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91.
Qibin Yuan Fang‐Zhou Yao Shao‐Dong Cheng Linxi Wang Yifei Wang Shao‐Bo Mi Qing Wang Xiaohui Wang Hong Wang 《Advanced functional materials》2020,30(23)
Lead‐free dielectric ceramics have been the spotlight in the search for environmentally benign materials for electrostatic energy storage because of the ever‐increasing environmental concerns. However, the inverse correlation between the polarization and dielectric breakdown strength is the major barrier hindering the provision of sufficient energy densities in lead‐free dielectric ceramics and practical applications thereof. Herein, a rational structure design inspired by nature is demonstrated as an effective strategy to overcome these challenges. Bioinspired raspberry‐like hierarchically structured all‐inorganic nanocomposites have been prepared by enclosing microsized BaTiO3‐Bi(Mg0.5Zr0.5)O3 (BT‐BMZ) relaxor ferroelectrics using core‐shell BT‐BMZ@SiO2 nanoparticles. The synergistic effects of the bioinspired hierarchical structure and insulating SiO2 nano‐coating result in significantly improved dielectric breakdown strength and sustained large polarization in the nanocomposites, as corroborated by experimental characterizations and theoretical simulations. As a result, an ultrahigh energy density of 3.41 J cm?3 and a high efficiency of 85.1%, together with outstanding thermal stability within a broad temperature range, have been simultaneously achieved in the hierarchically structured nanocomposites. This contribution provides a feasible and paradigmatic approach to develop high‐performance dielectrics for electrostatic energy storage applications using bioinspired structure design. 相似文献
92.
为获得中心波长9.3μm激光的高功率输出,利用高功率脉冲CO2激光器进行选支实验研究。采用腔镜镀膜选支技术,通过控制对不同波长的透射率或反射率参数,在稳定腔和非稳腔中都得到了中心波长9.3μm激光的单谱线输出。在相同工作参数下,稳定腔中心波长9.3μm激光的能量为其原中心波长10.6μm激光的95%,非稳腔中心波长9.3μm激光的能量为其原中心波长10.6μm激光的93%,两种腔型中心波长9.3μm激光热敏纸光斑颜色与中心波长10.6μm激光的有明显不同。实验表明,采用腔镜镀膜选支技术在稳定腔和非稳腔中都能获得中心波长9.3μm激光的单谱线输出,且激光能量与原腔型输出中心波长10.6μm激光的基本相当。激光热敏纸光斑显示出在相同单脉冲能量作用下,中心波长9.3μm激光对物质的冲蚀作用高于中心波长10.6μm的激光。 相似文献
93.
The electromigration-induced failure of Sn95/Sb5 flip chip solder bumps was investigated. The failure of the joints was found
at the cathode/chip side after current stressing with a density of 1×104 A/cm2 at 150°C for 13 sec. The growth of intermetallic compounds (IMCs) was observed at the anode side after current stressing.
Voids were found near the current crowding area in the cathode/chip side, and the (Cu,Ni)6Sn5 IMC at the cathode/chip end was transformed into the Sn phase. The failure mechanism for Sn95/Sb5 flip chip solder joint
is proposed in this paper. 相似文献
94.
Sanghyun Woo Jin Shao Hyoungsoo Kim 《Analog Integrated Circuits and Signal Processing》2014,80(1):33-37
A 2.4-GHz transconductance (gm)—boosted common gate (CG) low-noise amplifier (LNA) with a high 1-dB compression point (P1dB) is proposed. To overcome the constraint of conventional CG LNA for input-mismatching, RF filters consisting of band-stop and high-pass filter are used as a load and inter-stage matching components, respectively. Therefore, the g m can be freely increased for a high gain and low noise figure (NF) without decreasing input impedance. Moreover, the linearity is also enhanced because band-stop filter load can reduce 2nd harmonics. The fully integrated LNA implemented by 0.18-µm RF CMOS technology delivers an input P1dB of ?1 dBm, a power gain of 14.8 dB and a NF of 3.7 dB. The LNA consumes 8.2 mA at a supply voltage of 1.8 V. 相似文献
95.
