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41.
42.
Guan Xi Min Xiao Shuanjin Wang Dongmei Han Yuning Li Yuezhong Meng 《Advanced functional materials》2021,31(9):2007598
Polymer-based solid electrolytes (PSEs) have attracted tremendous interests for the next-generation lithium batteries in terms of high safety and energy density along with good flexibility. Remarkable performances have been demonstrated in PSEs, which endowed PSEs with the potential to replace liquid electrolytes to meet the market demands. In this review, polymer matrices, different polymer architectures, and functional filler materials used in PSEs are discussed to explore the design concepts, methodologies, working mechanisms, and pros and cons of various PSEs. In addition, their recent notable applications in all-solid-state lithium ion batteries, lithium–sulfur batteries, suppression of lithium dendrites, and flexible lithium batteries are also introduced. Finally, the challenges and future prospects are sketched to provide strategies to explore novel PSEs for high-performance all-solid-state lithium batteries. 相似文献
43.
为了研究表面改性方法及表面包覆均匀性、浸润性等性状对含能材料的机械感度、界面力学性能以及工艺性能的影响,仿生贻贝黏附蛋白的作用原理,以多巴胺为前驱体,采用一步法使其在含能材料表面聚合形成一层致密牢固的包覆薄膜聚多巴胺(PDA),制备了改性单质炸药(HMX@PDA、TATB@PDA)和改性铝粉(Al@PDA)。通过扫描电子显微镜、X射线光电子能谱和接触角测试仪对改性含能材料的表面形貌、药柱断裂处微观形貌、元素含量以及表面浸润性能进行了表征,采用国军标(GJB-772A-1997)、巴西实验等标准测试方法对改性含能材料的机械感度、拉伸应力-应变曲线等进行了测试,并将实测性能与未改性含能材料进行了对比分析。结果表明,与HMX晶体比较,HMX@PDA晶体的摩擦感度下降30%,特性落高数值增加一倍;与TATB基药柱比较,TATB@PDA基药柱的拉伸强度提高约15%;与Al粉比较,Al@PDA在HTPB液相中24h后可有效减缓沉降。聚多巴胺对晶体完整致密的包覆性能以及含有丰富活性基团的特性,对含能材料的包覆降感、界面力学性能提升和工艺稳定性提升等方面具有显著的界面改性作用。 相似文献
44.
利用大型计算流体动力学软件FLUENT,建立铝合金板搅拌摩擦焊接过程热流耦合三维有限元模型。通过求解三维质量、动量和能量守恒方程,得到焊接过程粘塑性金属三维流场和温度场。结果表明,相比较搅拌头的进给速度,搅拌头转速对促进其周围塑性金属流动效果明显。同时与纯流场模型相比,热流耦合模型显示金属流动性较充分。此外,仿真得到的温度场得到了实验结果的验证。 相似文献
45.
Ying-Xia Du Qiao Yang Wang-Ting Lu Qing-Yu Guan Fei-Fei Cao Geng Zhang 《Advanced functional materials》2023,33(27):2300895
Single metal atom isolated in nitrogen-doped carbon materials (M N C) are effective electrocatalysts for oxygen reduction reaction (ORR), which produces H2O2 or H2O via 2-electron or 4-electron process. However, most of M N C catalysts can only present high selectivity for one product, and the selectivity is usually regulated by complicated structure design. Herein, a carbon black-supported Co N C catalyst (CB@Co N C) is synthesized. Tunable 2-electron/4-electron behavior is realized on CB@Co-N-C by utilizing its H2O2 yield dependence on electrolyte pH and catalyst loading. In acidic media with low catalyst loading, CB@Co N C presents excellent mass activity and high selectivity for H2O2 production. In flow cell with gas diffusion electrode, a H2O2 production rate of 5.04 mol h−1 g−1 is achieved by CB@Co N C on electrolyte circulation mode, and a long-term H2O2 production of 200 h is demonstrated on electrolyte non-circulation mode. Meanwhile, CB@Co N C exhibits a dominant 4-electron ORR pathway with high activity and durability in pH neutral media with high catalyst loading. The microbial fuel cell using CB@Co N C as the cathode catalyst shows a peak power density close to that of benchmark Pt/C catalyst. 相似文献
46.
