POS6-1227
Impact of Nanostructuring on BBL Organic Anodes for Lithium-Ion Batteries
When and Where
Nov 30, -0001
00:00 - 00:00
Room 301 (Grand Ballroom)
Presenter(s)
Seohee Ye (Hongik University)
Co-Author(s)
Abstract
Conjugated organic materials have attracted considerable attention as electrode candidates due to their π-conjugated structures and reversible electrochemical redox activity. Among these, poly(benzobisimidazobenzophenanthroline) (BBL), a conjugated ladder polymer, has emerged as a promising organic anode owing to its excellent structural stability and charge storage capability.
In this study, pristine and nanostructured BBL electrodes are systematically compared to investigate the influence of nanostructuring on lithium storage behavior. Furthermore, their electrochemical performance is evaluated across different electrolyte systems at both room (25 °C) and elevated (50 °C) temperatures to examine how these parameters affect capacity, cycling stability, and reaction kinetics.
This comparative study provides valuable insights into the interplay between electrode morphology and operating conditions, offering guidance for optimizing BBL-based organic anodes for high-performance lithium-ion batteries.
Keywords: Conjugated polymers, BBL, Nanostructured organic electrodes, Lithium-ion batteries
In this study, pristine and nanostructured BBL electrodes are systematically compared to investigate the influence of nanostructuring on lithium storage behavior. Furthermore, their electrochemical performance is evaluated across different electrolyte systems at both room (25 °C) and elevated (50 °C) temperatures to examine how these parameters affect capacity, cycling stability, and reaction kinetics.
This comparative study provides valuable insights into the interplay between electrode morphology and operating conditions, offering guidance for optimizing BBL-based organic anodes for high-performance lithium-ion batteries.
Keywords: Conjugated polymers, BBL, Nanostructured organic electrodes, Lithium-ion batteries













