Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12
Li7La3Zr2O12 (LLZO) is a garnet-type electrolyte for all-solid-state lithium-ion batteries (ASSB). It has good chemical and electrochemical stability against lithium and a relatively high ionic conductivity. However, the ionic conductivity needs to be further increased to provide a high specific cap...
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Chemistry Department, Faculty of Sciences and Mathematics, Diponegoro University
2021-03-01
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doaj-8c1daf6dd4d44855818c082712074a342021-04-09T07:46:02ZengChemistry Department, Faculty of Sciences and Mathematics, Diponegoro UniversityJurnal Kimia Sains dan Aplikasi1410-89172597-99142021-03-01243778410.14710/jksa.24.3.77-8418325Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12Imam Shofid Alaih0Sidiq Fathonah1Khoirina Dwi Nugrahaningtyas2Fitria Rahmawati3Department of Chemistry, Faculty of Mathematics and Natural Sciences, Sebelas Maret University SurakartaDepartment of Chemistry, Faculty of Mathematics and Natural Sciences, Sebelas Maret University SurakartaDepartment of Chemistry, Faculty of Mathematics and Natural Sciences, Sebelas Maret University SurakartaDepartment of Chemistry, Faculty of Mathematics and Natural Sciences, Sebelas Maret University SurakartaLi7La3Zr2O12 (LLZO) is a garnet-type electrolyte for all-solid-state lithium-ion batteries (ASSB). It has good chemical and electrochemical stability against lithium and a relatively high ionic conductivity. However, the ionic conductivity needs to be further increased to provide a high specific capacity of the ASSB. Element doping into LLZO is an effort to increase molecular defect, known to enhance the conductivity. This research studied the effect of the Na2B4O7 addition on the LLZO synthesis, producing LLZBO(A). The investigation aims to understand whether the sodium ions dope into the LLZO structure during synthesis, or it is only B ions to enter into the structure. Therefore, another synthesis with B2O3 of B precursor was conducted for comparison (LLZBO(B)). The precursors were mixed stoichiometrically by following the formula of Li7-xLa3-xZr2-xBxNaxO12 (LLZBO, x= 0.15; 0.20; 0.30). XRD analysis equipped with Le Bail refinement found that LLZBO(A) and LLZBO(B) mainly consist of cubic and tetragonal LLZO with a %mol of 69.06 – 69.84 %, and the main secondary phase is La2Zr2O7. The surface morphology of LLZBO(A) and LLZBO(B) is almost similar to the irregular form of large aggregates. The particles become more dispersed when 0.3 %mol dopant was submitted. Impedance analysis found a high ionic conductivity of LLZBAO(A)0.3 1.042x10-3 Scm-1.https://ejournal.undip.ac.id/index.php/ksa/article/view/34792llzo garnetb-al dopingzirconiaall-solid-state lithium battery |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Imam Shofid Alaih Sidiq Fathonah Khoirina Dwi Nugrahaningtyas Fitria Rahmawati |
spellingShingle |
Imam Shofid Alaih Sidiq Fathonah Khoirina Dwi Nugrahaningtyas Fitria Rahmawati Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12 Jurnal Kimia Sains dan Aplikasi llzo garnet b-al doping zirconia all-solid-state lithium battery |
author_facet |
Imam Shofid Alaih Sidiq Fathonah Khoirina Dwi Nugrahaningtyas Fitria Rahmawati |
author_sort |
Imam Shofid Alaih |
title |
Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12 |
title_short |
Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12 |
title_full |
Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12 |
title_fullStr |
Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12 |
title_full_unstemmed |
Addition of Calcined Na2B4O7 on the Synthesis of Li7La3Zr2O12 |
title_sort |
addition of calcined na2b4o7 on the synthesis of li7la3zr2o12 |
publisher |
Chemistry Department, Faculty of Sciences and Mathematics, Diponegoro University |
series |
Jurnal Kimia Sains dan Aplikasi |
issn |
1410-8917 2597-9914 |
publishDate |
2021-03-01 |
description |
Li7La3Zr2O12 (LLZO) is a garnet-type electrolyte for all-solid-state lithium-ion batteries (ASSB). It has good chemical and electrochemical stability against lithium and a relatively high ionic conductivity. However, the ionic conductivity needs to be further increased to provide a high specific capacity of the ASSB. Element doping into LLZO is an effort to increase molecular defect, known to enhance the conductivity. This research studied the effect of the Na2B4O7 addition on the LLZO synthesis, producing LLZBO(A). The investigation aims to understand whether the sodium ions dope into the LLZO structure during synthesis, or it is only B ions to enter into the structure. Therefore, another synthesis with B2O3 of B precursor was conducted for comparison (LLZBO(B)). The precursors were mixed stoichiometrically by following the formula of Li7-xLa3-xZr2-xBxNaxO12 (LLZBO, x= 0.15; 0.20; 0.30). XRD analysis equipped with Le Bail refinement found that LLZBO(A) and LLZBO(B) mainly consist of cubic and tetragonal LLZO with a %mol of 69.06 – 69.84 %, and the main secondary phase is La2Zr2O7. The surface morphology of LLZBO(A) and LLZBO(B) is almost similar to the irregular form of large aggregates. The particles become more dispersed when 0.3 %mol dopant was submitted. Impedance analysis found a high ionic conductivity of LLZBAO(A)0.3 1.042x10-3 Scm-1. |
topic |
llzo garnet b-al doping zirconia all-solid-state lithium battery |
url |
https://ejournal.undip.ac.id/index.php/ksa/article/view/34792 |
work_keys_str_mv |
AT imamshofidalaih additionofcalcinedna2b4o7onthesynthesisofli7la3zr2o12 AT sidiqfathonah additionofcalcinedna2b4o7onthesynthesisofli7la3zr2o12 AT khoirinadwinugrahaningtyas additionofcalcinedna2b4o7onthesynthesisofli7la3zr2o12 AT fitriarahmawati additionofcalcinedna2b4o7onthesynthesisofli7la3zr2o12 |
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