Raman Diagnostics of Cathode Materials for Li-Ion Batteries Using Multi-Wavelength Excitation

被引:7
作者
Heber, Marcel [1 ]
Hofmann, Kathrin [1 ]
Hess, Christian [1 ]
机构
[1] Tech Univ Darmstadt, Eduard Zintl Inst Inorgan & Phys Chem, Alarich Weiss Str 8, D-64287 Darmstadt, Germany
来源
BATTERIES-BASEL | 2022年 / 8卷 / 02期
关键词
lithium-ion batteries; cathode; LiCoO2; NMC; resonance Raman spectroscopy; multi-wavelength excitation; UV Raman spectroscopy; VIBRATIONAL-SPECTRA; ELECTRODE MATERIALS; LITHIUM; LICOO2; SPECTROSCOPY; TRANSITION; CHEMISTRY; OXIDES;
D O I
10.3390/batteries8020010
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Lithium-ion batteries have been commonly employed as power sources in portable devices and are of great interest for large-scale energy storage. To further enhance the fundamental understanding of the electrode structure, we report on the use of multi-wavelength Raman spectroscopy for the detailed characterization of layered cathode materials for Li-ion batteries (LiCoO2, LiNixCo1-xO2, LiNi1/3Mn1/3Co1/3O2). Varying the laser excitation from the UV to the visible (257, 385, 515, 633 nm) reveals wavelength-dependent changes in the vibrational profile and overtone/combination bands, originating from resonance effects in LiCoO2. In mixed oxides, the influence of resonance effects on the vibrational profile is preserved but mitigated by the presence of Ni and/or Mn, highlighting the influence of resonance Raman spectroscopy on electronic structure changes. The use of UV laser excitation (257, 385 nm) is shown to lead to a higher scattering efficiency towards Ni in LiNi1/3Mn1/3Co1/3O2 compared to visible wavelengths, while deep UV excitation at 257 nm allows for the sensitive detection of surface species and/or precursor species reminiscent of the synthesis. Our results demonstrate the potential of multi-wavelength Raman spectroscopy for the detailed characterization of cathode materials for lithium-ion batteries, including phase/impurity identification and quantification, as well as electronic structure analysis.
引用
收藏
页数:12
相关论文
共 46 条
[1]  
Ammundsen B, 1999, J PHYS CHEM B, V103, P5175, DOI 10.1021/jp9843981
[2]   Raman Microspectrometry Applied to the Study of Electrode Materials for Lithium Batteries [J].
Baddour-Hadjean, Rita ;
Pereira-Ramos, Jean-Pierre .
CHEMICAL REVIEWS, 2010, 110 (03) :1278-1319
[3]   RAMAN AND INFRARED SPECTRAL STUDIES OF ANHYDROUS LI2CO3 AND NA2CO3 [J].
BROOKER, MH ;
BATES, JB .
JOURNAL OF CHEMICAL PHYSICS, 1971, 54 (11) :4788-+
[4]   RAMAN AND INFRARED STUDIES OF LITHIUM AND CESIUM CARBONATES [J].
BROOKER, MH ;
WANG, JF .
SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 1992, 48 (07) :999-1008
[5]   Predicting accurate cathode properties of layered oxide materials using the SCAN meta-GGA density functional [J].
Chakraborty, Arup ;
Dixit, Mudit ;
Aurbach, Doron ;
Major, Dan T. .
NPJ COMPUTATIONAL MATERIALS, 2018, 4
[6]   STRUCTURE AND ELECTROCHEMISTRY OF LI1+/-YNIO2 AND A NEW LI2NIO2 PHASE WITH THE NI(OH)2 STRUCTURE [J].
DAHN, JR ;
VONSACKEN, U ;
MICHAL, CA .
SOLID STATE IONICS, 1990, 44 (1-2) :87-97
[7]   In situ Raman spectroscopic studies of LiNixMn2-xO4 thin film cathode materials for lithium ion secondary batteries [J].
Dokko, K ;
Mohamedi, M ;
Anzue, N ;
Itoh, T ;
Uchida, I .
JOURNAL OF MATERIALS CHEMISTRY, 2002, 12 (12) :3688-3693
[8]   Challenges in the development of advanced Li-ion batteries: a review [J].
Etacheri, Vinodkumar ;
Marom, Rotem ;
Elazari, Ran ;
Salitra, Gregory ;
Aurbach, Doron .
ENERGY & ENVIRONMENTAL SCIENCE, 2011, 4 (09) :3243-3262
[9]   Operando Monitoring the Insulator-Metal Transition of LiCoO2 [J].
Flores, Eibar ;
Mozhzhukhina, Nataliia ;
Aschauer, Ulrich ;
Berg, Erik J. .
ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (19) :22540-22548
[10]   Cation Ordering and Redox Chemistry of Layered Ni-Rich LixNi1-2yCoyMnyO2: An Operando Raman Spectroscopy Study [J].
Flores, Eibar ;
Novak, Petr ;
Aschauer, Ulrich ;
Berg, Erik J. .
CHEMISTRY OF MATERIALS, 2020, 32 (01) :186-194