Porous and hollow carbon materials have great superiority and prospects in electrochemical energy applications, especially for surface charge storage due to the high active surface. Herein, a general strategy is developed to synthesize mesoporous hollow carbon spheres (MHCS) with controllable texture and compositions by the synergistic effect of dopamine polymerization and metal catalysis (Cu, Bi, Zn). Mesoporous MHCS-Cu and MHCS-Bi are regular spheres, while mesoporous MHCS-Zn possesses an inward concave texture, and simultaneously has a very high surface area of 1675.5 m(2) g(-1) and lower oxygen content through the catalytic deoxygenation effect. MHCS-Zn displays an exceptional sodium storage kinetics and excellent long cycling life with...
Hard carbons are the most promising negative active materials for sodium ion storage. In this work, ...
The pursuit of a high-capacity anode material has been urgently required for commercializing sodium-...
A green and efficient hydrothermal technique without any catalysts is used to prepare monodispersed ...
Mesoporous carbon hollow spheres (MCHS) have wide applications, including catalysis, absorption, and...
Zinc-ion hybrid supercapacitors are a promising energy storage device as they simultaneously combine...
It is a highly expected avenue to construct dual-carbon sodium-ion hybrid capacitors (SIHCs) using h...
Hollow mesoporous carbon spheres with controllable diameters have been fabricated from core-shell st...
The construction of hollow mesoporous carbon nanospheres (HMCS) avoiding the use of traditional soft...
Nitrogen‐doped hollow carbon nanospheres (N‐HCSs) were prepared by a facile template method with dop...
Mesoporous carbon hollow spheres (MCHS) have wide applications, including catalysis, absorption, and...
We report the synthesis and fabrication of all carbonaceous electrode based high-energy and high-pow...
Hollow carbon materials have been extensively investigated as sulfur hosts for lithium-sulfur batter...
Hard carbons are the most promising negative active materials for sodium ion storage. In this work, ...
To well understand the effect of the mesopore type of ordered mesoporous carbons (OMCs) on enhancing...
Carbonaceous materials exhibit promising application in electrochemical energy storage especially fo...
Hard carbons are the most promising negative active materials for sodium ion storage. In this work, ...
The pursuit of a high-capacity anode material has been urgently required for commercializing sodium-...
A green and efficient hydrothermal technique without any catalysts is used to prepare monodispersed ...
Mesoporous carbon hollow spheres (MCHS) have wide applications, including catalysis, absorption, and...
Zinc-ion hybrid supercapacitors are a promising energy storage device as they simultaneously combine...
It is a highly expected avenue to construct dual-carbon sodium-ion hybrid capacitors (SIHCs) using h...
Hollow mesoporous carbon spheres with controllable diameters have been fabricated from core-shell st...
The construction of hollow mesoporous carbon nanospheres (HMCS) avoiding the use of traditional soft...
Nitrogen‐doped hollow carbon nanospheres (N‐HCSs) were prepared by a facile template method with dop...
Mesoporous carbon hollow spheres (MCHS) have wide applications, including catalysis, absorption, and...
We report the synthesis and fabrication of all carbonaceous electrode based high-energy and high-pow...
Hollow carbon materials have been extensively investigated as sulfur hosts for lithium-sulfur batter...
Hard carbons are the most promising negative active materials for sodium ion storage. In this work, ...
To well understand the effect of the mesopore type of ordered mesoporous carbons (OMCs) on enhancing...
Carbonaceous materials exhibit promising application in electrochemical energy storage especially fo...
Hard carbons are the most promising negative active materials for sodium ion storage. In this work, ...
The pursuit of a high-capacity anode material has been urgently required for commercializing sodium-...
A green and efficient hydrothermal technique without any catalysts is used to prepare monodispersed ...