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30篇 您的检索式:作者名="Aishui"
    题名 作者 年代 出处 被引量
1New electrochemical energy storage systems based on metallic lithium anode the research status,problems and challenges of lithium-sulfur,lithium-oxygen and all solid state batteries显示文摘Li-ion batteries have played a key role in the portable electronics and electrification of transport in modern society. Nevertheless,the limited highest energy density of Li-ion batteries is not sufficient for the long-term needs of society. Since lithium is the lightest metal among all metallic elements and possesses the lowest redox potential of.3.04 V vs. standard hydrogen electrode, it delivers the highest theoretical specific capacity of 3860 mA h g^(-1) and a high working voltage of full batteries which causes a great interest in electrochemical energy storage systems. Lithium-sulfur, lithium-oxygen and corresponding all solid state batteries based on metal lithium anode have received widely attention owing to their high energy densities. However, the problems in the cathode,electrolyte and anode of these three systems restrict their practical application. In this review, the research status and problems of these three energy storage systems are summarized and the challenges and future perspectives are also outlined.Liangyu Li Chunguang Chen Aishui Yu 2017Science China Chemistry2017,60,11:8
2Synthesis and characterization of LiNi 1? x ? y Co x Mn y O 2 as the cathode materials of secondary lithium batteries显示文摘Zhaolin Liu Aishui Yu Jim Y Lee 1999Journal of Power Sources1999,,:2
3Ultrasonically treated LiV3O8 as cathode material for secondary lithium batteries 显示文摘NAOAKI K AISHUI Y 1997J Electroehem Soc1997,144,3:1
4查看详情显示文摘Liu Zhaolin Yu Aishui Lee J Y 0,,:1
5Ultrasonically treated LiV3O8 as cathode material for secondary lithium batteries 显示文摘 Aishui Yu 1997Electrochem Soc1997,144,3:1
6Mesoporous Tin oxides as lithium intercalation anode materials 显示文摘Aishui Y Roger F 2002J Power Sources2002,104,:1
7Ultrasonically Treated LiV3O8 as a Cathode Material for Secondary Lithium Batteries显示文摘Naoaki Kumagai Aishui Yu 1997J Electrochem Soc1997,144,3:1
8Synthesis of pyrochlore tungsten trioxide thin film and electrochemical lithium intercalation显示文摘Yu Aishui Kumagai Naoaki Yashiro Hitoshi 1997Solid State Ionics1997,100,:1
9A New Method for Preparing Lithiated Vanadium Oxides and Their Electrochemical Performance in Secondary Lithium Batteries 显示文摘Aishui Yu Naoaki Kumagai Zhaolin Liu 1998J Power Sources1998,74,1:1
10Modifications of synthetic graphite for secondary lithium-ion battery applications显示文摘LIU Zhaolin YU Aishui LEE Jim Y 1999J of Power Sources1999,,82:1
11Mesoporous tin oxides as lithium intercalation anode materials显示文摘Aishui Yu Roger Frech 2002J Power Sources2002,104,:1
12Well-defined carbon nanoframes containing bimetal-N-C active sites as efficient bi-functional electrocatalysts for Li-Ch batterie显示文摘Design and fabrication of framework-structured porous precursors have been regarded as a prospective albeit challenging strategy to obtain bimetal/NC-enriched bifunctional elecrocatalysts. In this work, an effective bottom-up approach involving solution-based self-assembly and a post-annealing process was developed to confine (Co, Zn)-N-C active sites into N-enriched graphitic carbon nanocages. This novel architecture containing N-doped-C stabilized bimetallic nanoparticles derived from ZIF precursors was well-studied by a series of characterization and analysis techniques. Details were given that these well-dispersed (Co, Zn) nanoparticles were encapsulated into the pyridinic-N-dominated graphitic carbon nanocage with a total metal loading of approximately 7.4 at.%. This favorable hierarchical structure not only enhances the electron conductivity, but also owns a sufficient BET surface area facilitating the gas-liquid-solid triphase reaction and producing more space to store discharge products. Importantly, results infer that the interesting nanoframes manifests a satisfying ORR/OER activity and enhanced cell performance whether liquid or solid-state electrolytes are used. As such, our work rationalizes that this type of cage-shaped bimetal-N-C material is promising for high-performance Li-O2 batteries.Tie Liu Leidanyang Wang Tao Huang Aishui Yu 2019Nano Research2019,12,3:1
13Nitrogen-doped porous carbon nanofiber webs/sulfur composites as cathode materials for lithium-sulfur batteries显示文摘Lan Zhou Xiujing Lin Tao Huang Aishui Yu 2014Electrochimica Acta2014,,:1
14Modifications of syntheticgraphite for secondary lithium-ion battery applications 显示文摘 Yu Aishui Lee Jim Y 1999J PowerSources1999,8182,:1
15Mesoporous Tin Oxides as Lithium Intercalation Anode Materials显示文摘Aishui Yu Roger Frech 2002J Power Sources2002,104,:1
16Modifications of synthetic graphite for secondary Li-ion battery applications显示文摘Zhaolin L Aishui Y Jim Y 1999J Power Sources1999,8182,:1
17Ultrasonically treated LiV3O8 as cathode material for secondary lithium batteries显示文摘NAOAKI K AISHUI Y 1997J Electrochem Soc1997,144,3:1
18Mesoporous tin-oxide as lithium intercalation anode materials显示文摘Y Aishui F Roger 2002J Power Sources2002,104,:1
19Modifications of synthetic graphite for secondary lithium-ion battery application 显示文摘LIU Z L AISHUI Y LEE J Y 1999J Power Sources1999,8182,:1
20Synthesis and characterization of LiNil_x_yCoxMnyO2 as the cathode materials of secondary lithium batteries显示文摘Liu Zhaolin Yu Aishui Lee J Y 1999J Power Sources1999,8182,:1
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