维普中文期刊产品整合服务
19篇 您的检索式:作者名="Yu 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
3查看详情显示文摘Liu Zhaolin Yu Aishui Lee J Y 0,,:1
4Ultrasonically treated LiV3O8 as cathode material for secondary lithium batteries 显示文摘 Aishui Yu 1997Electrochem Soc1997,144,3:1
5Ultrasonically Treated LiV3O8 as a Cathode Material for Secondary Lithium Batteries显示文摘Naoaki Kumagai Aishui Yu 1997J Electrochem Soc1997,144,3:1
6Synthesis 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
7A 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
8Modifications 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
9Mesoporous tin oxides as lithium intercalation anode materials显示文摘Aishui Yu Roger Frech 2002J Power Sources2002,104,:1
10Well-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
11Nitrogen-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
12Modifications of syntheticgraphite for secondary lithium-ion battery applications 显示文摘 Yu Aishui Lee Jim Y 1999J PowerSources1999,8182,:1
13Mesoporous Tin Oxides as Lithium Intercalation Anode Materials显示文摘Aishui Yu Roger Frech 2002J Power Sources2002,104,:1
14Synthesis 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
15TiO2 nanotube array film prepared by anodization as anode material for lithium ion batteries显示文摘Zhen Wei Zheng Liu Rongrong Jiang Chaoqing Bian Tao Huang Aishui Yu Journal of Solid State Electrochemistry0,,:1
16TiO2 nanotube array film prepared by anodization as anode material for lithium ion batteries显示文摘Zhen Wei Zheng Liu Rongrong Jiang Chaoqing Bian Tao Huang Aishui Yu 2010Journal of Solid State Electrochemistry2010,,6:1
17Synthesis and characterization of LiNi1-x-yCoxMnyO2 as the cathode materials of secondary lithium batteries 显示文摘LIU Zhaolin YU Aishui LEE Jim Y 1999J Power Sources1999,8182,:1
18Interfacial Issues of All Solid State Lithium Batteries显示文摘All solid state lithium battery is a promising next-generation battery system with improved cycle life,energy density,especially safety.However,its development is greatly hampered by a large impedance between the solid state electrolyte/electrode interface.How to build an ideal electrolyte/electrode interface to improve the interfacial stability and reduce the interfacial resistance is a huge challenge for improving battery performance.This paper reviews interfacial problems and introduces the formation mechanism of different interface layers between electrodes and electrolytes.In addition,the strategies for improving interfacial contact and reducing interfacial resistance are described in detail.Finally,the research directions for engineering interfaces in all solid state lithium batteries are proposed.Wang Leidanyang Su Yunmning Liu Siyang Chen Chunguang Hu Shanming Huang Tao Yu Aishui 2018Transactions of Nanjing University of Aeronautics and Astronautics2018,35,4:0
19Revealing the specific role of sulfide and nano-alumina in composite solid-state electrolytes for performance-reinforced ether-nitrile copolymers显示文摘Composite solid-state electrolytes represent a critical pathway that balances the interface compatibility and lithium-ion conductivity in all-solid-state batteries.The quest for stable and highly ion-conductive combinations between polymers and fillers is vital,but blind attempts are often made due to a lack of understanding of the mechanisms involved in the interaction between polymers and fillers.Herein,we employ in-situ polymerization to prepare a polymer based on an ether-nitrile copolymer with high cathode stability as the foundation and discuss the performance enhancement mechanisms of argyrodite and nano-alumina.With 1%content of sulfide interacting with the polymer at the two-phase interface,the local enhancement of lithium-ion migration capability can be achieved,avoiding the reduction in capacity due to the low ion conductivity of the passivation layer during cycling.The capacity retention after 50cycles at 0.5 C increases from 83.5%to 94.4%.Nano-alumina,through anchoring the anions and interface inhibition functions,eventually poses an initial discharge capacity of 136.8 m A h g^(-1)at 0.5 C and extends the cycling time to 1000 h without short-circuiting in lithium metal batteries.Through the combined action of dual fillers on the composite solid-state electrolyte,promising insights are provided for future material design.Haoyang Yuan Changhao Tian Mengyuan Song Wenjun Lin Tao Huang Aishui Yu 2024Journal of Energy Chemistry2024,91,4:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费