Национальный цифровой ресурс Руконт - межотраслевая электронная библиотека (ЭБС) на базе технологии Контекстум (всего произведений: 634620)
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Вестник Воронежского государственного университета. Серия: Химия. Биология. Фармация  / №1 2012

NANO DIMENSION AND COBALT RATIO EFFECTS OF ACTIVE LAYER ON LaNi4.3–xCoxMn0.4Al0.3 INGOT ELECTRODES (90,00 руб.)

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Первый авторVy Uong Van
АвторыHuong Do, Que Le, Tien Nguyen
Страниц5
ID523581
АннотацияIngot electrodes have been made of blocks of LaNi4.3–xCoxMn0.4Al0.3 (x = 0 ÷ 1) materials which were fabricated in an arc melting furnace and following by annealing at 1100 °C in argon atmosphere during 7 days. Surface and performance capacities of the ingot electrodes have been determined using cyclic voltammetry (CV), potentiostatic (PS) and galvanostatic (GS) techniques. Basing on the experimental data, the thicknesses of active layer (λa) and of performance layer (dp) on the electrodes have been calculated. Thickness of layers depend on Co ratio in the alloys. With x Co ratio in the range from 0.5 to 0.75, the highest surface capacity, λa = 0.4 nm, has been considered, corresponding to two atomic layers. The performance thickness of ingot electrodes in the range from 0.8 to 1.5 μm, the highest about 2 μm was found in sample with x = 0.75.
УДК544.6
NANO DIMENSION AND COBALT RATIO EFFECTS OF ACTIVE LAYER ON LaNi4.3–xCoxMn0.4Al0.3 INGOT ELECTRODES / U.V. Vy [и др.] // Вестник Воронежского государственного университета. Серия: Химия. Биология. Фармация .— 2012 .— №1 .— С. 5-9 .— URL: https://rucont.ru/efd/523581 (дата обращения: 20.04.2024)

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ХИМИЯ UDK 544.6 OF ACTIVE LAYER ON LaNi4.3–x Uong Van Vy1 , Do Tra Huong2 1 3 NANO DIMENSION AND COBALT RATIO EFFECTS Cox Mn0.4 Al0.3 , Le Xuan Que1 Thai Nguyen City University of Education, Thai Nguyen, Vietnam INGOT ELECTRODES , Nguyen Anh Tien3 Institute for Tropical Technology, Vietnamese Academy of Science and Technology, Hanoi, Vietnam 2 Ho Chi Minh City University of Pedagogy, Ho Chi Minh City, Vietnam Поступила в редакцию 20.04.2011 г. ness of layers depend on Co ratio in the alloys. <...> With x Co ratio in the range from 0.5 to 0.75, the highest surface capacity, λa ) and of performance layer (dp = 0.4 nm, has been considered, corresponding to two atomic layers. <...> The performance thickness of ingot electrodes in the range from 0.8 to 1.5 µm, the highest about 2 µm was found in sample with x = 0.75. <...> Keywords: rare earth compounds, hydrogen storage materials, ingot electrodes, active layer. <...> INTRODUCTION In the recent years hydride materials have become increasingly important because of their widespread application in hydrogen storage materials and batteries. <...> The LaNi5 -typed alloys have absorbtion ability large quantities of hydrogen in temperature and pressure ambient. <...> The material has recently proven to be very attractive as a negative electrode material for the rechargeable nickel-metal hydride (Ni-MH) batteries [1, 2]. they exhibit low hysteresis, tolerant to gaseous impurities and are easily hydrogenated in the initial cycles after manufacture. <...> Properties of the materials can be modifi ed substantially by alloy composition, to obtain the desired storage characteristics, e.g. proper capacity at a favorable hydrogen pressure [2—4]. <...> Cox Mn0.4 Al0.3 materials had EXPERIMENT PROCEDURES Intermetallic compounds with composition LaNi4.3–xCoxMn0.4Al0.3, x = 0, 0.25, 0.5, 0.75, and 1, were © Uong Van Vy, Do Tra Huong, Le Xuan Que, Nguyen Anh Tien, 2012 alloy can absorb up to 5.5 H/f.u. at room -type materials is fabricated in an arc melting furnace from La, Ni, Co, Mn <...>