Hybrid sodium ion capacitors have been considered promising energy storage devices with superior energy and power performances by combining the advantages of batteries and supercapacitors. However, it is desirable to design anode materials with large specific capacity and excellent rate performance. Herein, we provide a large-scalable process to create the highly N-doped carbons by employing k-carrageenan as precursor and alkali metal nitrate as activating agent and dopant. Remarkably, the nitrate salt assisted synthesis process leads to a high nitrogen content of 8.6–12.6 at. % in the carbon framework. When applied as an anode for a sodium ion battery, the carbon delivers a high reversible capacity of 419 mA h g–1 at 50 mA g–1. The kinetic...
Hard carbons with a disordered graphitic structure show promise as anode materials in next generatio...
Achieving high-performance Na-ion capacitors (NICs) has the particular challenge of matching both ca...
We report the synthesis and fabrication of all carbonaceous electrode based high-energy and high-pow...
We demonstrate an approach to prepare nitrogen-rich hard carbon (N-HCS) from biomass as a robust ano...
Synthesis of the electrode materials of sodium-ion storage devices from sustainable precursors via g...
Abstract In order to improve the cycling capability and rate performance of carbon anode material fo...
Available online 22 February 2018The sodium ion hybrid capacitor (SHC) has been attracting much atte...
Anode materials with capacitive charge storage (CCS) are highly desirable for the development of hig...
We created a hybrid Na ion capacitor (NIC) with a unique architecture and exceptional energy\u2013po...
Microporous nitrogen‐rich carbon fibers (HAT‐CNFs) are produced by electrospinning a mixture of hexa...
The realization of electrochemical energy storage devices combining high energy and power density pl...
To circumvent the imbalances of electrochemical kinetics and capacity between Li<sup>+</sup> storage...
We employed a polypyrrole hydrogel precursor to create a carbon framework that possesses both huge h...
Hard carbon exhibits high theoretical capacity for sodium-ion batteries. However, its practical appl...
Nitrogen-rich carbon with interconnected mesoporous structure has been simply prepared via a nano-Ca...
Hard carbons with a disordered graphitic structure show promise as anode materials in next generatio...
Achieving high-performance Na-ion capacitors (NICs) has the particular challenge of matching both ca...
We report the synthesis and fabrication of all carbonaceous electrode based high-energy and high-pow...
We demonstrate an approach to prepare nitrogen-rich hard carbon (N-HCS) from biomass as a robust ano...
Synthesis of the electrode materials of sodium-ion storage devices from sustainable precursors via g...
Abstract In order to improve the cycling capability and rate performance of carbon anode material fo...
Available online 22 February 2018The sodium ion hybrid capacitor (SHC) has been attracting much atte...
Anode materials with capacitive charge storage (CCS) are highly desirable for the development of hig...
We created a hybrid Na ion capacitor (NIC) with a unique architecture and exceptional energy\u2013po...
Microporous nitrogen‐rich carbon fibers (HAT‐CNFs) are produced by electrospinning a mixture of hexa...
The realization of electrochemical energy storage devices combining high energy and power density pl...
To circumvent the imbalances of electrochemical kinetics and capacity between Li<sup>+</sup> storage...
We employed a polypyrrole hydrogel precursor to create a carbon framework that possesses both huge h...
Hard carbon exhibits high theoretical capacity for sodium-ion batteries. However, its practical appl...
Nitrogen-rich carbon with interconnected mesoporous structure has been simply prepared via a nano-Ca...
Hard carbons with a disordered graphitic structure show promise as anode materials in next generatio...
Achieving high-performance Na-ion capacitors (NICs) has the particular challenge of matching both ca...
We report the synthesis and fabrication of all carbonaceous electrode based high-energy and high-pow...