In-situ TEM Characterization of Electrochemical Processess in Energy Storage Systems
Journal Article
·
· Microscopy and Microanalysis
- ORNL
- Hummingbird Scientific
The accelerated development of materials for utilization in electrical energy storage systems will hinge critically upon our understanding of how interfaces (particularly electrode-electrolyte solid liquid interfaces) control the physical and electrochemical energy conversion processes in energy storage systems. A prime example is found in Lt ion-based battery systems, where a passive multiphase layer grows at the electrode/electrolyte interface due to the decomposition of the liquid electrolyte [ l]. Once formed, this solid electrolyte interphase (SEI) protects the active electrode materials from degradation and also regulates the transport and intercalation of Lt ions during battery charge/discharge cycling [2]. Due to the dynamically evolving nature of this nm-scaled interface, it has proven difficult to design experiments that will not only elucidate the fundamental mechanisms controlling SEI nucleation and growth, but will enable the SEI microstructural and chemical evolution as a function of charge/discharge cycling to be monitored in real time.
- Research Organization:
- Oak Ridge National Laboratory (ORNL)
- Sponsoring Organization:
- USDOE
- DOE Contract Number:
- AC05-00OR22725
- OSTI ID:
- 1068752
- Journal Information:
- Microscopy and Microanalysis, Journal Name: Microscopy and Microanalysis Journal Issue: S2 Vol. 17; ISSN 1431-9276
- Country of Publication:
- United States
- Language:
- English
Similar Records
Direct Visualization of Solid Electrolyte Interphase Formation in Lithium-Ion Batteries with In Situ Electrochemical Transmission Electron Microscopy
Quantification of Electrochemical Nanoscale Processes in Lithium Batteries By OperandoEC-(S)TEM
Observation and Quantification of Nanoscale Processes in Lithium Batteries by Operando Electrochemical (S)TEM
Journal Article
·
Fri Aug 01 00:00:00 EDT 2014
· Microscopy and Microanalysis
·
OSTI ID:1148845
Quantification of Electrochemical Nanoscale Processes in Lithium Batteries By OperandoEC-(S)TEM
Conference
·
Mon Jul 27 00:00:00 EDT 2015
·
OSTI ID:1213013
Observation and Quantification of Nanoscale Processes in Lithium Batteries by Operando Electrochemical (S)TEM
Journal Article
·
Wed Mar 11 00:00:00 EDT 2015
· Nano Letters, 15(3):2168-2176
·
OSTI ID:1184939