Influence of cation ordering and Li content on solid solution behavior in LiNi0.5Mn1.5O4
For energy storage applications, high energy density is an important material characteristic when searching for new types of suitable materials. LiNi0.5Mn1.5O4 (LNMO) is an interesting material with an energy density of around four times that of one of the most commercialized materials in Li-ion batteries, LiCoO2. This experiment aims to investigate any structure related limitations to delivering the full capacity of the material as these limitations are not fully understood yet. This is important for optimizing the electrochemical performance of LNMO as an energy storage material.
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- C Black Ulm
- Chemistry
- Materials
- d LNMO 01
- d LNMO 0_15 RT
- d LNMO 0_15 VT
- d LNMO 0_4 RT
- d LNMO 0_4 VT
- d LNMO 0_RT
- d LNMO 0_VT
- o LNMO 02
- o LNMO 0_15_VT
- o LNMO 0_21C
- o LNMO 0_4_RT
- o LNMO 0_4_VT
- o LNMO 0_6
- o LNMO 0_VT
Provenance | |
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Creator | Dr Ashok Sreekumar Menon; Dr William Brant; Dr Ron Smith; Mr Olof Gustafsson |
Publisher | ISIS Neutron and Muon Source |
Publication Year | 2022 |
Rights | CC-BY Attribution 4.0 International; https://creativecommons.org/licenses/by/4.0/ |
OpenAccess | true |
Contact | isisdata(at)stfc.ac.uk |
Representation | |
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Resource Type | Dataset |
Discipline | Chemistry; Natural Sciences |
Temporal Coverage Begin | 2019-07-01T07:00:00Z |
Temporal Coverage End | 2019-07-03T07:47:12Z |