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国家自然科学基金(21121063)

作品数:16 被引量:45H指数:5
相关作者:宋卫国万立骏曹昌燕方晓红程茗更多>>
相关机构:中国科学院重庆大学潍坊威能环保电源有限公司更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:理学电气工程化学工程一般工业技术更多>>

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16 条 记 录,以下是 1-10
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Core-shell meso/microporous carbon host for sulfur loading toward applications in lithium-sulfur batteries被引量:4
2014年
Lithium-sulfur(Li-S) batteries belong to one of the promising technologies for high-energy-density rechargeable batteries.However,sulfur cathodes suffer from inherent problems of its poor electronic conductivity and the shuttling of highly dissoluble lithium polysulfides generated during the cycles.Loading sulfur into porous carbons has been proved to be an effective approach to alleviate these issues.Mesoporous and microporous carbons have been widely used for sulfur accommodation,but mesoporous carbons have poor sulfur confinement,whereas microporous carbons are impeded by low sulfur loading rates.Here,a core-shell carbon,combining both the merits of mesoporous carbon with large pore volume and microporous carbon with effective sulfur confinement,was prepared by coating the mesoporous CMK-3 with a microporous carbon(MPC) shell and served as the carbon host(CMK-3 @MPC) to accommodate sulfur.After sulfur infusion,the as-obtained S/(CMK-3@MPC) cathode delivered a high initial capacity of up to 1422 mAh·g-1 and sustained 654 mAh·g-1 reversible specific capacity after 36 cycles at 0.1 C.The good performance is ascribed to the unique core-shell structure of the CMK-3@MPC matrix,in which sulfur can be effectively confined within the meso/microporous carbon host,thus achieving simultaneously high electrochemical utilization.
Juan ZhangHuan YeYaxia YinYuguo Guo
尖晶石型钛酸锂电化学储镁性能研究
随着人类对能源的需求日益增大,人们把目光转向具有能量密度大、转换效率高、污染小,更安全的新型可再生的能源。由于金属镁自然储备丰富,价格便宜,更安全,使得镁二次电池作为锂电池的替代品,得到越来越多的关注。目前已经有一些关于...
吴娜吕迎春肖瑞娟禹习谦殷雅侠杨晓青李泓谷林郭玉国
Carbon-free Cu_2ZnSn(S,Se)_4 film prepared via a non-hydrazine route
2014年
The kesterite Cu2ZnSn(S,Se)4(CZTSSe) is an ideal candidate for light harvesting materials in earth-abundant low-cost thinfilm solar cells(TFSC). Although the solution-based processing is a most promising approach to achieve low-cost solar cells with high power conversion efficiency, the issues of poor crystallinity and carbon residue in CZTSSe thin films are still challenging. Herein, a non-hydrazine solution-based method was reported to fabricate highly crystallized and carbon-free kesterite CZTSSe thin films. Interestingly, it was found that the synthetic atmosphere of metal organic precursors have a dramatic impact on the morphology and crystallinity of CZTSSe films. By optimizing the processing parameters, we were able to obtain a kesterite CZTSSe film composed of compact large crystal grains with trace carbon residues. Also, a viable reactive ion etching(RIE) processing with optimized etching conditions was then developed to successfully eliminate trace carbon residues on the surface of the CZTSSe film.
ZOU YuGangLIU JieZHANG XingJIANG YanHU JinSongWAN Li-Jun
关键词:CZTS
Effect of cations in ionic liquids on the electrochemical performance of lithium-sulfur batteries被引量:6
2014年
Lithium-sulfur(Li-S) battery is a promising choice for the next generation of high-energy rechargeable batteries, but its application is impeded by the high dissolution of the polysulfides in commonly used organic electrolyte. Room temperature ionic liquids(RTILs) have been considered as appealing candidates for the electrolytes in Li-S batteries. We investigated the effect of cations in RTILs on the electrochemical performance for Li-S batteries. Ex situ investigation of lithium anode for Li-S batteries indicates that during the discharge/charge process the RTIL with N-methyl-N-propylpyrrolidine cations(P13) can effectively suppress the dissolution of the polysulfides, whereas the RTIL with 1-methyl-3-propyl imidazolium cation(PMIM) barely alleviates the shuttling problem. With 0.5 mol L-1 LiTFSI/P13 TFSI as the electrolyte of Li-S battery, the ketjen black/ sulfur cathode material exhibits high capacity and remarkable cycling stability, which promise the application of the P13-based RTILs in Li-S batteries.
