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March 3, 2026
Synergistic integration of phosphorus doping and closed-pore architecture in starch-derived hard carbon for advanced sodium-ion storage
YS
Yunfei Shen
Beijing Institute of Technology
YX
Yuhang Xin
Beijing Institute of Technology
QZ
Qingbo Zhou
Beijing Institute of Technology
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Key Points
The improved sodium-ion storage capacity is attributed to the synergistic integration of phosphorus doping and closed-pore architecture.
Results indicate a significant increase in storage capacity, achieving levels not previously observed in similar materials.
Assessment using advanced electrochemical techniques highlights the role of starch-derived carbon in energy storage systems.
This integration suggests potential applications in developing more efficient sodium-ion batteries for future energy needs.
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Synergistic integration of phosphorus doping and closed-pore architecture in starch-derived hard carbon for advanced sodium-ion storage | Synapse
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Shen et al. (Sun,) studied this question.
synapsesocial.com/papers/69a76883badf0bb9e87e4e95
https://doi.org/https://doi.org/10.1016/j.cej.2026.173884