prepared ZnO-based nanoparticles and quantum dots (QDs) for 10 ppm H2 was investigated. Among the samples, the smallest-sized (3.5 nm) In3+-doped ZnO QDs showed the best sensing response, which is superior to those in previously reported hydrogen sensors based on semiconducting metal oxides. The higher sensing response of In-doped ZnO QDs is attributed to the synergic effects of the increased number of oxygen vacancies, higher optical band gap, and larger specific surface area.

산화아연과 단중벽 탄소나노튜브 복합체의 수소가스 감응 특성 (Hydrogen Sensing Properties of ZnO-SWNTs Composite)

  • 정진연;송혜진;강영진;오동훈;정혁;조유석;김도진
    • 한국재료학회지
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    • 제18권10호
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    • pp.529-534
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    • 2008
  • The hydrogen gas sensing properties of a zinc oxide nanowire structure were studied. Porous zinc oxide nanowire structures were fabricated by oxidizing zinc deposited on a single-wall carbon nanotube (SWNT) template. This revealed a porous ZnO-SWNT composite due to the porosity in the SWNT film. The gas sensing properties were compared with those of zinc oxide thin films deposited on SiO2/Si substrates in sensitivity and operating temperature. The composite structure showed higher sensitivity and lower operating temperature than the zinc oxide film. It showed a response even at room temperature while the film structure did not.

입상의 이산화티타늄 박막을 이용한 수소센서 (Granular Thin Film of Titanium Dioxide for Hydrogen Gas Sensor)

  • 송혜진;오동훈;정진연;웬득화;조유석;김도진
    • 한국재료학회지
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    • 제19권6호
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    • pp.325-329
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    • 2009
  • Titanium dioxide thin films were fabricated as hydrogen sensors and its sensing properties were tested. The titanium was deposited on a $SiO_2$/Si substrate by the DC magnetron sputtering method and was oxidized at an optimized temperature of $850^{\circ}C$ in air. The titanium film originally had smooth surface morphology, but the film agglomerated to nano-size grains when the temperature reached oxidation temperature where it formed titanium oxide with a rutile structure. The oxide thin film formed by grains of tens of nanometers size also showed many short cracks and voids between the grains. The response to 1% hydrogen gas was ${\sim}2{\times}10^6$ at the optimum sensing temperature of $200^{\circ}C$, and ${\sim}10^3$ at room temperature. This extremely high sensitivity of the thin film to hydrogen was due partly to the porous structure of the nano-sized sensing particles. Other sensor properties were also examined.

레이저 유도 플라스마 생성 방법이 수소 검출에 미치는 영향 (Effect of Methodologies for Laser-Induced Plasma Creation on Hydrogen Sensing)

  • 장정익;김기범
    • 대한기계학회논문집 C: 기술과 교육
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    • 제3권4호
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    • pp.291-297
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    • 2015
  • 미래의 화석연료를 대체할 가능성이 큰 에너지원으로써, 수소는 인류의 궁극적인 연료로 주목받고 있으나, 작은 분자 크기로 인하여 저장 용기의 작은 틈으로부터 쉽게 누설된다. 본 연구에서는 수소 누설을 탐지하기 위하여 레이저 유도 붕괴 분광법(Laser Induced Breakdown Spectroscopy, LIBS)을 사용하였고, 플라스마 생성 방법에 따른 본 기술의 적합성을 평가하였다. 금속 표면에 플라스마를 일으켜 수소 원자광을 얻는 방법은 플라스마를 작은 레이저 출력 (295mW)에서 유도 할 수 있지만, 수소 기체에 직접 플라스마를 유도하는 방법은 약 2.6배 높은 레이저 출력이 필요하였다. 두 방법 모두 픽 투 베이스(Peak to Base) 비율이 수소농도에 대하여 선형적인 경향을 보였으며, 공기 중 수소의 농도가 5% 미만인 경우 본 기술은 수소 누설 검출에 적합한 기술로 판단된다.