• 제목/요약/키워드: Ion Conductivity

검색결과 835건 처리시간 0.034초

리튬계 수소화물 전해질 복합막의 열확산 및 전기화학적 특성평가 (Evaluations of Thermal Diffusivity and Electrochemical Properties for Lithium Hydride and Electrolyte Composites)

  • 황준현;홍태환
    • 한국재료학회지
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    • 제32권10호
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    • pp.429-434
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    • 2022
  • There is ongoing research to develop lithium ion batteries as sustainable energy sources. Because of safety problems, solid state batteries, where electrolytes are replaced with solids, are attracting attention. Sulfide electrolytes, with a high ion conductivity of 10-3 S/cm or more, have the highest potential performance, but the price of the main materials is high. This study investigated lithium hydride materials, which offer economic advantages and low density. To analyze the change in ion conductivity in polymer electrolyte composites, PVDF, a representative polymer substance was used at a certain mass ratio. XRD, SEM, and BET were performed for metallurgical analyses of the materials, and ion conductivity was calculated through the EIS method. In addition, thermal conductivity was measured to analyze thermal stability, which is a major parameter of lithium ion batteries. As a result, the ion conductivity of LiH was found to be 10-6 S/cm, and the ion conductivity further decreased as the PVDF ratio increased when the composite was formed.

산화물유리에서의 $Na^+$이온과 $Ag^+$이온 교환에 따른 전기전도도 변화 (Electrical conductivity in oxide glasses subjected to $sodium \leftrightarrow silver$ ion exchange treatment)

  • 한준수;강원호;이효경
    • E2M - 전기 전자와 첨단 소재
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    • 제9권3호
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    • pp.284-290
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    • 1996
  • The electrical properties of bulk galsses in the system Na$_{2}$O-CaO-Al$_{2}$O$_{3}$-B$_{2}$O$_{3}$-SiO$_{2}$ containing 20 to 30mol% sodium which have been subjected to a sodium .tautm. silver ion exchange reaction for 24, 36 and 48 hrs. were analysed by impedance spectroscopy method. Ion exchanged glasses exhibit activation energy values lower than those of the untreated ones. The electrical conductivity increase with sodium content and ion exchanging time. In this experiment the electrical conductivity exhibits a manximum value of 1.78*10$^{-4}$ S/cm at 200.deg. C which contains 30mol% sodium and subjects ion exchange reaction for 48hrs.

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액상 매질의 전기전도도 변화에 의한 전해이온수 발생 특성 (Characteristics of Electrolytic Ion Water Generation due to the electrical-conductivity of a liquid medium)

  • 신동화;주재현
    • 한국산업융합학회 논문집
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    • 제20권4호
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    • pp.257-263
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    • 2017
  • The following thesis researched into the characteristics of electrolytic ion water with different levels of electrical conductivity by adding NaCl into tap water which is for experimental use in multi-layered electrolytic ion water generator. Electrolytic ion water is generated by underwater electrolysis and the electrolysis generator has a simple structure, is easy to control and is highly utilized in industries. Electrolytic ion water is useful in many areas since it has a superior sterilizing power, has no possibility of secondary pollution itself as water and removes active oxygen. In the experiment, we used tap water with NaCl excluded and water with three different levels of electrical conductivity by changing NaCl concentration levels into three levels. The features of current and voltage in electrolytic ion water represented a form of quadric instead of the linear characteristic following ohm's law. As well, as the electric conductivity of water and applied voltage increased, we were able to generate much stronger acid water and alkali water.

고분자전해질 연료전지에서 고분자 막의 이온 전도도 (Ion Conductivity of Membrane in Proton Exchange Membrane Fuel Cell)

  • 황병찬;정회범;이무석;이동훈;박권필
    • Korean Chemical Engineering Research
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    • 제54권5호
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    • pp.593-597
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    • 2016
  • 고분자전해질 연료전지에서 전해질막의 이온전도도에 미치는 상대습도, 전류밀도, 온도의 영향에 대해 연구하였다. 전해질막의 물의 함량과 물의 이동은 이온전도도에 많은 영향을 미친다. 전기삼투와 역확산만으로 물 이동을 모사하고 해석하였다. 이온전도도는 셀 밖에서 측정 장비로 막 상태에서 그리고 막전극합체로 구동상에서 측정되었다. 상대습도 증가에 따라 막 내 물 함량이 증가하였고 물 함량 증가에 따라 이온전도도도 상승하였다. 전류밀도 증가에 따라 전기삼투와 역확산에 의한 물의 양이 증가해 물 함량이 선형적으로 증가하였고 그 결과 전류밀도 증가에 따라 이온전도도가 선형적으로 상승하였다. 온도가 $50^{\circ}C$에서 $80^{\circ}C$C로 증가함에 따라 이온전도도는 약 40% 증가하였다.