Fangxiao Guan Lianyun Yang Jing Wang Bing Guan Kuo Han Qing Wang Lei Zhu 《Advanced functional materials》2011,21(16):3176-3188
Dielectric polymer film capacitors having high energy density, low loss and fast discharge speed are highly desirable for compact and reliable electrical power systems. In this work, we study the confined ferroelectric properties in a series of poly(vinylidene fluoride‐co‐chlorotrifluoroethylene)‐graft‐polystyrene [P(VDF‐CTFE)‐g‐PS] graft copolymers, and their potential application as high energy density and low loss capacitor films. Thin films (ca. 20 μm) are prepared by different processing methods, namely, hot‐pressing or solution‐casting followed by mechanical stretching at elevated temperatures. After crystallization‐induced microphase separation, PS side chains are segregated to the periphery of PVDF crystals, forming a confining interfacial layer. Due to the low polarizability of this confining PS‐rich layer at the amorphous–crystalline interface, the compensation polarization is substantially decreased resulting in a novel confined ferroelectric behavior in these graft copolymers. Both dielectric and ferroelectric losses are significantly reduced at the expense of a moderate decrease in discharged energy density. Our study indicates that the best performance is achieved for a P(VDF‐CTFE)‐g‐PS graft copolymer with 34 wt‐% PS; a relatively high discharged energy density of approximately 10 J cm?3 at 600 MV m?1, a low dielectric loss (tanδ = 0.006 at 1 kHz), and a low hysteresis loop loss (17.6%) at 550 MV m?1. 相似文献
47.
Gaoxu Huang Yaqi Liao Xianming Zhao Xiaopan Jin Zhipeng Zhu Mengjia Guan Yongsheng Li 《Advanced functional materials》2023,33(6):2211364
Rational design of promising electrolyte is considered as an effective strategy to improve the cycling stability of lithium metal batteries (LMBs). Here, an elaborately designed ionic liquid-based electrolyte is proposed that is composed of lithium bis(trifluoromethanesulfonyl)imide as the lithium salt, 1-ethyl-3-methylimidazolium nitrate ionic liquid ([EMIm][NO3] IL) and fluoroethylene carbonate (FEC) as the functional solvents, and 1,2-dimethoxyethane (DME) as the diluent solvent. Using [EMIm][NO3] IL as the solvent component facilitates a special Li+-coordinated NO3− solvation structure, which enables the continues electrochemical reduction of solvated NO3− and the formation of remarkably stable and conductive solid electrolyte interface. With FEC as another functional solvent and DME as the diluent solvent, the formulated electrolyte delivers high oxidative stability and ionic conductivity, and endows improved electrochemical reaction kinetics. Therefore, the formulated electrolyte demonstrates exceedingly reversible and stable Li stripping/plating behavior with high average Coulombic efficiency (98.8%) and ultralong cycling stability (3500 h). Notably, the high-voltage Li|LiNi0.8Co0.1Mn0.1O2 full cell with IL-based electrolyte exhibits enhanced cyclability with a capacity retention of 65% after 200 cycles under harsh conditions of low negative/positive ratio (3.1) and lean electrolyte (2.5 µL mg−1). This study creates the first NO3−-based ionic liquid electrolyte and evokes the avenue for practical high-voltage LMBs. 相似文献
48.
Xinping Guan Xiaocheng Wang Kai Ma Zhixin Liu Qiaoni Han 《Telecommunication Systems》2014,57(4):313-325
Cognitive radio is becoming an emerging technology that has the potential of dealing with the stringent requirement and scarcity of the radio spectrum resource. In this paper, we focus on the dynamic spectrum access of cognitive radio networks, in which the primary user (PU) and secondary users (SUs) coexist. In property-rights model, the PU has property of the bandwidth and may decide to lease it to secondary network for a fraction of time in exchange for appropriate remuneration. We propose a cooperative communication-aware spectrum leasing framework, in which, PU selects SUs as cooperative relays to help transmit information, while the selected SUs have the right to decide their payment made for PU in order to obtain a proportional access time to the spectrum. Then, the spectrum leasing scheme is cast into a Nash Bargaining Problem, and the Nash Bargaining Solution (NBS) can be used to fairly and efficiently address the resource allocation between PU and secondary network, enhancing both the utility of PU and secondary network. Numerical results show that spectrum leasing based on NBS is an effective method to improve performance for cognitive radio networks. 相似文献
49.
管纯辉 《电信工程技术与标准化》2007,20(5):64-67
GSM网络是处在一个动态发展下的移动通信网络,切换成功率的优化是GSM网络的一项重要内容,在做好日常优化的同时,我们更加需要关注在动态网络环境下的切换成功率的优化. 相似文献
50.