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Li metal deposition and stripping in a solid-state battery via Coble creep 期刊论文
NATURE, 2020, 578 (7794) : 251-+
作者:  Helmrich, S.;  Arias, A.;  Lochead, G.;  Wintermantel, T. M.;  Buchhold, M.;  Diehl, S.;  Whitlock, S.
收藏  |  浏览/下载:69/0  |  提交时间:2020/07/03

Solid-state lithium metal batteries require accommodation of electrochemically generated mechanical stress inside the lithium: this stress can be(1,2) up to 1 gigapascal for an overpotential of 135 millivolts. Maintaining the mechanical and electrochemical stability of the solid structure despite physical contact with moving corrosive lithium metal is a demanding requirement. Using in situ transmission electron microscopy, we investigated the deposition and stripping of metallic lithium or sodium held within a large number of parallel hollow tubules made of a mixed ionic-electronic conductor (MIEC). Here we show that these alkali metals-as single crystals-can grow out of and retract inside the tubules via mainly diffusional Coble creep along the MIEC/metal phase boundary. Unlike solid electrolytes, many MIECs are electrochemically stable in contact with lithium (that is, there is a direct tie-line to metallic lithium on the equilibrium phase diagram), so this Coble creep mechanism can effectively relieve stress, maintain electronic and ionic contacts, eliminate solid-electrolyte interphase debris, and allow the reversible deposition/stripping of lithium across a distance of 10 micrometres for 100 cycles. A centimetre-wide full cell-consisting of approximately 10(10) MIEC cylinders/solid electrolyte/LiFePO4-shows a high capacity of about 164 milliampere hours per gram of LiFePO4, and almost no degradation for over 50 cycles, starting with a 1x excess of Li. Modelling shows that the design is insensitive to MIEC material choice with channels about 100 nanometres wide and 10-100 micrometres deep. The behaviour of lithium metal within the MIEC channels suggests that the chemical and mechanical stability issues with the metal-electrolyte interface in solid-state lithium metal batteries can be overcome using this architecture.


By containing lithium metal within oriented tubes of a mixed ionic-electronic conductor, a 3D anode for lithium metal batteries is produced that overcomes chemomechanical stability issues at the electrolyte interface.


  
Capacity constraints, transmission investments, and incentive schemes 期刊论文
ENERGY POLICY, 2018, 119: 8-27
作者:  Sereno, Luigi;  Efthimiadis, Tilemahos
收藏  |  浏览/下载:8/0  |  提交时间:2019/04/09
Capacity constraints  Transmission investments  Incentive schemes  Real options  
Cross-border reserve markets: network constraints in cross-border reserve procurement 期刊论文
ENERGY POLICY, 2018, 113: 193-205
作者:  Van den Bergh, Kenneth;  Bruninx, Kenneth;  Delarue, Erik
收藏  |  浏览/下载:15/0  |  提交时间:2019/04/09
Reserves markets  Cross-border balancing  Transmission capacity allocation  
Optimal design and routing of power lines; ecological technical and economic perspectives (OPTIPOL). Final Report, findings 2009 - 2014. 科技报告
来源:Center for International Climate and Environmental Research-Oslo (CICERO). 出版年: 2014
作者:  Bevanger, Kjetil Modolv;  Bartzke, Gundula;  Brøseth, Henrik;  Dahl, Espen Lie;  Gjershaug, Jan Ove;  Hanssen, Frank Ole;  Jacobsen, Karl Otto;  Kleven, Oddmund;  Kvaløy, Pål;  May, Roelof Frans;  Nygård, Torgeir;  Refsnæs, Steinar;  Stokke, Sigbjørn;  Thomassen, Jørn;  Meås, Roger
收藏  |  浏览/下载:29/0  |  提交时间:2019/04/05
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