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国家重点基础研究发展计划(2011CB932602)

作品数:6 被引量:73H指数:5
相关作者:黄璐黄毅陈永胜张昳随东更多>>
相关机构:南开大学中国科学院清华大学更多>>
发文基金:国家重点基础研究发展计划国家自然科学基金中国博士后科学基金更多>>
相关领域:理学一般工业技术建筑科学电气工程更多>>

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6 条 记 录,以下是 1-7
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基于层状水滑石催化剂高效制备纳米碳
<正>石墨烯、碳纳米管这一类纳米碳是目前材料、物理、化学领域的研究制高点,是推动能源存储、多相催化、高性能复合、生物医药领域的重要新材料。本研究采用层状双羟基金属氢氧化物这一类水滑石类化合物(LDH)实现高性能的碳纳米管...
张强赵梦强田桂丽黄佳琦魏飞
关键词:水滑石碳纳米管石墨烯
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微波还原氧化石墨烯及其气体储存性能研究(英文)被引量:9
2014年
通过微波辅助还原氧化石墨烯(GO)的方法,制备了多孔石墨烯材料(MWRGO),并对该材料的结构与性质进行了深入研究.结果表明,微波辐射使得GO有效还原,还原产物具有多孔、不规则堆积的结构,其比表面积达461.6 m2/g,孔径主要分布在0.67 nm左右.进一步的研究表明,MWRGO材料具有很好的气体储存性能.在77 K一个大气压下,MWRGO可储存0.52 wt%的H2,当压力增加到60 bar时,H2储存量高达10.7 wt%;在273 K一个大气压下,其对CO2的吸附量高达7.1 wt%.
随东黄毅黄璐张昳陈永胜
关键词:石墨烯碳材料多孔材料
Carbon nanotubes for supercapacitors:Consideration of cost and chemical vapor deposition techniques被引量:3
2012年
In this topic, we first discussed the requirement and performance of supercapacitors using carbon nanotubes (CNTs) as the electrode, including specific surface area, purity and cost. Then we reviewed the preparation technique of single wailed CNTs (SWNTs) in relatively large scale by chemical vapor deposition method. Its catalysis on the decomposition of methane and other carbon source, the reactor type and the process control strategies were discussed. Special focus was concentrated on how to increase the yield, selectivity, and purity of SWNTs and how to inhibit the formation of impurities, including amorphous carbon, multiwalled CNTs and the carbon encapsulated metal particles, since these impurities seriously influenced the performance of SWNTs in supercapacitors. Wish it be helpful to further decrease its product cost and for the commercial use in supercapacitors.
Chao ZhengWeizhong QianChaojie CuiGuanghui XuMengqiang ZhaoGuili TianFei Wei
关键词:SUPERCAPACITORCATALYSIS
用于多相催化和电催化的掺氮碳纳米管
<正>氮掺杂碳纳米管是碳纳米管的一类衍生材料,将氮原子引入碳纳米管中可调变碳纳米管的结构及其表面性能,从而使化学惰性的碳纳米管管壁呈现一定化学活性。目前,氮掺杂碳纳米管在包括电化学、催化等领域都有广泛应用前景。例如,氮掺...
张强周凯黄佳琦赵梦强田桂丽李波张炳森苏党生魏飞
关键词:催化剂卤化氧还原
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A review of the large-scale production of carbon nanotubes:The practice of nanoscale process engineering被引量:9
2012年
Carbon nanotubes(CNTs) are nanomaterials that have attracted great research interest because of their unique properties and promising applications.The controllable synthesis of CNTs is a precondition for their broad application.In this review,we consider nanoscale process engineering and assess recent progress in the mass production of ultra-long,inexpensive CNTs with good alignment as well as tunability in wall number and diameter for fundamental and engineering science applications across multiple scales.Cutting-edge nanoscale process engineering research in the areas of physics,chemistry,materials,engineering,ecology,and social science will allow us to obtain high added value and multi-functional advanced CNTs.The synthesis of CNTs with controllable chirality,good-alignment,and predetermined sizes and lengths still presents great challenges.Through multidisciplinary scientific research,advanced CNT-based materials will promote the development of a sustainable society.
HUANG JiaQiZHANG QiangZHAO MengQiangWEI Fei
关键词:碳纳米管工程实践社会科学
气相原位聚合制备碳纳米管/乙丙橡胶复合材料及其性能表征被引量:5
2020年
以碳纳米管为防黏助剂,通过气相原位聚合制备了乙丙橡胶复合材料。加入适量的碳纳米管可以防止聚合过程中由于温度升高导致的橡胶颗粒软化粘结问题,且碳纳米管的加入对乙丙橡胶的熔融温度和热解温度没有影响;与导电炭黑相比,碳纳米管的加入显著提高了复合材料的导电性能和拉伸强度;通过气相原位聚合制备的复合材料,碳纳米管在乙丙橡胶中的分散良好,其导电性能优于机械共混法制备的碳纳米管-橡胶复合材料。
申锴泉李化毅王垚
关键词:气相聚合乙丙橡胶碳纳米管复合材料
Hierarchical nanostructured composite cathode with carbon nanotubes as conductive scaffold for lithium-sulfur batteries被引量:6
2013年
Carbon nanotubes (CNTs) are excellent scaffolds for advanced electrode materials, resulting from their intrinsic sp2 carbon hybridization, interconnected electron pathway, large aspect ratio, hierarchical porous structures, and low cost at a large-scale production. How to make full utilization of the mass produced CNTs as building blocks for nanocomposite electrodes is not well understood yet. Herein, a composite cathode containing commercial agglomerated multi-walled CNTs and S for Li-S battery was fabricated by a facile melt-diffusion strategy. The hierarchical CNT@S coaxial nanocables exhibited a discharging capacity of 1020 and 740 mAh .g-1 at 0.5 and 2.0 C, respectively. A rapid capacity decay of 0.7% per cycle at the initial 10 cycles and a slow decay rate of 0.14% per cycle for the later 140 cycles were detected. Such hierarchical agglomerated CNT@ S cathodes show advantages in easy fabrication, environmentally benign, low cost, excellent scalability, and good Li ion storage performance, which are extraordinary composites for high performance Li-S battery.
Xiaofei LiuQiang ZhangJiaqi HuangShumao ZhangHongjie PengFei Wei
关键词:CATHODE
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