Accelerating Sulfur Redox Kinetics via 3D-Printed Multifunctional Cathodes for High-Energy-Density Lithium-Sulfur Batteries.

 0 Người đánh giá. Xếp hạng trung bình 0

Tác giả: Haiyan Chen, Dayue Du, Hanna He, Xiaolong Li, Shuxian Sun, Ziqin Wu, Li Zeng, Chuhong Zhang

Ngôn ngữ: eng

Ký hiệu phân loại: 583.67 *Ebenales, Primulales, Diapensiales, Thymelaeales (mezereum order)

Thông tin xuất bản: United States : ACS applied materials & interfaces , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 747628

 Lithium-sulfur (Li-S) batteries are viewed as leading contenders for next-generation energy storage, offering high theoretical specific energy and cost-efficient materials
  yet, their practical application is profoundly challenged by sluggish sulfur redox kinetics, polysulfide shuttling, and constrained sulfur loading. Herein, we unveil a versatile 3D-printed matrix, integrating in situ nitrogen (N)-doped carbon nanotubes (3DP NCNTs), designed to function as an efficient sulfur host (3DP S@NCNTs) for achieving high energy density in Li-S batteries. The meticulously engineered 3D hierarchical porous architecture, constructed from interwoven CNTs and precisely printed macropores, promotes efficient interfacial charge and mass transfer, enhanced mechanical integrity, and thorough electrolyte infiltration. Meanwhile, the electronegative N atoms on 3DP S@NCNTs electrodes significantly relieve the "shuttle effect" and boost the redox reaction kinetics of polysulfides through their strong affinity toward lithium polysulfides. Benefiting from these merits, the fabricated Li-S battery with 3DP S@NCNTs cathode achieves an exceptional areal specific capacity of 9.51 mAh cm
Tạo bộ sưu tập với mã QR

THƯ VIỆN - TRƯỜNG ĐẠI HỌC CÔNG NGHỆ TP.HCM

ĐT: (028) 36225755 | Email: tt.thuvien@hutech.edu.vn

Copyright @2024 THƯ VIỆN HUTECH