Na2Ti3O7 (NTO) is considered a promising anode material for Na-ion batteries due to its layered structure with an open framework and low and safe average operating voltage of 0.3 V vs. Na+/Na. However, its poor electronic conductivity needs to be addressed to make this material attractive for practical applications among other anode choices. Here, we report a safe, controllable and affordable method using urea that significantly improves the rate performance of NTO by producing surface defects such as oxygen vacancies and hydroxyl groups and the secondary phase, Na2Ti6O13. A comprehensive study using a combination of diffraction, microscopic, spectroscopic and electrochemical techniques supported by computational studies based on DFT calcul...
Although Na2Ti3O7-based anodes have been widely investigated in sodium-ion batteries (SIBs), their N...
Sodium‐ion batteries (SIBs), as next‐generation energy storage devices, can be made by a similar pro...
Na2Ti3O7 is a promising insertion anode material for Na-ion batteries owing to its low reaction volt...
Na2Ti3O7 (NTO) is considered a promising anode material for Na-ion batteries due to its layered stru...
Na2Ti3O7 (NTO) is considered a promising anode material for Na‐ion batteries due to its layered stru...
Nowadays, topics relating to alternative energy sources and electrochemical storage devices, includi...
The development of high-power anode materials for Na-ion batteries is one of the primary obstacles d...
Despite being a promising anode material for the Na-ion battery system, Na-titanate (viz., Na2Ti3O7)...
Na-ion batteries (NIBs) are attracting widespread interest as a potentially more convenient alternat...
Owing to outstanding energy density, Li-ion batteries have dominated the portable electronic industr...
We report the exfoliation of layered Na2Ti3O7, a promising anode material for Na-ion batteries, and ...
Na2Ti3O7 is a promising negative electrode for rechargeable Na-ion batteries; however, its good prop...
The Li-ion battery is one of the best rechargeable energy storage techniques due to its exceptional ...
We report here on the moisture and water stability of the promising Na-ion anode material Na2Ti3O7. ...
Sodium titanate anodes synthesized via “chimie-douce” methods generally require a post-synthesis deh...
Although Na2Ti3O7-based anodes have been widely investigated in sodium-ion batteries (SIBs), their N...
Sodium‐ion batteries (SIBs), as next‐generation energy storage devices, can be made by a similar pro...
Na2Ti3O7 is a promising insertion anode material for Na-ion batteries owing to its low reaction volt...
Na2Ti3O7 (NTO) is considered a promising anode material for Na-ion batteries due to its layered stru...
Na2Ti3O7 (NTO) is considered a promising anode material for Na‐ion batteries due to its layered stru...
Nowadays, topics relating to alternative energy sources and electrochemical storage devices, includi...
The development of high-power anode materials for Na-ion batteries is one of the primary obstacles d...
Despite being a promising anode material for the Na-ion battery system, Na-titanate (viz., Na2Ti3O7)...
Na-ion batteries (NIBs) are attracting widespread interest as a potentially more convenient alternat...
Owing to outstanding energy density, Li-ion batteries have dominated the portable electronic industr...
We report the exfoliation of layered Na2Ti3O7, a promising anode material for Na-ion batteries, and ...
Na2Ti3O7 is a promising negative electrode for rechargeable Na-ion batteries; however, its good prop...
The Li-ion battery is one of the best rechargeable energy storage techniques due to its exceptional ...
We report here on the moisture and water stability of the promising Na-ion anode material Na2Ti3O7. ...
Sodium titanate anodes synthesized via “chimie-douce” methods generally require a post-synthesis deh...
Although Na2Ti3O7-based anodes have been widely investigated in sodium-ion batteries (SIBs), their N...
Sodium‐ion batteries (SIBs), as next‐generation energy storage devices, can be made by a similar pro...
Na2Ti3O7 is a promising insertion anode material for Na-ion batteries owing to its low reaction volt...