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国家重点基础研究发展计划(2010CB934703)

作品数:3 被引量:9H指数:2
相关作者:康建立洪英哲温洋洋王雪霞赵乃勤更多>>
相关机构:天津大学金策工业综合大学河北工业大学更多>>
发文基金:国家重点基础研究发展计划国家自然科学基金更多>>
相关领域:一般工业技术理学更多>>

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Effect of Ni,Fe and Fe-Ni alloy catalysts on the synthesis of metal contained carbon nano-onions and studies of their electrochemical hydrogen storage properties被引量:5
2014年
Three types of carbon nano-onions(CNOs) including Ni@CNOs.Fe3C@CNOs and Fe0.64Ni0.36@CNOs nanoparticles have been synthesized by catalytic decomposition of methane at 850 ℃ using nickel,iron and iron-nickel alloy catalysts.Comparative and systematic studies have been carried out on the morphology,structural characteristics and graphitic crystallinity of these CNOs products.Furthermore,the electrochemical hydrogen storage properties of three types of CNOs have been investigated.Measurements show that the Ni@CNOs have the highest discharge capacity of 387.2 mAh/g,coiTesponding to a hydrogen storage of 1.42%.This comparison study shows the advantages of each catalyst in the growth of CNOs.enabling the controllable synthesis and tuning the properties of CNOs by mediating different metals and their alloy for using in the fuel cell system.
Chenguang ZhangJiajun LiChunsheng ShiChunnian HeEnzuo LiuNaiqin Zhao
关键词:NICKEL
电化学沉积制备氧化钼/碳纳米管复合纤维及其电化学行为被引量:2
2012年
以电化学沉积法将氧化钼(MoOx)沉积于宏观碳纳米管(CNT)纤维上,制得氧化钼包覆碳纳米管复合纤维(MoOx/CNT),研究了复合纤维的结构、相组成及电化学性能。结果表明:该复合纤维由氧化钼均匀包覆碳纳米管束的同轴纳米纤维构成,氧化钼包覆层厚度为100~175nm,碳纳米管束直径为20~60 nm,能谱分析表明包覆层含Mo和O;将该复合纤维用于电化学系统超电容,电化学测试其具有明显的电化学活性,电容量为19 F/g;该复合纤维可用于发展电化学功能纤维或编织储能器件。
温洋洋钟小华洪英哲李亚利
关键词:氧化钼碳纳米管纤维电化学沉积
In-situ homogeneous synthesis of carbon nanotubes on aluminum matrix and properties of their composites被引量:2
2014年
Using nickel catalyst supported on aluminum powders, carbon nanotubes (CNTs) were successfully synthesized in aluminum powders by in-situ chemical vapor deposition at 650 ℃. Structural characterization revealed that the as-grown CNTs possessed higher graphitization degree and straight graphite shell. By this approach, more homogeneous dispersion of CNTs in aluminum powders was achieved compared with the traditional mechanical mixture methods. Using the in-situ synthesized CNTs/Al composite powders and powder metallurgy process, CNTs/Al bulk composites were prepared. Performance testing showed that the mechanical properties and dimensional stability of the composites were improved obviously, which was attributed to the superior dispersion of CNTs in aluminum matrix and the strong interfacial bonding between CNTs and matrix.
李海鹏范佳薇康建立赵乃勤王雪霞李宝娥
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