Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent

Li1-xNi1+xO2 powder was prepared by using tartaric acid as a complexing agent. A 1 : 1: 2 mole ratio of Li : Ni : tartaric acid was used to form carboxylate precursors which were calcined at 650-800°C for 14-48 h. TGA of the precursors showed that formation of Li1-xNi1+xO2 initiates at 600°C and abo...

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Main Authors: Thongtem T., Thongtem S.
Format: Conference or Workshop Item
Language:English
Published: 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-35748951341&partnerID=40&md5=e49c495f91e7c52d712dfa0be971f6a5
http://cmuir.cmu.ac.th/handle/6653943832/5038
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Institution: Chiang Mai University
Language: English
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spelling th-cmuir.6653943832-50382014-08-30T02:56:05Z Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent Thongtem T. Thongtem S. Li1-xNi1+xO2 powder was prepared by using tartaric acid as a complexing agent. A 1 : 1: 2 mole ratio of Li : Ni : tartaric acid was used to form carboxylate precursors which were calcined at 650-800°C for 14-48 h. TGA of the precursors showed that formation of Li1-xNi1+xO2 initiates at 600°C and above. By using XRD, Li1-xNi1+xO2 with 650-800°C calcination was detected. Calculated intensity ratios of I(003)/ I(104) and I(006+102)/I(101) showed that the best condition is at 750°C for 34 h. The crystallite size was estimated using the Scherrer equation. AAS and titration techniques showed that Ni 3+/(Ni3+ + Ni2+) and mean oxidation state of nickel are 66.50 wt% and 2.67 respectively. EDX showed that the powder was comprised by Ni and O. The faceted particles are shown by SEM. TEM and electron diffraction showed the results that are in accordance with the above. 2014-08-30T02:56:05Z 2014-08-30T02:56:05Z 2006 Conference Paper 0878499954; 9780878499953 02555476 70461 MSFOE http://www.scopus.com/inward/record.url?eid=2-s2.0-35748951341&partnerID=40&md5=e49c495f91e7c52d712dfa0be971f6a5 http://cmuir.cmu.ac.th/handle/6653943832/5038 English
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
description Li1-xNi1+xO2 powder was prepared by using tartaric acid as a complexing agent. A 1 : 1: 2 mole ratio of Li : Ni : tartaric acid was used to form carboxylate precursors which were calcined at 650-800°C for 14-48 h. TGA of the precursors showed that formation of Li1-xNi1+xO2 initiates at 600°C and above. By using XRD, Li1-xNi1+xO2 with 650-800°C calcination was detected. Calculated intensity ratios of I(003)/ I(104) and I(006+102)/I(101) showed that the best condition is at 750°C for 34 h. The crystallite size was estimated using the Scherrer equation. AAS and titration techniques showed that Ni 3+/(Ni3+ + Ni2+) and mean oxidation state of nickel are 66.50 wt% and 2.67 respectively. EDX showed that the powder was comprised by Ni and O. The faceted particles are shown by SEM. TEM and electron diffraction showed the results that are in accordance with the above.
format Conference or Workshop Item
author Thongtem T.
Thongtem S.
spellingShingle Thongtem T.
Thongtem S.
Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent
author_facet Thongtem T.
Thongtem S.
author_sort Thongtem T.
title Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent
title_short Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent
title_full Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent
title_fullStr Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent
title_full_unstemmed Characterization of Li1-xNi1+xO2 prepared by using tartaric acid as a complexing agent
title_sort characterization of li1-xni1+xo2 prepared by using tartaric acid as a complexing agent
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-35748951341&partnerID=40&md5=e49c495f91e7c52d712dfa0be971f6a5
http://cmuir.cmu.ac.th/handle/6653943832/5038
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