Surface modification and characterization of F-Co doped spinel LiMn2O4
YAO Yaochun1); 2); DAI Yongnian1); YANG Bin1); MA Wenhui1); and WATANABE Takayuki2)1) Faculty of Materials and Metallurgy Engineering; Kunming University of Science and Technology; Kunming 650093; China2) Department of Environmental Chemistry and Engineering; Tokyo Institute of Technology; 4259 Nagatsuta; Yokomaha; 226-8502; Japan
..............page:33-38
Research on thin grid materials of lead-acid batteries
WANG Erdong1); SHI Pengfei1); and GAO Jun2)1) Department of Applied Chemistry; Harbin Institute of Technology; Harbin 150001; China2) State Key laboratory for Physical Chemistry of Solid Surfaces; Department of Chemistry; Xiamen University; Xiamen 360005; China
..............page:43-46
Synthesis and electrochemical properties of Th-doped LiMn2O4 powders for lithium-ion batteries
LI Chao1;2); FAN Yanliang1); LI Shuzhong2); XIE Bing1); BI Lei1); and YANG Shuting3)1) Department of Applied Chemistry; College of Material Science and Chemical Engineering; Zhengzhou Institute of Light Industry; Zhengzhou 450002; China2) Engineering Research Centre for New Power Source Materials of Henan Province; Xinxiang 453002; China3) Department of Chemical Engineering; College of Chemistry and Environmental Science; Henan Normal University; Xinxiang 453002; China
..............page:58-61
Electrochemical performance of LiFePO4 cathode material for Li-ion battery
LI Shuzhong1); LI Chao1;2); FAN Yanliang2); XU Jiaqiang2); WANG Tao1); and YANG Shuting3)1) Engineering Research Centre for New Power Source Materials of Henan Province; Xinxiang 453002; China2) Department of Applied Chemistry; College of Material Science and Chemical Engineering; Zhengzhou Institute of Light Industry; Zhengzhou 450002; China3) Department of Chemical Engineering; College of Chemistry and Environmental Science; Henan Normal University; Xinxiang 453007; China
..............page:62-66
Mechanism of lithium insertion into NiSi2 anode material for lithium ion batteries
WEN Zhongsheng1; 2); JI Shijun1); SUN Juncai1); TIAN Feng1); TIAN Rujin1); and XIE Jingying2)1) Institute of Materials and Technology; Dalian Maritime University; Dalian 116026; China2) Laboratory of Energy Science and Technology; Shanghai Institude of Microsystem and Information Technology; Chinese Academy of Sciences; Shanghai 200050; China
..............page:77-81
..............page:115-120
Introduction of atomic H into Si3N4/SiO2/Si stacks
JIN Hao1); WEBER K.J.1); LI Weitang2); and BLAKERS A.W.1)1) Centre for Sustainable Energy Systems; Faculty of Engineering and Information Technology; The Australian National University; Canberra ACT 0200; Australia2) Research School of Physics; The Australian National University; Canberra ACT 0200; Australia
..............page:150-152
..............page:153-157
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..............page:273-279
..............page:280-283
Controllable fabrication of carbon aerogels
FENG Ya′ning1); MIAO Lei1); TANEMURA Sakae1); TANEMURA Masaki1); and SUZUKI Kenzi2)1) Department of Environmental Technology & Urban Planning; Nagoya Institute of Technology; Showa-ku; Nagoya; 466-8555; Japan2) EcoTopia Science Institute; Nagoya University; Chikusa-ku; Nagoya; Japan
..............page:284-288
mc-Si:H/c-Si solar cell prepared by PECVD
XU Ying1;2); LIAO Xianbo1); DIAO Hongwei1); Li Xudong2); ZENG Xiangbo1) ; LIU Xiaoping2); WANG Minhua2); and WANG Wenjing2)1) State Laboratory for Surface Physics; Institute of Semiconductors and Center for Condensed Matter Physics; Chinese Acad-bmy of Sciences; Beijing 100083; China2) Beijing Solar Energy Research Institute; Beijing 100083; China
..............page:176-179
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Effects of rapid quenching on structure and cycle stability of La-Mg-Ni-Co type hydrogen storage alloy
DONG Xiaoping1;2); Lü Fanxiu1); ZHANG Yanghuan2;3); YANG Liying1); FENG Meng2); and WANG Xinlin2)1) School of Material Science and Engineering; University of Science and Technology Beijing; Beijing 100083; China2) Department of Functional Material Research; Central Iron and Steel Research Institute; Beijing 100081; China3) School of Mateials; Inner Mongolia University of Science and Technology; Baotou 01401; China
