2012 ©
             Publication
Journal Publication
Research Title Effects of Conductive Agents on Electrochemical Performance of Water-Based LiNi0.6Mn0.2Co0.2O2 Cathodes for Cylindrical Cell Production of Lithium-Ion Batteries  
Date of Distribution 27 October 2021 
Conference
     Title of the Conference The international conference on energy storage technology and applications (ICESTA 2021) 
     Organiser Centre of Excellence for Electrical Energy Storage Technology, Universitas Sebelas Maret 
     Conference Place Centre of Excellence for Electrical Energy Storage Technology, Universitas Sebelas Maret 
     Province/State Surakarta, Indonesia 
     Conference Date 22 March 2023 
     To 22 March 2023 
Proceeding Paper
     Volume 2022 
     Issue 417 
     Page 169-176 
     Editors/edition/publisher Defect and Diffusion Forum 
     Abstract Lithium-ion batteries have received much attention for their potential use in electric vehicles (EV's) and portable electronic devices. Fabrication of lithium ion (Li-ion) batteries via ecologically sound (green) processes is also of great interest. Typically, in the production of cathode electrodes, organic solvents such as N-methyl-pyrrolidone (NMP) are used, but these chemicals are toxic. Water-based processing of LiNi0.6Mn0.2Co0.2O2 (NMC) for manufacturing cathode electrodes can provide a more environmental friendly option. In this work, water soluble styrene butadiene copolymer (SBR) and carboxymethyl cellulose (CMC) are used as binders. The active material ratio was set at 90%. The electrochemical performance of water-based NMC electrodes is examined. Additionally, various conductive agents were considered including acetylene black (A) and graphite (B). The particle sizes of conductive agent affect the electrochemical performance of the batteries. Our results show that replacing the conventional organic solvent-based manufacturing route for NMC cathodes with a water-based process is a promising way to fabricate Li-ion batteries with comparable electrochemical behavior, while avoiding toxic process materials and simultaneously reducing the overall manufacturing costs. 
Author
645020011-7 Mr. KOMSAK ARANMALA [Main Author]
Science Master's Degree

Peer Review Status มีผู้ประเมินอิสระ 
Level of Conference นานาชาติ 
Type of Proceeding Full paper 
Type of Presentation Oral 
Part of thesis true 
Presentation awarding true 
     Award Title Best presenter ICESTA 2021 
     Type of award รางวัลด้านวิชาการ วิชาชีพ 
     Organiser Centre of Excellence for Electrical Energy Storage Technology, Universitas Sebelas Maret 
     Date of awarding 27 ตุลาคม 2564 
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