首站-论文投稿智能助手
典型文献
Terminal sulfur atoms formation via defect engineering strategy to promote the conversion of lithium polysulfides
文献摘要:
The defect engineering shows great potential in boosting the conversion of lithium polysulfides interme-diates for high energy density lithium-sulfur batteries(LSBs),yet the catalytic mechanisms remain un-clear.Herein,the oxygen-defective Li4Ti5O12-x hollow microspheres uniformly encapsulated by N-doped carbon layer(OD-LTO@NC)is delicately designed as an intrinsically polar inorganic sulfur host for the research on the catalytic mechanism.Theoretical simulations have demonstrated that the existence of oxygen deficiencies enhances the adsorption capability of spinel Li4Ti5O12 towards soluble lithium poly-sulfides.Some-S-S-bonds of the Li2S6 on the defective Li4Ti5O12 surface are fractured by the strong adsorption force,which allows the inert bridging sulfur atoms to be converted into the susceptible ter-minal sulfur atoms,and reduces the activation energy of the polysulfide conversion in some degree.In addition,with the N-doped carbon layer,secondary hollow microspheres architecture built with primary ultrathin nanosheets provide a large amount of void space and active sites for sulfur storage,adsorption and conversion.The as-designed sulfur host exhibits a remarkable rate capability of 547 mAh g-1 at 4 C(1 C=1675 mA g-1)and an outstanding long-term cyclability(519 mAh g-1 after 1000 cycles at 3 C).Besides,a high specific capacity of 832 mAh g-1 is delivered even after 100 cycles under a high sulfur mass loading of 3.2 mg cm-2,indicating its superior electrochemical performances.This work not only provides a strong proof for the application of oxygen defect in the adsorption and catalytic conversion of lithium polysulfides,but offers a promising avenue to achieve high performance LSBs with the material design concept of incorporating oxygen-deficient spinel structure with hierarchical hollow frameworks.
文献关键词:
作者姓名:
Yuanchang Li;Wenda Li;Xiujuan Yan;Zhenfang Zhou;Xiaosong Guo;Jing Liu;Changming Mao;Zhonghua Zhang;Guicun Li
作者机构:
College of Materials Science and Engineering,Qingdao University of Science and Technology,Qingdao 266042,China
引用格式:
[1]Yuanchang Li;Wenda Li;Xiujuan Yan;Zhenfang Zhou;Xiaosong Guo;Jing Liu;Changming Mao;Zhonghua Zhang;Guicun Li-.Terminal sulfur atoms formation via defect engineering strategy to promote the conversion of lithium polysulfides)[J].材料科学技术(英文版),2022(08):221-231
A类:
Li2S6
B类:
Terminal,sulfur,atoms,formation,via,engineering,strategy,promote,conversion,lithium,polysulfides,shows,great,potential,boosting,interme,diates,high,energy,density,batteries,LSBs,yet,catalytic,mechanisms,remain,clear,Herein,oxygen,defective,Li4Ti5O12,hollow,microspheres,uniformly,encapsulated,by,doped,carbon,layer,OD,LTO,NC,delicately,designed,intrinsically,polar,inorganic,host,research,Theoretical,simulations,have,demonstrated,that,existence,deficiencies,enhances,adsorption,capability,spinel,towards,soluble,Some,bonds,surface,are,fractured,strong,force,which,allows,inert,bridging,be,converted,into,susceptible,reduces,activation,some,degree,In,addition,secondary,architecture,built,primary,ultrathin,nanosheets,large,amount,void,space,active,sites,storage,exhibits,remarkable,mAh,outstanding,long,cyclability,after,cycles,Besides,specific,capacity,delivered,even,under,mass,loading,indicating,superior,electrochemical,performances,This,not,only,provides,proof,application,but,offers,promising,avenue,achieve,material,concept,incorporating,deficient,structure,hierarchical,frameworks
AB值:
0.560463
相似文献
Poly(thiourea triethylene glycol)as a multifunctional binder for enhanced performance in lithium-sulfur batteries
Luke Hencz;Hao Chen;Zhenzhen Wu;Xingxing Gu;Meng Li;Yuhui Tian;Su Chen;Cheng Yan;Abdulaziz S.R.Bati;Joseph G.Shapter;Milton Kiefel;Dong-Sheng Li;Shanqing Zhang-Centre for Clean Environment and Energy,Griffith University Gold Coast Campus,Southport,QLD,4222,Australia;Chongqing Key Laboratory of Catalysis and New Environmental Materials,College of Environment and Resources,Chongqing Technology and Business University,Chongqing,400067,China;School of Mechanical,Medical and Process Engineering,Queensland University of Technology(QUT),Brisbane,QLD,4000,Australia;Australian Institute for Bioengineering and Nanotechnology(AIBN),The University of Queensland,St.Lucia,Brisbane,QLD,4072,Australia;Institute for Glycomics,Gold Coast Campus,Griffith University,Southport,QLD,4222,Australia;College of Materials and Chemical Engineering,China Three Gorges University,No.8,Daxue Road,Yichang,443002,China
In situ induced cation-vacancies in metal sulfides as dynamic electrocatalyst accelerating polysulfides conversion for Li-S battery
Rongrong Li;Hao Sun;Caiyun Chang;Yuan Yao;Xiong Pu;Wenjie Mai-Siyuan Laboratory,Guangdong Provincial Engineering Technology Research Center of Vacuum Coating Technologies and New Energy Materials,Department of Physics,Jinan University,Guangzhou 510632,Guangdong,China;CAS Center for Excellence in Nanoscience,Beijing Key Laboratory of Micro-Nano Energy and Sensor,Beijing Institute of Nanoenergy and Nanosystems,Chinese Academy of Sciences,Beijing 101400,China;State Key Laboratory of Power Transmission Equipment and System Security and New Technology,School of Electrical Engineering,Chongqing University,Chongqing 400044,China;Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences,Beijing 100049,China
Tandem Co-O dual sites on halloysite with promoted reaction kinetics for sulfur reduction
Qiang Zhang;Yinyin Qian;Ji-Jun Zou;Ruijie Gao;Huaming Yang-Hunan Key Laboratory of Mineral Materials and Application,School of Minerals Processing and Bioengineering,Central South University,Changsha 410083,Hunan,China;Engineering Research Center of Nano-Geomaterials of Ministry of Education,China University of Geosciences,Wuhan 430074,Hubei,China;Faculty of Materials Science and Chemistry,China University of Geosciences,Wuhan 430074,Hubei,China;Key Laboratory for Green Chemical Technology of the Ministry of Education,School of Chemical Engineering and Technology,Tianjin University,Tianjin 300072,China;Key Laboratory of Functional Geomaterials in China Nonmetallic Minerals Industry,China University of Geosciences,Wuhan 430074,Hubei,China
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。