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国家自然科学基金(11027402)

作品数:4 被引量:10H指数:2
相关作者:李晓梅白雪冬徐长山许智更多>>
相关机构:东北师范大学中国科学院更多>>
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:一般工业技术电气工程理学更多>>

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Synthesis of nitrogen-doped single-walled carbon nanotubes and monitoring of doping by Raman spectroscopy被引量:2
2013年
Nitrogen-doped single-walled carbon nanotubes (CNx-SWNTs) with tunable dopant concentrations were synthesized by chemical vapor deposition (CVD), and their structure and elemental composition were characterized by using transmission electron microscopy (TEM) in combination with electron energy loss spectroscopy (EELS). By comparing the Raman spectra of pristine and doped nanotubes, we observed the doping-induced Raman G band phonon stiffening and 2D band phonon softening, both of which reflect doping-induced renormalization of the electron and phonon energies in the nan- otubes and behave as expected in accord with the n-type doping effect. On the basis of first principles calculations of the distribution of delocalized carrier density in both the pristine and doped nanotubes, we show how the n-type doping occurs when nitrogen heteroatoms are substitutionally incorporated into the honeycomb tube-shell carbon lattice.
吴慕鸿李晓潘鼎刘磊杨晓霞许智王文龙隋郁白雪冬
透射电子显微镜中的扫描探针装置
2015年
为了满足单个纳米结构的操纵和物理测量需求,设计制作了透射电子显微镜内置扫描探针装置,实现了纳米操纵、物性测量和原位结构表征的功能,从而建立起低维材料独特性质与其本征结构的一一对应关系.
李晓梅徐长山许智白雪冬
关键词:透射电子显微镜
Preparing three-dimensional graphene architectures: Review of recent developments被引量:3
2013年
The recent development of synthesis processes to assemble graphene sheets into porous three-dimensional (3D)macroscopic structures are reviewed, including our efforts on 3D graphene structures. Mechanisms for building 3D graphene architectures and their composite materials are also summarized. The functional systems based on 3D graphene architectures provide a significant enhancement in the efficacy due to their unique structures and properties.
曾敏王文龙白雪冬
关键词:GRAPHENESELF-ASSEMBLY
Real-time in situ TEM studying the fading mechanism of tin dioxide nanowire electrodes in lithium ion batteries被引量:5
2013年
Fading mechanism of tin dioxide (SnO2) electrodes in lithium ion batteries has attracted much attentions, which is of great importance for the battery applications. In this paper, electrochemical lithiation-delithiation cycles of individual SnO2 nanowires were conducted in situ in a high-resolution transmission electron microscopy (TEM). Major changes in volume with expan- sions of 170%~300% on SnO2 nanowire electrodes were observed during the first lithiation process in electrochemical cycling, including conversion reaction of SnO2 precursor to Li20 matrix and active lithium host Sn, and alloying of Sn with Li to form brittle Li-Sn alloy. SnO2 nanowire electrodes were inclined to suffer from thermal runaway condition in the first two cycles. During cycling, morphology and composition evolution of SnO2 nanowire electrodes were recorded. Cyclic lithiation and del- ithiation of the electrode demonstrated the phase transition between Lii3Sn5 and Sn. Metallic Sn clusters were formed and their sizes enlarged with increasing cycle times. Detrimental aggregation of Sn clusters caused pulverization in SnO2 nanowire elec- trodes, which broke the conduction and transport path for electrons and lithium ions. The real-time in situ TEM revealed fading mechanism provides important guidelines for the viable design of the SnO2 nanowire electrodes in lithium ion batteries.
WANG LiFenXU ZhiYANG ShiZeTIAN XueZengWEI JiaKeWANG WenLongBAI XueDong
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