..............page:207-212
..............page:213-217
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..............page:229-234
Plain carbon steel bipolar plates for PEMFC
WANG Jianli1;2); SUN Juncai1); TIAN Rujin1); and XU Jing1)1) Institute of Materials and Technology; Dalian Maritime University; Dalian 116026; China2) Basic Science Department; Changchun University of Technology; Changchun 130012; China
..............page:235-239
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..............page:295-299
..............page:300-304
Pt/onion-like fullerenes as catalyst for direct methanol fuel cell
GUO Junjie1;2); YANG Xiaowei1;2); YAO Yanli1;2); WANG Xiaomin1;2); LIU Xuguang2); and XU Bingshe1;2)1) College of Materials Science and Engineering; Taiyuan University of Technology; Taiyuan 0300242) Key Laboratory of Interface Science and Engineering in Advanced Materials; Ministry of Education; Taiyuan University of Technology; Taiyuan 030024; China
..............page:305-308
..............page:247-251
Cluster-based composition rule for Laves phase-related BCC solid solution hydrogen storage alloys
WANG Qing1); CHEN Feng1); WU Jiang1); QIANG Jianbing1); DONG Chuang1;3); ZHANG Yao2); XU Fen2); and SUN Lixian2)1) State Key Laboratory of Materials Modification; Dalian University of Technology; Dalian 116024; China2) Materials & Thermochemistry Laboratory; Dalian Institute of Chemical Physics; Chinese Academy of Sciences; Dalian 116023; China3) International Center of Materials Physics; Metals Research Institute; Chinese Academy of Sciences; Shenyang 110015; China
..............page:252-255
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..............page:364-368
Hydrothermal synthesis of vanadium oxide nanotubes by a facile route
HUANG Chunming1); LIU Xueqin1;2); KONG Lingbin3); ZHOU Haijia1); LIU Yaqiang1); QIU Jiawen2); and WANG Yinyue1)1) Department of Physics; Lanzhou University; Lanzhou 730000; China2) Lanzhou Institute of Physics; Lanzhou 730000; China3) State Key Laboratory of Gansu Advanced Non-Ferrous Metal Materials; Lanzhou University of Technology; Lanzhou 730050; China
..............page:88-93
..............page:173-175
Photoelectric properties of thin Eu3+-doped TiO2 films sensitized by cis-RuL2(SCN)2·2H2O
WU Xiaohong1); QIN Wei2); WANG Song1); JIANG Zhaohua1); GUO Yun3); and XIE Zhaoyang3)1) Department of Applied Chemistry; Harbin Institute of Technology; Harbin 150001; China2) School of Materials Science and Engineering; Harbin Institute of Technology; Harbin 150001; China3) National Laboratory of Vacuum & Cryogenics Technology and Physics; Lanzhou 730000; China
..............page:169-172
..............page:163-168
Si-SiO2 interface passivation by plasma NH3 and atomic H
JIN Hao1); WEBER K.J.1); JAYAPRASAD A.2); SMITH P.J.3) and BLAKERS A.1)1) Centre for Sustainable Energy Systems; Faculty of Engineering and Information Technology; North Road; the Australian National University; Canberra; ACT; 0200; Australia2) Department of Physics; Faculty of Sciences; University of Konstanz; Germany3) Department of Chemistry; The Australian National University; Canberra; ACT; 0200; Australia; 0200; Australia
..............page:146-149
..............page:141-145
..............page:137-140
Effect of H treatment on performance of HIT solar cells
REN Bingyan1); WANG Minhua1;2); LIU Xiaoping1;2); and XU Ying2)1) School of Material Science and Engineering; Hebei University of Technology; Tianjin 300130; China2) Beijing Solar Energy Research Institute; Beijing 100083; China
..............page:133-136
..............page:127-132
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..............page:110-114
..............page:105-109
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..............page:315-319
Effects of hot pressing on electric performances of Bi0.5Sb1.5Te3
XIAO Bo1); CHEN Hui1); WU Borong1); ZHU Lei1); LIU Mingyi1); JIAN Xuyu1); and LI Lin2)1) Institute for Energy Materials and Technology; General Research Institute for Non-Ferrous Metals; Beijing 100088; China2) Tianjin Institute of Power Sources; Tianjin 300381; China
