Structural Engineering of Carbon Host Derived from Organic Pigment toward Physicochemically Confinement and Efficient Conversion of Polysulfide for Lithium-Sulfur Batteries

  • Heo, Woo Sub; 
  • Kwon, Woong; 
  • Lee, Taewoong; 
  • Chae, Seongwook; 
  • Park, Jae Bin; 
  • ... Jeong, Euigyung; 
  • 외 3명
Citations

WEB OF SCIENCE

10
Citations

SCOPUS

10

초록

Lithium-Sulfur Batteries (LSBs) have attracted significant attention as promising next-generation energy storage systems. However, the commercial viability of LSBs have been hindered due to lithium polysulfides (LiPSs) shuttle effect, resulting in poor cycling stability and low sulfur utilization. To address this issue, herein, the study prepares a sulfur host consisting of micro/mesopore-enriched activated carbonaceous materials with ultrahigh surface area using organic pigment via facile one-step activation. By varying the proportion of chemical agent, the pore size and volume of the activated carbonaceous materials are manipulated and their capabilities on the mitigation of LiPSs shuttle effect are investigated. Through the electrochemical measurements and spectroscopic analysis, it is verified that structural engineering of carbon hosts plays a pivotal role in effective physical confinement of LiPSs, leading to the mitigation of LiPSs shuttle effect and sulfur utilization. Additionally, nitrogen and oxygen-containing functional groups originated from PR show electrocatalytic activation sites, facilitating LiPSs conversion kinetics. The approach can reveal that rational design of carbon microstructures can improve trapping and suppression of LiPSs and shuttle effect, enhancing electrochemical performance of LSBs. The APR cathodes derived from PR physicochemically enhance the electrochemical performance and sulfur chemistry by incorporating N/O functional groups. Unique characteristics of PR enable the pore engineering and the enlargement of surface area via one step activation process, resulting in excellent carbon host for lithium-sulfur battery. image

키워드

electrocatalytic effect, lithium-sulfur batteries; lithium polysulfides shuttle effect; polycyclic precursor; ultrahigh surface area; REPORTING PHYSISORPTION DATA; GAS SOLID SYSTEMS; ACTIVATED CARBON; SURFACE-AREA; POROUS CARBON; DOPED CARBON; CATHODE; NITROGEN; INTERLAYER; DESIGN
제목
Structural Engineering of Carbon Host Derived from Organic Pigment toward Physicochemically Confinement and Efficient Conversion of Polysulfide for Lithium-Sulfur Batteries
저자
Heo, Woo Sub; Kwon, Woong; Lee, Taewoong; Chae, Seongwook; Park, Jae Bin; Park, Minjoon; Jeong, Euigyung; Lee, Jin Hong; Lee, Seung Geol
DOI
10.1002/smtd.202301401
발행일
2024-09
유형
Article
저널명
SMALL METHODS
권
8
호
9