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Routes to Bidirectional Cathodes for Reversible Aprotic Alkali Metal–CO2 Batteries
Aprotic alkali metal–CO2 batteries (AAMCBs) have garnered significant interest owing to
fixing CO2 and providing large energy storage capacity. The practical implementation of …
fixing CO2 and providing large energy storage capacity. The practical implementation of …
p-band regulation guides the free-standing porous carbon electrode for efficient Na-CO2 batteries
Y Wang, Y Cheng, B Chen, J Zhou, H ** and Metal Vacancy Engineering for Large Capacity Li-CO2 Batteries
Rechargeable Li-CO 2 batteries are well-regarded for their high-energy, environmental
friendliness, and resourceful use of CO 2, but suffer from poor cycle reversibility. Herein, Al …
friendliness, and resourceful use of CO 2, but suffer from poor cycle reversibility. Herein, Al …
Transition metal-based cathode catalysts for Li-CO2 batteries
W Ma, M Gao, J Ma, S Liu, L Yang, Y Yang… - Journal of Energy …, 2025 - Elsevier
The Li-CO 2 battery has been highly rated as an intriguing technique for balancing the
carbon cycle for years, but it is still significantly challenged by the obstacles such as limited …
carbon cycle for years, but it is still significantly challenged by the obstacles such as limited …
Boosted Li 2 CO 3 reversible conversion utilizing Cu-doped TiB MBene/graphene for Li–CO 2 batteries
T Luo, Q Peng, M Yang, H Hu, J Ding, Y Chen… - Journal of Materials …, 2024 - pubs.rsc.org
Two-dimensional transition metal borides (MBenes), particularly TiB, hold promise as
electrocatalysts for CO2-related reactions. However, their bifunctional catalytic performance …
electrocatalysts for CO2-related reactions. However, their bifunctional catalytic performance …
Regulating the Local Spin States in Spinel Oxides to Promote the Activity of Li‐CO2 Batteries
Due to the high energy barrier, slow reaction kinetics, and complex reaction environments of
Li‐CO2 batteries, the development of durable and efficient catalysts is essential. Transition …
Li‐CO2 batteries, the development of durable and efficient catalysts is essential. Transition …
Photoassisted Li–CO2 Batteries with Ultrahigh Energy Efficiency and Cycle Stability by a Redox Mediator
K Hu, T Hu, T Yao, X Cui, Q Li, L Shen - ACS nano, 2025 - ACS Publications
Li–CO2 batteries are considered promising energy storage systems for implementation in
space applications. However, unsatisfactory overpotentials and poor cycling stability caused …
space applications. However, unsatisfactory overpotentials and poor cycling stability caused …
Enhanced Cycle Performance of Rechargeable Li-CO2 Batteries Using Nanostructured AMn2O4 (A = Ni, Zn, Co) Electrocatalysts
Rechargeable Li-CO2 batteries face challenges of sluggish reaction kinetics and poor
rechargeability. Highly efficient electrocatalysts are urgently needed to decompose the …
rechargeability. Highly efficient electrocatalysts are urgently needed to decompose the …
Decoding the Role of eg Orbital Occupancy in Co Sites: Mechanistic Insights into Enhanced N2 Activation for Electrocatalytic Nitrate Synthesis
J Li, Y Liu, Y Ji, S Wang, L Shi, W Fu, X Wang… - Chemistry of …, 2024 - ACS Publications
The electrochemical synthesis of nitrates through nitrogen oxidation reactions (NOR) faces
challenges due to the chemical stability of N2 and the complexity of its electron transfer …
challenges due to the chemical stability of N2 and the complexity of its electron transfer …