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Langmuir-Blodgett법을 이용한 (N-docosyl quinolinium)-TCNQ(1:2) 착물의 초박막 제작
정순욱,정회걸,Jeong, Soon-Wook,Jeong, Hwae-Gul 한국재료학회 1999 한국재료학회지 Vol.9 No.12
본 연구에서는 (N-docosyl quinolinium)-TCNQ (1:2) 착물의 LB초박막을 제작하였다. LB막의 누적을 위한 최적조건을 구하기 위하여 subphase 온도, barrier 압축속도 및 분산량을 변화시키면서 표면압-면적(${\pi}$-A) 등온선 특성을 측정하였다. 그리고 전이비, UV-vis의 최대 흡광도, 정전용량 및 두께를 측정하여 LB막의 누적상태를 확인하였다. 그 결과 분자수준으로 잘 제어된 양호한 LB막이 제작되었음을 알 수 있었다.. In this research, We fabricated Langmuir-Blodgett(LB) ultra-thin films with (N-docosyl quinolinium)- TCNQ(1:2) complex. The characteristics ${\pi}$-A isotherms were studied to find optimum conditions of deposition by varing temperature of subphase, compression speed of barrier and amount of spreading solution. Film formation was verified by measuring transfer ratio, maximum absorption of UV-vis spectra, capacitance and ellipsometry. From the results, it was concluded that the LB film formed well with molecular oder was fabricated.
Semi-Gel 전해액이 전력저장용 배터리에 미치는 영향에 관한 연구
정순욱 ( Soon Wook Jeong ),구본근 ( Bon Keun Ku ) 한국유화학회 2012 한국응용과학기술학회지 Vol.29 No.2
태양광 또는 풍력을 이용해 발생된 에너지를 효율적으로 저장과 사용을 위한 납 축전지의 성능을 향상 시키기 위해 전해액을 Semi-gel화 하여 납축전지에 적용하여 시험한 결과, 다음과 같은 결과를 얻었다. Semi-gel 전해액은 silica를 5wt.% 혼합한 전해액이 1시간 30분경과 시 gel화가 시작되었다. 이는 전해액이 격리판과 극판 활물질 내부까지 완전히 스며들기에 충분한 시간으로 가장 적정한 gel화 시간을 나타내었다. Semi-gel 전해액을 사용한 납축전지와 액상 전해액을 사용한 납축전지의 방전 성능을 비교한 결과, 저율방전 성능은 semi-gel전해액이, 고율방전 성능은 액상 전해액이 높은 성능을 나타내었다. 이는 gel 전해액의 경우 액상 전해액에 비해 반응속도가 느려 고율 방전 성능이 낮은 것으로 나타내었다. 수명성능을 DOD 10%, DOD 100%로 시험한 결과, 5%-silica전해액이 액상 전해액을 사용한 납축전지에 비해 우수한 수명 성능을 나타내었다. 이는 Semi-gel상태의 전해액이 납축전지 내부 화학반응 시 발생하는 gas의 재결합 효율을 높여 전해액 감액량이 최소화로 한 결과로 수명성능에서 큰 차이를 나타내었다. 태양광, 풍력 등과 같은 에너지 저장 효율을 높이고, 수명성능을 향상시키기 위해 전해액에 5%-silica전해액을 사용하면 전해액의 감액량이 최소로 되어 DOD 100% 수명시험의 경우 4.8%, DOD 10% 수명시험의 경우 20%의 수명성능이 향상되었다. The following results are from the test of semi-gel electrolyte to store energy efficiently and use advanced VRLA batteries by photovoltaic and wind power generation. Semi-Gel electrolyte with Silica 5% became Gel after 1 and half hour. It shows it is the most suitable time that the electrolyte can be absorbed into the separator and active material of plate to be gel. The test also says that semi-gel electrolyte shows the much better performance for low-rate discharge and the liquid electrolyte is good for high-rate discharge because the reaction rate of gel electrolyte is slower than liquid one for high-rate discharge performance. The test with DOD10% and DOD100% says that 5% silica electrolyte shows much better performance for life efficiency than liquid one. Because semi-gel electrolyte increase the efficiency of gas recombination at the chemical reaction of VRLA battery and it makes minimizing the reduction of electrolyte. Using the 5% silica electrolyte in order to improve the stroage efficiency and life performance for photovoltic and wind power generation, it causes improving by 4.8% for DOD100% and 20% for DOD10%.
정순욱(Soon Wook Jeong),구본근(Bon Keun Ku) 한국유화학회 2009 한국응용과학기술학회지 Vol.27 No.2
The influence of red lead(Pb3O4) to curing and formation reaction properties when it was added in positive material of lead acid battery for vehicle use has been investigated. At the results, it was confirmed that the addition of red lead led 4BS crystal size to be smaller and increased the rates of 4BS formation and Pb consumption. Consequently the curing time was shortened to half compared with that of red lead-free one. In addition to this, the lead acid battery prepared by adding red lead showed 14% higher efficiency at the life cycle test than that without red lead.
Polyamic Acid 알킬아민 염의 랭뮤어 - 블로젯막 제작에 관한 연구
정순욱(Soon Wook Jeong),임현성(Hyun Sung Lim) 한국유화학회 2000 한국응용과학기술학회지 Vol.17 No.4
N/A Polyimide is a well-known organic dielectric material, which has not only high chemical and thermal stability but also good electrical insulating and mechanical properties. In this research, we have synthesized a polyamic acid(PAA), which is a precursor of the polyimide. To obtain the optimum conditions of polyamic acid alkylamine salt(PAAS) Langmuir-Blodgett(LB) film deposition, the π-A isotherms were examined by varying subphase temperature, barrier moving speed and spreading amount of solution. Film formation was verified by measuring transfer ratio, absorption of UV/vis spectra and scanning electron microscope(SEM) images.
유기전하이동착체 랭뮤어 - 블로젯 초박막의 광전도 특성
정순욱(Soon Wook Jeong) 한국유화학회 2001 한국응용과학기술학회지 Vol.18 No.1
N/A Ultra-thin films of organic charge transfer complex were prepared on a hydrophilic substrate by Langmuir-Blodgett(LB) technique. In this study, the photoelectric properties of a LB film consisting of (N-docosyl quinolinium)-TCNQ(1:2) complex was investigated. The visible light(λ : 700 ㎚) of xenon lamp was illuminated on the LB films and light absorptivity and photoconductivity were observed. The photocurrent increased linearly and was saturated at the light intensity of 23 ㎼/㎠.