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An ultrahigh pyridinic N‐content‐doped porous carbon monolith is reported, and the content of pyridinic N reaches up to 10.1% in overall material (53.4 ± 0.9% out of 18.9 ± 0.4% N content), being higher than most of previously reported N‐doping carbonaceous materials, which exhibit greatly improved electrochemical performance for potassium storage, especially in term of the high reversible capacity...
Owing to the lower cost and easy accessibility of potassium, potassium‐ion batteries are considered as potential substitutes for lithium‐ion batteries. A porous carbon monolith with ultrahigh pyridinic N content is successfully synthesized by Yu Chen, Chenglin Yan, and co‐workers in article 1702268, which exhibits excellent electrochemical performance, especially in terms of reversible capacity, for...
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