24小时热门版块排行榜    

Znn3bq.jpeg
查看: 16495  |  回复: 394
【奖励】 本帖被评价254次,作者堕落的鱼9297增加金币 200.4
本帖产生 1 个 ECEPI ,点击这里进行查看
当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖

堕落的鱼9297

木虫 (正式写手)


[资源] 2013年John B. Goodenough在jacs上的一篇综述

英文水平有限,怕翻译不伦不类,直接上英文的.....
The Li-ion Rechargeable Battery: A Perspective
Abstract Each cell of a battery stores electrical energy as chemical energy in two electrodes, a reductant (anode) and an oxidant (cathode), separated by an electrolyte that transfers the ionic component of the chemical reaction inside the cell and forces the electronic component outside the battery. The output on discharge is an external electronic current I at a voltage V for a time Δt. The chemical reaction of a rechargeable battery must be reversible on the application of a charging I and V. Critical parameters of a rechargeable battery are safety, the density of energy that can be stored at a specific power input and retrieved at a specific power output, the cycle and shelf life, the storage efficiency, and the cost of fabrication. Conventional ambient-temperature rechargeable batteries have solid electrodes and a liquid electrolyte. The positive electrode (cathode) consists of a host framework into which the mobile (working) cation is inserted reversibly over a finite solid-solution range. The solid-solution range, which is reduced at higher current by the rate of transfer of the working ion across electrode/electrolyte interfaces and within a host, limits the amount of charge per electrode formula unit that can be transferred over the time Δt = Δt(I). Moreover, the difference between the energies of the LUMO and the HOMO of the electrolyte, i.e. the electrolyte window, determines the maximum voltage for a long shelf and cycle life. The maximum stable voltage with an aqueous electrolyte is 1.5 V; the Li-ion rechargeable battery uses an organic electrolyte with a larger window, which increase the density of stored energy for a given Δt. Anode or cathode electrochemical potentials outside the electrolyte window can increase V, but they require formation of a passivating surface layer that must be permeable to Li+ and capable of adapting rapidly to the changing electrode surface area as the electrode changes volume during cycling. A passivating surface layer adds to the impedance of the Li+ transfer across the electrode/electrolyte interface and lowers the cycle life of a battery cell. Moreover, formation of a passivation layer on the anode robs Li from the cathode irreversibly on an initial charge, further lowering the reversible Δt. These problems plus the cost of quality control of manufacturing plague development of Li-ion rechargeable batteries that can compete with the internal combustion engine for powering electric cars and that can provide the needed low-cost storage of electrical energy generated by renewable wind and/or solar energy. Chemists are contributing to incremental improvements of the conventional strategy by (1) investigating and controlling electrode passivation layers, (2) improving the rate of Li+ transfer across electrode/electrolyte interfaces, (3) identifying electrolytes with larger windows while retaining a Li+ conductivity σLi > 10-3 S cm-1, (4) synthesizing electrode morphologies that reduce the size of the active particles while pinning them on current collectors of large surface area accessible by the electrolyte, (5) lowering the cost of cell fabrication, (6) designing displacement-reaction anodes of higher capacity that allow a safe, fast charge, (7) designing alternative cathode hosts. However, new strategies are needed for batteries that go beyond powering hand-held devices. These strategies include (1) the use of electrode hosts with two-electron redox centers, (2) replacing the cathode hosts (a) by materials undergoing displacement reactions, e.g. sulfur, (b) by liquid cathodes that may contain flow-through redox molecules, (c) by catalysts for air cathodes, and /or (3) by the development of a Li+ solid electrolyte separator membrane that allows an organic and aqueous liquid electrolyte on the anode and cathode sides, respectively. Opportunities exist for the chemist to bring together oxide and polymer or graphene chemistry in imaginative morphologies.
回复此楼

» 本帖附件资源列表

  • 欢迎监督和反馈:小木虫仅提供交流平台,不对该内容负责。
    本内容由用户自主发布,如果其内容涉及到知识产权问题,其责任在于用户本人,如对版权有异议,请联系邮箱:xiaomuchong@tal.com
  • 附件 1 : ja3091438.pdf
  • 2013-01-10 10:58:11, 1.18 M

» 收录本帖的淘帖专辑推荐

科研软件教程 电化学-电池材料 锂电资源共享 纳米技术与能源及模拟
锂离子电池 先进材料 锂离子电池正极材料 万卷阁之搜神记
科研资料 文献推荐 锂电-电化学 电化学电源、电源管理
锂电材料、新能源与储能技术 科技 昊天子-锂电材料 新能源科学与技术
锂离子电池电解液 电池杂记 锂离子电池 好资源-- 电化学
锂电界的综述及牛人牛文 vasp 锂电池 俺的锂电
学习 锂电世界实用贴 电池综述 方法
金属锂负极电池 锂电 帖子分享 待下载
化学相关的哦! 工作 电池

