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Pengaruh Rasio LiBOB:TiO2 dari Lembaran Polimer Elektrolit sebagai Pemisah terhadap Kinerja Elektrokimia Baterai Lithium-Ion Berbasis LTO

The Effect of Ratio LiBOB:TiO2 of Electrolyte Polymer Sheets as separators on the Electrochemical Performance of LTO-Based Lithium-Ion Batteries

1Chemistry Department, Faculty of Sciences and Mathematics, Diponegoro University, Indonesia

2Pusat Riset Fisika, BRIN, Ged. 440-442 Kawasan Puspiptek, Serpong, Tangerang Selatan, Banten, Indonesia

Received: 2 May 2019; Revised: 27 Jun 2019; Accepted: 12 Jul 2019; Published: 31 Jul 2019.
Open Access Copyright 2019 Jurnal Kimia Sains dan Aplikasi under http://creativecommons.org/licenses/by-sa/4.0.

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Abstract

LTO anode-based Ion-Lithium batteries with artificial polymer electrolyte sheets consisting of PVdF-HFP, TiO2, and LiBOB as well as commercial sheets and with electrolyte solutions LiTFSI and LiPF6 have been made by assembling method. The changing variables in this study were the ratio between TiO2 and LiBOB for separator sheets and types of electrolytes used, namely, LiTFSI and LiPF6. Some characterizations were undertaken to determine battery performance including battery voltage determination, Cyclic Voltammetry (CV) testing to measure battery cell performance, and Electrochemical Impedance Spectrometry (EIS) analysis to measure battery conductivity values. The results showed that the presence of LiBOB and TiO2 at the separator in the battery can improve the performance of LTO-based lithium batteries. Artificial separator sheets with a composition ratio of TiO2: LiBOB of 5:25 with electrolyte solution LiPF6 which produces work stress, potential difference, and ionic conductivity of 3.06 V; 0.3 V; and 1.486x10-6 Scm-1 is the best possible to be applied to lithium-ion batteries.

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Keywords: LiBOB; LTO anode; conductivity; reversibility; charge; discharge; ion lithium battery

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  1. Nadia Alifia Hadiyati, Eka Maulana, Onny Setyawati, Pemodelan dan Analisis Baterai Lithium Ion 3, 2V LiFePO4 Single Cells, Jurnal Mahasiswa TEUB, 5, 6, (2018)
  2. Oetomo, Levin Halim, Perancangan dan implementasi sistem charging & monitoring baterai lithium, in, Universitas Katolik Parahyangan, Bandung, 2017
  3. Indra Gunawan, Wahyudianingsih, Sudaryanto, Studi Electrochemical Impedance Spectroscopy dari Lembaran Polyvinyl Alcohol dengan Penambahan LiClO4 sebagai Bahan Elektolit Baterai Li-ion, Jusami| Indonesian Journal of Materials Science, 18, 1, (2018) 9-14 http://dx.doi.org/10.17146/jsmi.2016.18.1.4173
  4. Varvara Sharova, Arianna Moretti, Thomas Diemant, Alberto Varzi, R. Jürgen Behm, Stefano Passerini, Comparative study of imide-based Li salts as electrolyte additives for Li-ion batteries, Journal of Power Sources, 375, (2018) 43-52 https://doi.org/10.1016/j.jpowsour.2017.11.045
  5. Yuniar Isna Susanto, Zainul Arifin Imam Supardi, Pengaruh Penambahan Cellulosa Acetat pada Komposit Polyvinilidene Fluoride-Selulosa Asetat Doping Al(OH)3 sebagai separator Baterai Lithium-Ion, Inovasi Fisika Indonesia, 8, 1, (2019)
  6. Jinqiang Cui, Jiuqing Liu, Chunfeng He, Jie Li, Xiufeng Wu, Composite of polyvinylidene fluoride–cellulose acetate with Al(OH)3 as a separator for high-performance lithium ion battery, Journal of Membrane Science, 541, (2017) 661-667 https://doi.org/10.1016/j.memsci.2017.07.048
  7. Titik Lestariningsih, Qolby Sabrina, Nurhalis Majid, Penambahan TiO2 dalam Pembuatan Lembaran Polimer Elektrolit Berpengaruh terhadap Konduktivitas dan Kinerja Baterai Lithium, Jurnal Material dan Energi Indonesia, 1, 1, (2017) 31-37
  8. Etty Marti Wigayati, Titik Lestariningsih, Achmad Subhan, Christin Rina Ratri, Ibrahim Purawiardi, Synthesis and characterization of LiBOB as electrolyte for lithium-ion battery, Ionics, 22, 1, (2016) 43-50
  9. https://doi.org/10.1007/s11581-015-1531-y
  10. Nur Shofiana Khoironi, Optimasi Nilai Konduktivitas Ionik Elektrolit Polimer Padat Kitosan-ZrO2 dengan Penambahan LiClO4, Program Studi Fisika, Universitas Mataram, Mataram
  11. Slamet Priyono, Mia Aulia Dhika, Kerista Sebayang, Achmad Subhan, Bambang Prihandoko, Pembuatan Anoda Li4Ti5O12 dan Studi Pengaruh Ketebalan Elektroda Terhadap Performa Elektrokimia Baterai Ion Lithium, Jusami | Indonesian Journal of Materials Science, 17, 4, (2018) 146-152 http://dx.doi.org/10.17146/jsmi.2016.17.4.4175
  12. Joko Triwibowo, Titik Lestariningsih Slamet Priyono, R Ibrohim Purawiardi, Leni Daulay, Studi Pengaruh Ketebalan Lembar Kathoda LiFePO4 Pada Performa Baterai Sekunder Ion Lithium, Jurnal Material dan Energi Indonesia, 5, 02, (2015) 1-7 https://doi.org/10.24198/jmei.v5i02.11158
  13. Rizka Rahmatie Agusta Putri, Chomsin Sulistya, Didik R Santoso, Analisis Nilai Impedansi Listrik pada Daging Ikan Nila yang Disimpan dalam Lemari Es, Indonesian Journal of Applied Physics, 6, 02, (2017) 117-124 https://doi.org/10.13057/ijap.v6i02.1780
  14. Bowo Eko Cahyono, Misto Misto, Holili Nur Arivah, Analisa Kualitas Semen Melalui Pengukuran Konstanta Dielektrik dan Resistivitas, REM (Rekayasa Energi Manufaktur) Jurnal, 2, 2, (2018) 57-61 https://doi.org/10.21070/r.e.m.v2i2.1199
  15. Era Sukma Jelita Sari, Rahadian Zainul, Nitrogen Triflorida (NF3): Termodinamika dan Transpor Elektron NF3, INA-Rxiv, (2019) https://doi.org/10.31227/osf.io/3nzrh

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