Theoretical investigation of synergistically boosting the anchoring and electrochemical performance of lithiophilic/sulfiphilic transition metal carbides for lithium–sulfur batteries
Mingyang Wang,
Jianjun Mao,
Yudong Pang
et al.
Abstract:Synergistically boosting the anchoring and electrochemical performance of lithiophilic/sulfiphilic transition metal carbide (001) surfaces.
“…We also summarized the different types of metal phosphides and their performances on the battery in Table 1. 104–108 It has been reported that lithium–sulfur button cells with metal phosphides have good electrochemical properties under different rates and have good cycle stability in soft package batteries. 109–111 The clearly delineated design principles and comprehensive exploration of catalytic mechanisms related to phosphides have offered significant insights for constructing excellent efficiency and long-lasting Li–S batteries.…”
Lithium-Sulfur batteries (Li-S batteries) are being widely studied as promising energy-storage solutions for the next generation due to the excellent properties including: high energy density, eco-friendliness, and low cost. Nevertheless,...
“…We also summarized the different types of metal phosphides and their performances on the battery in Table 1. 104–108 It has been reported that lithium–sulfur button cells with metal phosphides have good electrochemical properties under different rates and have good cycle stability in soft package batteries. 109–111 The clearly delineated design principles and comprehensive exploration of catalytic mechanisms related to phosphides have offered significant insights for constructing excellent efficiency and long-lasting Li–S batteries.…”
Lithium-Sulfur batteries (Li-S batteries) are being widely studied as promising energy-storage solutions for the next generation due to the excellent properties including: high energy density, eco-friendliness, and low cost. Nevertheless,...
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