Remarkable lowering in the synthesis temperature of LiMn2O4via citrate solution–gel synthesis facilitated by ethanol
Author:
Affiliation:
1. UHasselt – Hasselt University
2. Institute for Materials Research (IMO-IMOMEC)
3. Inorganic and Physical Chemistry
4. 3590 Diepenbeek
5. Belgium
6. Hasselt University
7. Institute for Materials Research
8. Applied and Analytical Chemistry
Abstract
Low temperature synthesis routes for cathode materials, such as LMO, are currently very important. Here, through an elaborate study on the chemistry behind the precursor and EtOH interaction, the thermal budget was drastically reduced at 250 °C.
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2017/DT/C7DT03100A
Reference95 articles.
1. A. J. Hoff , Advanced EPR: Application in Biology and Biochemistry, Elsevier Science, 1989
2. Recent developments in manganese speciation
3. G. A. Lawrance , Introduction to Coordination Chemistry, Wiley, 2010
4. Calcium manganese(iv) oxides: biomimetic and efficient catalysts for water oxidation
5. Mechanisms of Manganese-Induced Neurotoxicity in Primary Neuronal Cultures: The Role of Manganese Speciation and Cell Type
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