LiAlH4-PVDF 전해질 복합체의 열확산 및 전기화학적 특성평가 (Evaluation of Thermal Diffusivity and Electrochemical Properties of LiAlH4-PVDF Electrolyte Composites)

  • 황준현;홍태환
    • 한국수소및신에너지학회논문집
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    • 제33권5호
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    • pp.574-582
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    • 2022
  • A lithium-ion battery exhibits high energy density but has many limitations due to safety issues. Currently, as a solution for this, research on solid state batteries is attracting attention and is actively being conducted. Among the solid electrolytes, sulfide-based solid electrolytes are receiving much attention with high ion conductivity, but there is a limit to commercialization due to the relatively high price of lithium sulfide, which is a precursor material. This study focused on the possibility of relatively inexpensive and light lithium hydride and conducted an experiment on it. In order to analyze the characteristics of LiAlH4, ion conductivity and thermal stability were measured, and a composites mixed with PVDF, a representative polymer electrolyte, was synthesized to confirm a change in characteristics. And metallurgical changes in the material were performed through XRD, SEM, and BET analysis, and ion conductivity and thermal stability were measured by EIS and LFA methods. As a result, Li3AlH6 having ion conductivity higher than LiAlH4 is formed by the synthesis of composite materials, and thus ion conductivity is slightly improved, but thermal stability is rapidly degraded due to structural irregularity.

$Li_{3x}La_{(2/3-x)}TiO_3$계의 리튬 이온전도특성 (Lithium Ion Conductivity in $Li_{3x}La_{(2/3-x)}TiO_3$ system)

  • 정훈택;정태석;김호기
    • 한국세라믹학회지
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    • 제33권3호
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    • pp.293-298
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    • 1996
  • Room temperature Li+ ion conductivities of Li3xLa(2/3-x)TiO3 system with x=0.117~0.317 were measured by complex impedance method. ICP, SEM and XRD analysis were conducted to study the main factor which influence the Li+ ion conductivity. Li+ ion conductivity seems to have a close relationship with the crystal structure of primitive cell increase as the primitive cell as close to cubic.

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모세관 컬럼 이온 크로마토그래피를 위한 Conductivity Cell과 Suppressor의 개발 (Development of Conductivity Cell and Suppressor for Capillary Column Ion Chromatography)

  • 표동진;김호현
    • 분석과학
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    • 제12권2호
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    • pp.89-93
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    • 1999
  • 적은 양의 시료를 분석할 수 있는 마이크로 컬럼 이온 크로마토그래피용 전도도 셀과 억압컬럼을 개발하였다. 안지름이 작은 모세관 컬럼을 사용하는 경우 이동상의 유속은 보통 $5{\sim}20{\mu}L/min$ 정도 된다. 따라서 이 경우 일반적인 전도도 셀은 사용할 수가 없기에 내부 부피가 작은 모세관 컬럼용 전도도 셀과 억압컬럼을 제작하였다. 전도도 셀은 두 개의 백금 피하주사 바늘을 안지름이 0.010 mm인 튜브 속에 넣어 간격이 $2{\mu}m$ 되게 만들었고, 억압컬럼은 Nafion 튜브를 이용하여 막-억압컬럼 형태로 개발하였다. 이 전도도 셀과 억압컬럼을 이용하여 실제 음이온들(플루오르화물, 아질산염, 질산염, 염소산염)을 분석한 결과 재현성 있고 양호한 크로마토그램을 얻었다.

