P2-NaxCoyMn1-yO2 (y=0, 0.1) as Cathode Materials in Sodium-Ion Batteries-Effects of Doping and Morphology To Enhance Cycling Stability

被引:163
作者
Bucher, Nicolas [1 ,2 ,3 ]
Hartung, Steffen [1 ,2 ,3 ]
Franklin, Joseph B. [4 ]
Wise, Anna M. [5 ]
Lim, Linda Y. [6 ]
Chen, Han-Yi [1 ,2 ,3 ]
Weker, Johanna Nelson [5 ]
Toney, Michael F. [5 ]
Srinivasan, Madhavi [1 ,3 ,4 ]
机构
[1] TUM CREATE, Singapore 138602, Singapore
[2] Tech Univ Munich, D-85748 Garching, Germany
[3] Nanyang Technol Univ, Sch Mat Sci & Engn, Singapore 639798, Singapore
[4] Nanyang Technol Univ, Energy Res Inst NTU ERI N, Res Techno Plaza,50 Nanyang Dr, Singapore 637553, Singapore
[5] SLAC Natl Accelerator Lab, Stanford Synchrotron Radiat Lightsource, 2575 Sand Hill Rd, Menlo Pk, CA 94025 USA
[6] Stanford Univ, Dept Mat Sci & Engn, 496 Lomita Mall, Stanford, CA 94305 USA
基金
新加坡国家研究基金会;
关键词
ELECTROCHEMICAL INTERCALATION; ELECTRODE MATERIALS; HIGH-CAPACITY; NA; P2-TYPE; LI; SUBSTITUTION; PERFORMANCE; OXIDES; PHASE;
D O I
10.1021/acs.chemmater.5b04557
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Sodium-ion batteries have become a subject of increasing interest and are considered as an alternative to the ubiquitous lithium-ion battery. To compare the effect of two improvement strategies for metal oxide cathodes, specifically Co-doping and morphology optimization, four representatives of the prominent material class of layered NaxMO2 (M = transition metal) have been studied: hexagonal flakes and hollow spheres of P2-NaxMnO2 and P2-NaxCo0.1Mn0.9O2. The better electrochemical performance of the spheres over the flakes and of the Co-doped over the undoped materials are explained on the basis of structural features revealed by operando synchrotron X-ray diffraction. The higher cycling stability of the material doped with similar to 10% Co is attributed to three effects: (i) the suppression of a Jahn-Teller-induced structural transition from the initial hexagonal to an orthorhombic phase that is observed in NaxMnO2; (ii) suppression of ordering processes of Na+; and (iii) enhanced Na+ kinetics as revealed by galvanostatic intermittent titration technique measurements and in situ electrochemical impedance measurements. Increased capacity and cycling stability of spheres over flakes may be related to smaller changes of the unit cell volume of spheres and thus to reduced structural stress. Co-doped spheres combine the advantages of both strategies and exhibit the best cycling stability.
引用
收藏
页码:2041 / 2051
页数:11
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