典型文献
Self-transforming stainless-steel into the next generation anode material for lithium ion batteries
文献摘要:
Here,an extremely cost-effective and simple method is proposed in order to morphologically self-transform stainless steel from a completely inactive material to a fully operational,nanowire-structured,3D anode material for lithium ion batteries.The reagentless process of a single heating step of the plain stainless steel in a partially reducing atmosphere,converts the stainless steel into an active anode via metal-selective oxidation,creating vast spinel-structured nanowires directly from the electro-chemically inactive surface.The simple process allows the complete utilization of the 3D mesh structure as the electrochemically-active spinel nanowires greatly enhance the active surface area.The novel mate-rial and architecture exhibits high capacities (~1000 mAh/g after ~400 cycles),long cycle life (>1100 cycles) and fast rate performance (>2C).Simple modulation of the substrate can result in very high areal and volumetric capacities.Thus,areal capacities greater than 10 rnAh/cm2 and volumetric capacities greater than 1400 mAh/cm3 can be achieved.Using the proposed method,the potential reduction in cost from the use of battery-grade graphite is at least an order of magnitude,with considerable better results achieved in terms of capacity and intrinsic structural benefits of the substrate,which include direct con-tact of the active material with the current collector,lack of delamination and binder-free performance.This work provides a new paradigm and a key step in the long route to replace the commercial graphite anode as the next-generation anode material.
文献关键词:
中图分类号:
作者姓名:
Nimrod Harpak;Guy Davidi;Fernando Patolsky
作者机构:
School of Chemistry,Faculty of Exact Sciences,Tel Aviv University,Tel Aviv 69978,Israel;Department of Materials Science and Engineering,the Iby and Aladar Fleischman Faculty of Engineering,Tel Aviv University,Tel Aviv 69978,Israel
文献出处:
引用格式:
[1]Nimrod Harpak;Guy Davidi;Fernando Patolsky-.Self-transforming stainless-steel into the next generation anode material for lithium ion batteries)[J].能源化学,2022(01):432-441
A类:
reagentless,rnAh
B类:
Self,transforming,stainless,steel,into,next,generation,anode,material,lithium,batteries,Here,extremely,cost,effective,simple,method,proposed,order,morphologically,self,from,completely,inactive,fully,operational,structured,process,single,heating,step,plain,partially,reducing,atmosphere,converts,via,metal,selective,oxidation,creating,vast,spinel,nanowires,directly,surface,allows,utilization,mesh,electrochemically,greatly,enhance,novel,architecture,exhibits,high,capacities,mAh,after,cycles,long,life,fast,performance,2C,Simple,modulation,substrate,can,very,areal,volumetric,Thus,greater,than,cm3,achieved,Using,potential,reduction,use,battery,grade,graphite,least,magnitude,considerable,better,results,terms,capacity,intrinsic,structural,benefits,which,include,tact,current,collector,lack,delamination,binder,free,This,work,provides,new,paradigm,key,route,replace,commercial
AB值:
0.516259
相似文献
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。