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Effect of SiO2/B2O3 ratio on Li ion conductivity of a Li2O-B2O3-SiO2 glass electrolyte

  • Kim, Young Han;Yoon, Mi Young;Lee, Eun Jung;Hwang, Hae Jin
    • Journal of Ceramic Processing Research
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    • 제13권spc1호
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    • pp.37-41
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    • 2012
  • A lithium ion conducting borosilicate glass was fabricated by a conventional melt quenching technique from a mixture of Li2CO3, B2O3 and SiO2 powders. The Li ion conductivity of the lithium borosilicate glasses was evaluated in terms of the SiO2/B2O3 ratio. In the Li2O-B2O3-SiO2 ternary glass, the glass forming region decreases with an increasing Li2O content. At the same Li2O, the crystallization tendency of the glass samples increases with the SiO2/B2O3 ratio, resulting in a reduced glass forming region in the Li2O-B2O3-SiO2 ternary glass. The electrical conductivity moderately depends on the SiO2/B2O3 ratio in the Li2O-B2O3-SiO2 ternary glass. The conductivity of the glasses slightly increases with the SiO2/B2O3 ratio. The observed phenomenon can be explained by the modification of the glass structure as a function of the SiO2 content.

서울 地域 降水中 이온成分 分析資料의 解析 (Interpretation of Analytical Data of Ion Components in Precipitation, Seoul)

  • 강공언;이주희;김희강
    • 한국대기환경학회지
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    • 제12권3호
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    • pp.323-332
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    • 1996
  • Precipitation samples were collected by the wet-only sampling method at Seoul from September 1993 to June 1995. Sample were analysed for the anions $(NO_3^-, NO_2^-, SO_4^{2-}, Cl^-, and F^-)$ and cations $(Na^+, K^+, Ca^{2+}, Mg^{2+}, and NH_4^+)$ in addition to pH and electric conductivity. In order to establish the chemical analysis data of high quality, the assurance checks for analytical data of precipitation were performed by considering the ion balance and by comparing the measured conductivity with the calculated conductivity. As we applied the various assurance checking methods by the ion balance used until recently to a data set measured in this study, the f value expressed as $\Sigma C/\Sigma A$ was found to be not appropriate for the data screening. Also, the scattering plot between cations and anions in each sample was found to show the general tendency of ion balance but was proved to not quantitate the standard of data screening at a data set of samples of various concentration levels. The h value defined as (A-C)/C for C $\geq$ A and (A-C)/A for C < A was used to check the ion balance. However, the standard of data screening by h value must very in response to total ion concentration of samples. In this study, the quality assurance of chemical analysis data was checked by considering both the ion balance of evaluating by h value and the conductivity balance. Further the quality control was achieved by these quality assurance methods. As the result, 67 samples among total 77 were obtained as valid. As the central tendency value for a statistical summary in the analytical parametr of samples, the volume-weighted mean value was found to represent more the general chemistry of precipitation rather than the arithmetic mean. The volume-weighted mean pH was 5.0 and 25% of samples was less than this mean. The concentrations of sufate and nitrate in precipitation were 90.4 ueq/L and 32.4 ueq/L which made up 59% and 21% of all anions. The raion of $SO_4^{2-}/(NO_3^- + NO_2^-)$ in precipitation was 2.7, which indicates that the contributions of $H_2SO_4$ and $HNO_3$ to the acidity of precipitation are 70% and 30%, respectively.

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고분자전해질 연료전지에서 고분자막의 이온전도도에 미치는 전류밀도의 영향 (Effect of Current Density on Ion Conductivity of Membrane in Proton Exchange Membrane)

  • 황병찬;오소형;이대웅;정회범;유승을;구영모;나일채;이정훈;박권필
    • Korean Chemical Engineering Research
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    • 제56권1호
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    • pp.1-5
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    • 2018
  • 본 연구에서는 고분자전해질 연료전지(PEMFC)가 실제 구동되는 고전류밀도 범위까지 임피던스를 분석해 이온전도도에 대해 연구하였다. 가스확산층(GDL)유무가 임피던스에 미치는 영향을 수소투과도 측정에 의해 간접적으로 검토하였다. 저전류 범위(<$80mA/cm^2$)에서 상대습도(RH)가 60% 이상 높을 때는 고분자 막의 수분 함량이 충분해 막의 이온전도도가 전류 변화의 영향을 받지 않았다. 그러나 RH가 낮을 때는 전류밀도가 증가하면서 수분 생성에 의해 이온전도도가 증가했다. 고전류 영역($100{\sim}800mA/cm^2$)에서 HFR (High Frequency Resistance)로 구한 막의 이온전도도 실험값과 수치해석에 의해 구한 값을 비교하였다. RH 100%에서는 실험값과 모사한 값 모두 전류 변화에 영향을 받지 않고 일정한 이온전도도를 유지함을 보였다. RH 30~70%에서는 전류밀도 증가에 따라 이온전도도가 증가하다 일정해 지는 경향을 나타냈다.