期刊文献+
共找到6篇文章
< 1 >
每页显示 20 50 100
高密度磁记录纳米颗粒膜磁性的蒙特—卡罗模拟
1
作者 李渭清 王浩 《五邑大学学报(自然科学版)》 CAS 2002年第4期20-24,共5页
用蒙特-卡罗方法对Co-C和CoPt-C纳米颗粒膜的磁特性进行模拟研究. 模拟中,假设磁性颗粒为球形、单畴,易轴随机取向. 对包含hcp结构、直径为3 nm的Co颗粒的Co-C膜给出了湿度从3 K到300 K的磁滞回线,超顺磁驰豫的截止温度约20 K;对包含fc... 用蒙特-卡罗方法对Co-C和CoPt-C纳米颗粒膜的磁特性进行模拟研究. 模拟中,假设磁性颗粒为球形、单畴,易轴随机取向. 对包含hcp结构、直径为3 nm的Co颗粒的Co-C膜给出了湿度从3 K到300 K的磁滞回线,超顺磁驰豫的截止温度约20 K;对包含fct结构CoPt的CoPt-C膜给出了300 K时平均颗粒尺寸从4 nm到6 nm,对应于不同尺寸分布下的磁滞回线. 模拟显示,由于fct结构CoPt-C有特大的各向异性,因而具备超高的矫顽力,可以满足超高密度磁记录的需要. 以上模拟的结果与Co-C颗粒膜和CoPt-C颗粒膜的实验结果一致. 展开更多
关键词 磁记录纳米颗粒膜 蒙特-卡罗模拟 超顺磁驰豫 铁磁性 高存储密度 磁滞回线
下载PDF
Sodium iron hexacyanoferrate with high Na content as a Na-rich cathode material for Na-ion batteries 被引量:27
2
作者 Ya You Xiqian Yu +2 位作者 Yaxia Yin Kyung-Wan Nam Yu-Guo Guo 《Nano Research》 SCIE EI CAS CSCD 2015年第1期117-128,共12页
Owing to the worldwide abundance and low-cost of Na, room-temperature Na-ion batteries are emerging as attractive energy storage systems for large- scale grids. Increasing the Na content in cathode materials is one of... Owing to the worldwide abundance and low-cost of Na, room-temperature Na-ion batteries are emerging as attractive energy storage systems for large- scale grids. Increasing the Na content in cathode materials is one of the effective ways to achieve high energy density. Prussian blue and its analogues (PBAs) are promising Na-rich cathode materials since they can theoretically store two Na+ ions per formula unit. However, increasing the Na content in PBAs cathode materials remains a major challenge. Here we show that sodium iron hexacyanoferrate with high Na content can be obtained by simply controlling the reducing agent and reaction atmosphere during synthesis. The Na content can reach as high as 1.63 per formula, which is the highest value for sodium iron hexacyanoferrate. This Na-rich sodium iron hexacyanoferrate demonstrates a high specific capacity of 150 mAh·g^-1 and remarkable cycling performance with 90% capacity retention after 200 cycles. Furthermore, the Na intercalation/ de-intercalation mechanism has been systematically studied by in situ Raman spectroscopy, X-ray diffraction and X-ray absorption spectroscopy analysis for the first time. The Na-rich sodium iron hexacyanoferrate can function as a plenteous Na reservoir and has great potential as a cathode material for practical Na-ion batteries. 展开更多
关键词 sodium iron hexacyanoferrate Na-rich cathode sodium-ion batteries Prussian blue analogues
原文传递
Low-power memristors based on layered 2D SnSe/graphene materials 被引量:7
3
作者 Hong Wang Tianqi Yu +2 位作者 Jianhui Zhao Shufang Wang Xiaobing Yan 《Science China Materials》 SCIE EI CAS CSCD 2021年第8期1989-1996,共8页
The emerging two-terminal memristor with a conductance-adjustable function under external stimulation is considered a strong candidate for use in artificial memory and electronic synapses. However, the stability, unif... The emerging two-terminal memristor with a conductance-adjustable function under external stimulation is considered a strong candidate for use in artificial memory and electronic synapses. However, the stability, uniformity, and power consumption of memristors are still challenging in neuromorphic computing. Here an Au/SnSe/graphene/SiO_(2)/Si memristor was fabricated, incorporating two-dimensional graphene with high thermal conductivity. The device not only exhibits excellent electrical characteristics(e.g., high stability,good uniformity and a high ROFF/RON ratio), but also can implement biological synaptic functions such as paired-pulse facilitation, short-term plasticity and long-term plasticity. Its set and reset power values can be as low as 16.7 and 2.3 nW,respectively. Meanwhile, the resistance switching mechanism for the device, which might be associated with the formation and rupture of a filamentary conducting path consisting of Sn vacancies, was confirmed by high-resolution transmission electron microscopy observations. The proposed device is an excellent candidate for use in high-density storage and lowpower neuromorphic computing applications. 展开更多
关键词 GRAPHENE SnSe MEMRISTOR electronic synapse
原文传递
Ferroelectric control of single-molecule magnetism in 2D limit 被引量:2
4
作者 Xinwei Wang Chengcheng Xiao +8 位作者 Chao Yang Miaogen Chen Shengyuan A.Yang Jun Hu Zhaohui Ren Hui Pan Wenguang Zhu Zhu-An Xu Yunhao Lu 《Science Bulletin》 SCIE EI CAS CSCD 2020年第15期1252-1259,M0003,共9页