» 猜你喜欢

» 本主题相关价值贴推荐,对您同样有帮助:

已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

LCW1221

铁杆木虫 (正式写手)


★★★★★ 五星级,优秀推荐

学习大牛的东西~
5楼2013-01-10 11:55:25
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
查看全部 395 个回答

liwei870215

禁虫 (正式写手)

本帖内容被屏蔽

7楼2013-01-10 12:45:30
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
简单回复
tfyihit2楼
2013-01-10 11:01   回复  
五星好评  顶一下,感谢分享!
cn_york3楼
2013-01-10 11:32   回复  
五星好评  顶一下,感谢分享!
gujl21114楼
2013-01-10 11:40   回复  
五星好评  顶一下,感谢分享!
2013-01-10 12:20   回复  
五星好评  顶一下,感谢分享!
2013-01-10 12:58   回复  
三星好评  顶一下,感谢分享!
2013-01-10 13:19   回复  
五星好评  顶一下,感谢分享!
mysky60811楼
2013-01-10 13:25   回复  
五星好评  顶一下,感谢分享!
jorjor0012楼
2013-01-10 13:30   回复  
五星好评  顶一下,感谢分享!
tangzh10613楼
2013-01-10 13:58   回复  
五星好评  顶一下,感谢分享!
2013-01-10 14:17   回复  
五星好评  顶一下,感谢分享!
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考研] 材料与化工调剂 10+11 下一站上岸@ 2026-04-10 33/1650 2026-04-11 00:27 by success5733
[考研] 还有化工二轮调剂的学校吗 5+13 化工人999 2026-04-09 47/2350 2026-04-11 00:20 by 骑牛渡寒江
[考研] 求调剂 +9 张番茄不炒蛋 2026-04-10 10/500 2026-04-10 22:07 by 小小虫瓜
[考研] 一志愿0703化学招61最终排名62化学求调剂 +24 招61排名62 2026-04-07 28/1400 2026-04-10 16:15 by yx54321
[考研] 293求调剂 +4 勇远库爱314 2026-04-06 4/200 2026-04-10 11:00 by 高维春
[考研] 一志愿中南大学物理学,英一66,求调剂 +4 长烟旖旎 2026-04-08 5/250 2026-04-10 10:31 by 颖果儿
[考研] 材料工程302分求调剂 +18 zyx上岸! 2026-04-04 18/900 2026-04-10 10:07 by 314126402
[考研] 生物学求调剂 一志愿沪9,326分 +7 刘墨墨 2026-04-06 7/350 2026-04-10 08:11 by kangsm
[考研] 085500求调剂材料 +8 易11122 2026-04-09 8/400 2026-04-09 23:15 by parmtree
[考研] 材料专硕(0856) 339分求调剂 +9 哈哈哈鹅哈哈哈 2026-04-09 10/500 2026-04-09 20:01 by Orcid
[考研] 299求调剂 +6 ZVVZ13 2026-04-08 6/300 2026-04-09 15:48 by wp06
[考研] 材料307分求大佬组收留 +17 Hll胡 2026-04-07 17/850 2026-04-09 10:53 by liuhuiying09
[考研] 一志愿985初试354分生物调剂 +3 031001 2026-04-06 3/150 2026-04-09 00:30 by Evan_Liu
[考研] 287求调剂 +6 Fnhc 2026-04-07 6/300 2026-04-08 10:05 by xingguangj
[考研] 288环境专硕,求调材料方向 +35 lllllos 2026-04-04 39/1950 2026-04-07 23:24 by 一只好果子?
[考研] 344求调剂 +11 魏子per 2026-04-07 11/550 2026-04-07 23:01 by JourneyLucky
[考研] 085404 293求调剂 +8 勇远库爱314 2026-04-06 9/450 2026-04-07 13:05 by flydream1314
[考研] 一志愿北交大材料工程总分358求调剂 +10 cs0106 2026-04-05 12/600 2026-04-06 19:41 by 无际的草原
[考研] 材料专硕322分 +10 哈哈哈吼吼吼哈 2026-04-04 10/500 2026-04-05 21:22 by 学员8dgXkO
[考研] 313求调剂 +5 海日海日 2026-04-04 7/350 2026-04-05 13:58 by imissbao
信息提示
请填处理意见