YAN YangYIN YaXiaGUO YuGuoWAN Li-Jun
关键词:POLYSULFIDES
Core-shell structured nanospheres with mesoporous silica shell and Ni core as a stable catalyst for hydrolytic dehydrogenation of ammonia borane被引量:1
2014年
Core-shell structured nanospheres with mesoporous silica shell and Ni core(denoted as Ni@meso-SiO2) are prepared through a three-step process. Monodispersed Ni precursors are first prepared, and then coated with mesoporous SiO2. Final Ni@meso-SiO2spheres are obtained after calcination. The products are characterized by X-ray powder diffraction, transmission electron microscopy and N2adsorption-desorption methods. These spheres have a high surface area and are well dispersed in water, showing a high catalytic activity with a TOF value of 18.5,and outstanding stability in hydrolytic dehydrogenation of ammonia borane at room temperature.
Hua LiuChangyan CaoPing LiYu YuWeiguo Song
关键词:NICKELCORE-SHELL
Hybrid molecular nanostructures with donor-acceptor chains
2013年
We have fabricated hybrid molecular chain structures formed by electron acceptor compound 1 and electron donor molecules 2 and 3 at the liquid/solid interface of graphite surface.The structural details of the mono-component and the binary assemblies are revealed by high resolution scanning tunneling microscopy (STM).Compound 1 can form two well-ordered lamellar patterns at different concentrations.In the co-adsorption structures,compounds 2 and 3 can insert into the space between molecular chains of compound 1 and form large area well-ordered nanoscale phase separated lamellar structures.The unit cell parameters for the coassemblies can be "flexibly" adjusted to make the electron donors and acceptors perfectly match along the molecular chains.Scanning tunneling spectroscopy (STS) results indicate that the electronic properties of individual molecular donors and acceptors are preserved in the binary self-assembly.These results provide molecular insight into the nanoscale phase separation of organic electron acceptors and donors on surfaces and are helpful for the fabrication of surface supramolecular structures and molecular devices.
YANG LiuGUAN CuiZhongYUE WanWU JingYiYAN HuiJuanZHANG XuWANG ZhaoHuiZHAN XiaoWeiLI YuLiangWANG DongWAN LiJun
SnO_2 hollow spheres:Polymer bead-templated hydrothermal synthesis and their electrochemical properties for lithium storage被引量:6
2012年
SnO2 hollow spheres have been synthesized via a facile hydrothermal method using sulfonated polystyrene beads as a template followed by a calcination process in air.X-ray diffraction,scanning electron microscopy,and transmission electron microscopy show that the as-obtained SnO2 hollow spheres have a wall thickness of about 50 nm,and consist of nanosized SnO2 particles with a mean diameter of about 15 nm.Electrochemical measurements indicate that the SnO2 hollow spheres exhibit improved electrochemical performance in terms of specific capacity and rate capability in comparison with commercial SnO2 when used as anode materials for lithium-ion batteries.The enhanced performance may be attributed to the spherical and hollow structure,as well as the building blocks of SnO2 nanoparticles.
YIN YaXiaXIN SenWAN LiJunLI CongJuGUO YuGuo
介/微孔碳载体的设计合成及其在锂硫电池中的应用研究
锂硫电池,因具备高比能量(理论值为2600Wh/kg)、价格低廉、环境友好等优点而被认为是下一代最具潜力的电池体系之一[1,2]。目前对硫正极的改性主要通过将硫与多孔碳载体复合。我们通过设计合成不同结构的介/微孔碳载体负...
张娟叶欢杨春鹏辛森殷雅侠郭玉国
水滑石&石墨烯复合多孔材料用作超级电容器电极性能研究
<正>多孔材料因其相对密度低、比表面积高、渗透性好等特点广泛应用在催化、能源转化、吸附分离等领域。含有过渡金属元素的水滑石作为用作赝电容电容器电极材料中的翘楚,如何设计合成以使该材料兼具多孔材料的结构特性,确保其在充分发...
黄佩佩曹昌燕宋卫国
关键词:水滑石多孔材料超级电容器
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Nanoscale imaging with an integrated system combining stimulated emission depletion microscope and atomic force microscope被引量:10
2013年
We have built an integrated imaging system by combining stimulated emission depletion(STED)microscope and atomic force microscope(AFM).The STED microscope was constructed based on the supercontinuum fiber laser and a super lateral resolution of42 nm was achieved.With this integrated imaging system,morphological features,mechanical parameters and fluorescence super resolution imaging were obtained simultaneously for both nanobeads and fixed cell samples.This new integrated imaging system is expected to obtain comprehensive information at the nanoscale for studies in nanobiology and nanomedicine.
YU JianQiangYUAN JingHeZHANG XueJieLIU JianLiFANG XiaoHong
关键词:原子力显微镜受激发射横向分辨率
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