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48篇 您的检索式:作者名="HuaTang"
    题名 作者 年代 出处 被引量
1Facile carbonaceous microsphere templated synthesis of Co3O4 hollow spheres and their electrochemical performance in supercapacitors显示文摘Hongmei Du Lifang Jiao Qinghong Wang Jiaqin Yang Lijing Guo Yuchang Si Yijing Wang Huatang Yuan 2013Nano Research2013,6,2:5
2Graphene oxide assisted facile hydrothermal synthesis of LiMn_(0.6)Fe_(0.4)PO_4 nanoparticles as cathode material for lithium ion battery显示文摘Assisted by graphene oxide(GO),nano-sized LiMn_(0.6)Fe_(0.4)PO_4 with excellent electrochemical performance was prepared by a facile hydrothermal method as cathode material for lithium ion battery.SEM and TEM images indicate that the particle size of LiMn_(0.6)Fe_(0.4)PO_4(S2)was about 80 nm in diameter.The discharge capacity of LiMn_(0.6)Fe_(0.4)PO_4 nanoparticles was 140.3 mAh-g^1 in the first cycle.It showed that graphene oxide was able to restrict the growth of LiMn_(0.6)Fe_(0.4)PO_4 and it in situ reduction of GO could improve the electrical conductivity of LiMn_(0.6)Fe_(0.4)PO_4 material.Changchang Xu Li Li Fangyuan Qiu Cuihua An Yanan Xu Ying Wang Yijing Wang Lifang Jiao Huatang Yuan 2014Journal of Energy Chemistry2014,23,3:3
3Electrochemical hydrogen storage performance of AB_(5-)CoB composites synthesized by a simple mixing method显示文摘AB5 (MlNi4.0Al0.3Cu0.5Zn0.2) alloy and CoB alloy were prepared by arc melting. AB5-CoB composites were synthesized by simple mixing of AB5 alloy powders and CoB alloy powders, and their electrochemical hydrogen storage properties were studied as negative electrodes in KOH aqueous solution. The maximum discharge capacity of the AB5-CoB(50%) composite (the content of CoB in the composite is 50 wt.%) reached 365.3 mAh·g-1. After 100 charge-discharge cycles, the discharge capacity of the AB5-CoB(50%) composite was still much higher than that of the AB5 alloy. The high rate discharge capability (HRD) and potentiodynamic polarization were also tested.SONG Dawei WANG Yijing WANG Yaping JIAO Lifang YUAN Huatang 2009Rare Metals2009,28,6:2
4MicroRNA‐9 inhibits ovarian cancer cell growth through regulation of NF‐κB1显示文摘TaoLiu Yi‐XuanLi MinLiu XinLi HuaTang 2009FEBS Journal2009,,19:2
5Study on the preparation and electrochemical characteristics of MgNi-CoB alloys显示文摘Feng Y Jiao L F Huatang 2006Journal of Alloys and Compounds2006,,:1
6Effect of structural and electrochemical properties of different Cr-doped contents of Li[Ni 1/3 Mn 1/3 Co 1/3 ]O 2显示文摘Jian Guo Li Fang Jiao HuaTang Yuan Li Qin Wang Hai Xia Li Ming Zhang Yong Mei Wang 2006Electrochimica Acta2006,,28:1
7Novel application of LiCoO_2 as a high-performance candidate material for supercapacitor显示文摘Electrochemical performances of LiCoO2 as a candidate material for supercapacitor are systematically investigated. LiCoO2 nanomaterials are synthesized via hydrothermal reaction with consequent calcination process. And the particle size increases as the calcination temperature rises.LCO-650 sample with the largest particle size displays the maximum capacitances of 817.5 Fg-1with the most outstanding capacity retention rate of 96.8% after 2000 cycles. It is shown that large particle size is beneficial to the electrochemical and structural stability of Li CoO2 materials. We speculate that the micron-sized waste LiCoO2 materials have great potential for supercapacitor application. It may provide a novel recovered approach for spent LIBs and effectively relieve the burdens on the resource waste and environment pollution.Yanan Xu Liangzhong Ding Tongsheng Zhong Xiao Han Lifang Jiao Huatang Yuan Yijing Wang 2015Journal of Energy Chemistry2015,24,2:1
8Breast cancer angiogenesis — new approaches to therapy via antiangiogenesis, hypoxic activated drugs, and vascular targeting显示文摘Adrian L. Harris Huatang Zhang Amir Moghaddam Steve Fox Prudence Scott Adam Pattison Kevin Gatter Ian Stratford Roy Bicknell 1996Breast Cancer Research and Treatment1996,,1:1
9显示文摘Wang Xianyou Yan Jie Yuan Huatang 1998J Power Sources1998,72,:1
10Surface modification and electrochemical studies of spherical nickel hydroxide 显示文摘WANG Xiaoyuan YAN Jie YUAN Huatang 1998Journal of Power Sources1998,72,2:1
11High performance Cu-doped vanadium oxide (Cu2V2O5 ) prepared by rapid precipitation method for rechargeable batteries显示文摘Haixia Li Lifang Jiao Huatang Yuan 2007Materials Letters2007,61,:1
12Synthesis of Size‐Controlled Ag@Co@Ni/Graphene Core–Shell Nanoparticles for the Catalytic Hydrolysis of Ammonia Borane显示文摘Fangyuan Qiu Li Li Guang Liu Changchang Xu Cuihua An Yanan Xu Ying Wang Yanan Huang Chengcheng Chen Yijing Wang Lifang Jiao Huatang Yuan 2014Chem Asian J2014,,2:1
13Mesoporous LiFePO 4 microspheres for rechargeable lithium-ion batteries显示文摘Juan Du Lifang Jiao Qiong Wu Yongchang Liu Zhan Qi Lijing Guo Yijing Wang Huatang Yuan 2013Electrochimica Acta2013,,:1
14Synthesis and characterization of Li 2 FeP 2 O 7 /C nanocomposites as cathode materials for Li-ion batteries显示文摘Juan Du Lifang Jiao Qiong Wu Yongchang Liu Yanping Zhao Lijing Guo Yijing Wang Huatang Yuan 2013Electrochimica Acta2013,,:1
15Mg intercalation properties into open-ended vanadium oxide nanotubes显示文摘Lifang J Huatang Y Yijing W 2005Electrochemistry Communications2005,,:1
16Impedence of Alsubstituded a-nickel hydroxide electrodes 显示文摘Liu Bing Yuan Huatang Zhang Yunshi 2004International Journal of Hydrogen Energy2004,29,5:1
17International Journal of Hydrogen Energy显示文摘Jiao Lifang Yuan Huatang Wang Yijing 200934:14762009,34,:1
18Breast cancer angiogenesis — new approaches to therapy via antiangiogenesis, hypoxic activated drugs, and vascular targeting显示文摘Adrian L. Harris Huatang Zhang Amir Moghaddam Steve Fox Prudence Scott Adam Pattison Kevin Gatter Ian Stratford Roy Bicknell 1996Breast Cancer Research and Treatment1996,,1:1
19Journal of Alloys and Compounds显示文摘He Guang Jiao Lifang Yuan Huatang 2008450:3752008,450,:1
20Dehydriding properties of ternary Mg2Ni1-xZrx hydrides synthesized by ball milling and annealing显示文摘 YANG Hua-bin YUAN Huatang 1998J Alloys Comp1998,269,:1
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