In this paper, an Ultra-Wideband (UWB) planar antenna is proposed for the reinforced concrete detection, which consists of a pair of planar waterdrop arms, a microstrip to coplanar par- allel-strips transition and a shallow rectangular cavity. In order to overcome the disadvantages of the shallow cavity, some absorbing material is loaded to weaken the narrow-band effect of the cavity and the crosstalk interference. The simulated and measured results show that the proposed antenna has a large bandwidth from 0.48 GHz to 3.6 GHz with Voltage Standing Wave Ratio (VSWR) below 2 and a fractional bandwidth about 200% under the center frequency of 1.6 GHz, directional radiation char- acteristics and small late-time ringing in the time domain, which can be suitable for nondestructive detection of the reinforced concrete. 相似文献
96.
To enhance the performance of organic devices, doping and graded mixed‐layer structures, formed by co‐evaporation methods, have been extensively adopted in the formation of organic thin films. Among the criteria for selecting materials systems, much attention has been paid to the materials' energy‐band structure and carrier‐transport behavior. As a result, some other important characteristics may have been overlooked, such as material compatibility or solubility. In this paper, we propose a new doping method utilizing fused organic solid solutions (FOSSs) which are prepared via high‐pressure and high‐temperature processing. By preparing fused solid solutions of organic compounds, the stable materials systems can be selected for device fabrication. Furthermore, by using these FOSSs, doping concentration and uniformity can be precisely controlled using only one thermal source. As an example of application in organic thin films, high‐performance organic light‐emitting diodes with both single‐color and white‐light emission have been prepared using this new method. Compared to the traditional co‐evaporation method, a FOSS provides us with a more convenient way to optimize the doping system and fabricate relatively complicated organic devices. 相似文献
97.
针对老年人和行动不便者日常生活困难的问题,设计了一款可以进行基本日常操作的智能搬运机器人。机器人以STM32单片机为主控制器,通过红外线、超声波等传感器获取外界环境信息,对履带式行走机构和机械臂进行控制。履带结构较为平稳,具有良好的越障能力;机械臂自由度高,可完成360度全方位无死角的的抓取活动。本文使用Creo进行建模,实现机器人的运动仿真,优化机器人机械结构,借助Keil进行程序编译,解决机器人运动的算法问题。智能机器人利用多个传感器作为“感觉器官”,凭借稳定的履带行走机构和高自由度的机械臂,实现超声避障、智能循迹、定距抓取等多个功能。 相似文献
98.
Bowen Jin Yuanhui Liu Junya Cui Shimeng Zhang Yu Wu Annan Xu Ming Xu Mingfei Shao 《Advanced functional materials》2023,33(31):2301909
Regarding the complex properties of various cations, the design of aqueous batteries that can simultaneously store multi-ions with high capacity and satisfactory rate performance is a great challenge. Here an amorphization strategy to boost cation-ion storage capacities of anode materials is reported. In monovalent (H+, Li+, K+), divalent (Mg2+, Ca2+, Zn2+) and even trivalent (Al3+) aqueous electrolytes, the capacity of the resulting amorphous MoOx is more than quadruple than that of crystalline MoOx and exceeds those of other reported multiple-ion storage materials. Both experimental and theoretical calculations reveal the generation of ample active sites and isotropic ions in the amorphous phase, which accelerates cation migration within the electrode bulk. Amorphous MoOx can be coupled with multi-ion storage cathodes to realize electrochemical energy storage devices with different carriers, promising high energy and power densities. The power density exceeded 15000 W kg−1, demonstrating the great potential of amorphous MoOx in advanced aqueous batteries. 相似文献
99.
Ming Wang Peng Fei Fang Ying Chen Xin Yang Leng Yong Yan Shao Bin Yang Ping Xu Cheng Yan 《Advanced functional materials》2023,33(30):2213902
The practical application of spinel-type lithium titanate Li4Ti5O12 (LTO) lithium-ion batteries is hindered by its poor conductivity and relatively low capacity. To address these issues, an LTO/reduced graphene oxide (rGO)/SnO2 is synthesized via an in situ electrostatic self-assembly and hydrothermal reduction process. Density function theory (DFT) simulations are conducted to understand the geometrical structures of these composites and the energy storage mechanisms. The DFT results confirm that the introduction of rGO and SnO2 to LTO increases the overall conductivity, improves the structure stability, and increases Li-ion diffusion speed. 相似文献
100.