The electric control of magnetic properties based on magnetoelectric effect is crucial for the development of future data storage devices.Here,based on first-principles calculations,a strong magnetoelectric effect is ... The electric control of magnetic properties based on magnetoelectric effect is crucial for the development of future data storage devices.Here,based on first-principles calculations,a strong magnetoelectric effect is proposed to effectively switch on/off the magnetic states as well as alter the in-plane/perpendicular easy axes of metal-phthalocyanine molecules(MPc)by reversing the electric polarization of the underlying two-dimensional(2D)ferroelectric a-In2Se3 substrate with the application of an external electric field.The mechanism originates from the different hybridization between the molecule and the ferroelectric substrate in which the different electronic states of surface Se layer play a dominant role.Moreover,the magnetic moments and magnetic anisotropy energies(MAE)of OsPc/In2Se3 can be further largely enhanced by a functionalized atom atop the OsPc molecule.The I-OsPc/In2Se3 system possesses large MAE up to 30 meV at both polarization directions,which is sufficient for room-temperature applications.These findings provide a feasible scheme to realize ferroelectric control of magnetic states in 2D limit,which have great potential for applications in nanoscale electronics and spintronics. 展开更多
关键词 Magnetoelectric effect Two-dimensional ferroelectric Single-molecular magnets In2Se3 Metal-phthalocyanine molecules
原文传递
Exploration and progress of high-energy supercapacitors and related electrode materials 被引量:2
5
作者 YANG Mei XIA Hui 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第11期1851-1863,共13页
As one of new electrical energy storage systems, supercapacitors possess higher energy density than conventional capacitors and larger power density than batteries, integrating substantial merits with high energy, lar... As one of new electrical energy storage systems, supercapacitors possess higher energy density than conventional capacitors and larger power density than batteries, integrating substantial merits with high energy, large power delivery, long cycle life, obvious safety, and low cost. However, the unsatisfying energy density is the inhabiting issue for the wide commercial applications. As the energy density(E, W h kg?1) is directly proportional to specific capacitance(C, F g?1) and the square of operating voltage(V, V), in this review, we summarize the recent progress in two sections: the exploration of high-performance electrode materials to achieve high specific capacitance and the construction of high-voltage supercapacitor systems for high working voltage. The progressive explorations and developments in supercapacitors could guide the future research towards high-performance, low-cost, and safe energy storage devices. 展开更多
关键词 electrochemical capacitors high-energy supercapacitors electrode materials energy density energy storage systems
原文传递
Revealing interfacial space charge storage of Li^(+)/Na^(+)/K^(+)by operando magnetometry
6
作者 Xiangkun Li Jie Su +12 位作者 Zhaohui Li Zhiqiang Zhao Fengling Zhang Leqing Zhang Wanneng Ye Qinghao Li Kai Wang Xia Wang Hongsen Li Han Hu Shishen Yan Guo-Xing Miao Qiang Li 《Science Bulletin》 SCIE EI CSCD 2022年第11期1145-1153,共9页
Interfacial space charge storage between ionic and electronic conductor is a promising scheme to further improve energy and power density of alkali metal ion batteries(AMIBs).However,the general behavior of space char... Interfacial space charge storage between ionic and electronic conductor is a promising scheme to further improve energy and power density of alkali metal ion batteries(AMIBs).However,the general behavior of space charge storage in AMIBs has been less investigated experimentally,mostly due to the complicated electrochemical behavior and lack of proper characterization techniques.Here,we use operando magnetometry to verify that in FeSe_(2)AMIBs,abundant Li^(+)/Na^(+)/K^(+)(M^(+))can be stored at M_(2)Se phase while electrons accumulate at Fe nanoparticles,forming interfacial space charge layers.Magnetic and dynamics tests further demonstrate that with increasing ionic radius from Li^(+),Na^(+)to K^(+),the reaction kinetics can be hindered,resulting in limited Fe formation and reduced space charge storage capacity.This work lays solid foundation for studying the complex interfacial effect in electrochemical processes and designing advanced energy storage devices with substantial capacity and considerable power density. 展开更多
关键词 Operando magnetometry Interfacial space charge storage Alkali metal ions batteries Kinetics FeSe_(2)
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部