Structural Evolution of Air-Exposed Layered Oxide Cathodes for Sodium-Ion Batteries: An Example of Ni-doped Na x MnO2

被引:15
作者
Brugnetti, Gabriele [1 ]
Triolo, Claudia [2 ,3 ,4 ]
Massaro, Arianna [3 ,5 ]
Ostroman, Irene [1 ]
Pianta, Nicolo [1 ]
Ferrara, Chiara [1 ,3 ,4 ]
Sheptyakov, Denis [6 ]
Munoz-Garcia, Ana Belen [3 ,7 ]
Pavone, Michele [3 ,5 ]
Santangelo, Saveria [2 ,3 ,4 ]
Ruffo, Riccardo [1 ,3 ,4 ]
机构
[1] Univ Milano Bicocca, Dipartimento Sci Mat, I-20125 Milan, Italy
[2] Univ Mediterranea, Dipartimento Ingn Civile Energia Ambiente & Mat D, I-89122 Reggio Di Calabria, Italy
[3] Natl Reference Ctr Electrochem Energy Storage GIS, I-50121 Florence, Italy
[4] Consorzio Interuniv Sci & Tecnol Mat INSTM, I-50121 Florence, Italy
[5] Univ Naples Federico II, Dipartimento Sci Chim, I-80126 Naples, Italy
[6] Paul Scherrer Inst, Lab Neutron Scattering & Imaging, CH-5232 Villigen, Switzerland
[7] Univ Naples Federico II, Dipartimento Fis E Pancini, I-80126 Naples, Italy
关键词
HIGH TAP-DENSITY; COBALT OXIDE; MICROSTRUCTURAL CHARACTERIZATION; PHASE-TRANSITION; MANGANESE; FAULTS; ENERGY; INTERCALATION; DIFFRACTION; BIRNESSITE;
D O I
10.1021/acs.chemmater.3c01196
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 recently aroused the interest of industries as possible replacements for lithium-ion batteries in some areas. With their high theoretical capacities and competitive prices, P2-type layered oxides (Na-x TMO2) are among the obvious choices in terms of cathode materials. On the other hand, many of these materials are unstable in air due to their reactivity toward water and carbon dioxide. Here, Na0.67Mn0.9Ni0.1O2 (NMNO), one of such materials, has been synthesized by a classic sol-gel method and then exposed to air for several weeks as a way to allow a simple and reproducible transition toward a Na-rich birnessite phase. The transition between the anhydrous P2 to the hydrated birnessite structure has been followed via periodic XRD analyses, as well as neutron diffraction ones. Extensive electrochemical characterizations of both pristine NMNO and the air-exposed one vs sodium in organic medium showed comparable performances, with capacities fading from 140 to 60 mAh g(-1) in around 100 cycles. Structural evolution of the air-exposed NMNO has been investigated both with ex situ synchrotron XRD and Raman. Finally, DFT analyses showed similar charge compensation mechanisms between P2 and birnessite phases, providing a reason for the similarities between the electrochemical properties of both materials.
引用
收藏
页码:8440 / 8454
页数:15
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