..............page:320-323
..............page:324-327
..............page:328-332
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..............page:405-410
Organorhenium(Ⅶ) oxides
KüHN Fritz E.1;2); JAIN Kavita R.1); and ZHOU Mingdong3)1) Department für Chemie der Technischen Universitt München; Lichtenbergstrasse 4; D-85747 Garching bei München; Germany2) Department of Chemistry; Instituto Tecnológico e Nuclear ; Estrada Nacional No.10; 2686-953 Sacavém; Portugal3) Department of Chemistry; Liaoning University; Chongshan Middle Road; No.66; Shenyang 110036; China)
..............page:411-421
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..............page:426-430
..............page:466-470
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..............page:436-439
..............page:471-475
Powder injection molding of Fe-Ni soft magnetic alloys
DUAN Bohua1); QU Xuanhui1); QIN Mingli1); and GUO Shibo2)1) State Key Laboratory for Advanced Metals and Materials; School of Materials Science and Engineering; University of Science and Technology Beijing; Beijing 100083; China2) Jiangxi Key Laboratory of Surface Engineering; Jiangxi Science and Technology Normal University; Nanchang 330013; China
..............page:440-444
..............page:476-483
..............page:484-488
Analysis of NdFeB multi-pole ring by SEM and MFM
LIU Xingmin1); LI Xiumei1); FANG Yikun1); ZHU Minggang1); HAN Baoshan2); and LI Wei1)1) Central Iron & Steel Research Institute; Beijing 100081; China2) State Key Laboratory of Magnetism; Institute of Physics; and Center of Condensed Matter Physics; CAS; Beijing 100080; China
..............page:489-492
..............page:493-497
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..............page:521-525
..............page:526-530
..............page:531-535
Magnetic properties and microstructures of SnO2 doped Mn-Zn ferrites
FAN Jiwei1); NG Foong-Kee2); and SALE Frank R.3)1) School of Materials and Chemical Engineering; Zhongyuan University of Technology; Zhengzhou 450007; China2) School of Technology; Tunku Abdul Rahman College; PO Box 10979; 50932 Kuala Lumpur; West Malaysia3) School of Materials; The University of Manchester; Grosvenor Street; Manchester; M17HS; United Kingdom
..............page:445-449
..............page:450-453
..............page:578-583
..............page:584-587
..............page:536-539
..............page:540-543
..............page:544-549
Evidence of spin density wave of CeOs4Sb12
YANG Changping1; 2); ZHOU Zhihui1); WANG Hao1); HU Jifan3); IWASA Kazuaki2); SUGAWARA Hitoshi4); and SATO Hideyuki4)1) Faculty of Physics & Electronic Technology; Wuhan 430062; China2) Department of Physics; Tohoku University; Sendai 980-8578; Japan3) Department of Physics; Shandong University; Jinan 250100; China4) Department of Physics; Tokyo Metropolitan University; Tokyo 192-0397; Japan
..............page:550-552
..............page:588-591
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..............page:553-556
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..............page:617-620
Inductive heat property of Fe3O4 nanoparticles in AC magnetic field for local hyperthermia
ZHAO Donglin1;2); ZENG Xianwei1;2); XIA Qisheng3); and TANG Jintian4)1) State Key Laboratory of Chemical Resource Engineering; Beijing University of Chemical Technology; Beijing 100029; China2) Institute of Carbon Fiber and Composites; Beijing University of Chemical Technology; Beijing 100029; China3) Institute of Clinical Medical Sciences; China-Japan Friendship Hospital; Beijing 100029; China4) School of Medicine; Tsinghua University; Beijing 100084; China
..............page:621-625
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..............page:641-644
..............page:645-649
..............page:650-654
..............page:557-561
Study on healthcare magnetic concrete
YANG Yushan1); DONG Faqin1); and FENG Jianjun2)1) School of Material Science and Engineering; Southwest University of Science and Technology; Mianyang 621010; China2) People′s Hospital of Mianyang; Mianyang 621000; China
..............page:562-567
..............page:568-571
..............page:572-577