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hfuucjh木蟲 (著名寫手)
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[交流]
請幫忙看下能否檢索到 已有3人參與
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各位蟲友,哪位方便的話幫忙看一下下面的一篇文章SCI現(xiàn)在能否檢索到,謝謝啦! A novel electrolyte for intermediate solid oxide fuel cells Journal of Power Sources, 195 (2010) 1849-1853. Jihai Cheng, Weitao Bao, Chengliang Han, Wenbing Cao. 已解決,謝謝各位 [ Last edited by hfuucjh on 2010-5-21 at 16:53 ] |
鐵桿木蟲 (正式寫手)
專業(yè)殺手
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不好意思,看錯(cuò)了! http://www.sciencedirect.com/sci ... 903d3a336b09ad5cbdc ![]() [ Last edited by tj800920 on 2010-5-21 at 09:05 ] |
木蟲 (著名寫手)
木蟲 (著名寫手)
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UT ISI:000273883400013 FN ISI Export Format VR 1.0 PT J AU Cheng, JH Bao, WT Han, CL Cao, WB AF Cheng, Jihai Bao, Weitao Han, Chengliang Cao, Wenbing TI A novel electrolyte for intermediate solid oxide fuel cells SO JOURNAL OF POWER SOURCES LA English DT Article DE Solid oxide fuel cells; Electrolyte; Scheelite; Sinterability; Electrochemical property ID ROOM-TEMPERATURE PREPARATION; LI-ION BATTERIES; ELECTROCHEMICAL PROPERTIES; ELECTRICAL-CONDUCTIVITY; ANODE MATERIAL; CAMOO4; CAWO4; SOFCS; STABILITY; POWDERS AB Scheelite-type, LaxCa1-xMoO4+delta electrolyte powders, are prepared by the sol-gel process. The crystal structure of the samples is determined by employing the technique of X-ray diffraction (XRD). According to XRD analysis, the continuous series of LaxCa1-xMoO4+delta (0 <= x <= 0.3) solid solutions have the structure of tetragonal scheelite. Their lattice parameters are greater than that of the original sample, and increase with increasing values of x in the La-substituted system. Results of sinterability and electrochemical testing reveal that the performances of La-doped calcium molybdate are superior to that of pure CaMoO4. LaxCa1-xMoO4+delta ceramics' demonstrate higher sinterability. The La0.2Ca0.8MoO4+delta sample that achieved 96.5% of the theoretical density was obtained after being sintered at 1250 degrees C for 4h. The conductivity increases with increasing lanthanum content, and a total conductivity of 7.3 x 10(-3) Scm(-1) at 800 degrees C could be obtained in the La0.2Ca0.8MoO4+delta compound sintered at 1250 degrees C for 4 h. (C) 2009 Elsevier B.V. All rights reserved C1 [Cheng, Jihai; Bao, Weitao; Han, Chengliang; Cao, Wenbing] Hefei Univ, Dept Chem & Mat Engn, Hefei 230022, Peoples R China. [Cheng, Jihai] Hefei Univ, Key Lab Powder & Energy Sources Mat, Hefei 230022, Peoples R China. RP Cheng, JH, Hefei Univ, Dept Chem & Mat Engn, Hefei 230022, Peoples R China. EM cjh@hfuu.edu.cn FU Natural Science Foundation of Education Department of Anhui Province [KJ2009B045Z] FX This work was kindly supported by the Natural Science Foundation of Education Department of Anhui Province under contract no. KJ2009B045Z. NR 32 TC 0 PU ELSEVIER SCIENCE BV PI AMSTERDAM PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS SN 0378-7753 J9 J POWER SOURCES JI J. Power Sources PD APR 2 PY 2010 VL 195 IS 7 SI Sp. Iss. SI BP 1849 EP 1853 DI 10.1016/j.jpowsour.2009.10.017 PG 5 SC Electrochemistry; Energy & Fuels GA 547JM UT ISI:000273883400013 ER -------------------------------------------------------------------------------- EF |
木蟲 (著名寫手)
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