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新型钾离子电池层状正极材料P3型K_(0.5)MnO_(2)的制备及储钾性能研究 被引量:1
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作者 余满 张博 +4 位作者 卢中华 陈良 张鼎 刘世斌 徐守冬 《太原理工大学学报》 CAS 北大核心 2023年第4期637-646,共10页
【目的】钾离子电池具有低成本和能量密度高等优势,成为锂离子电池潜在的替代品,受到人们广泛的关注。但是,由于缺乏高比容量、循环寿命长的正极材料,使得这类新型电池的发展受到了限制。【方法】采用水热前驱体法、溶胶凝胶法和草酸盐... 【目的】钾离子电池具有低成本和能量密度高等优势,成为锂离子电池潜在的替代品,受到人们广泛的关注。但是,由于缺乏高比容量、循环寿命长的正极材料,使得这类新型电池的发展受到了限制。【方法】采用水热前驱体法、溶胶凝胶法和草酸盐共沉淀法制备了新型钾离子电池正极材料P3型K_(0.5)MnO_(2).【结论】结果表明与其他两种方法相比,水热前驱体法制备的K_(0.5)MnO_(2)(H-K_(0.5)MnO_(2))具有粗糙的表面和较多的内部孔隙,有利于电子的传递和提供更多的活性位点。H-K_(0.5)MnO_(2)电极在电流密度20 mA/g下,首周放电比容量最高,达到85 mAh/g,60周循环后电极片的XRD和EIS测试结果表明在重复的脱嵌K^(+)后,H-K_(0.5)MnO_(2)仍保持最稳定的结构以及最小的电荷传递阻抗。储钾性能研究的结果表明在高倍率下H-K_(0.5)MnO_(2)赝电容占比最高,从而能够实现快速的可逆充放电。 展开更多
关键词 钾离子电池 正极材料 水热前驱体法 p3k_(0.5)mno_(2) 储钾性能
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In sight of K-deficient layered K_(x)MnO_(2) cathode for potassium-ions batteries 被引量:2
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作者 Tiezhong Liu Shuang Hou +5 位作者 Youpeng Li Shoufeng Xue Junhua Hu Haikuo Fu Chenghao Yang Lingzhi Zhao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第1期335-343,I0009,共10页
Potassium-ions batteries(PIBs)are attracting increasing attention as up-and-coming youngster in largescale grid-level energy storage benefiting from its low-cost and high energy density.Nevertheless,enough researches ... Potassium-ions batteries(PIBs)are attracting increasing attention as up-and-coming youngster in largescale grid-level energy storage benefiting from its low-cost and high energy density.Nevertheless,enough researches regarding indispensable cathode materials for PIBs are badly absent.Herein,we synthesize K-deficient layered manganese-based oxides(P2-K_(0.21)MnO_(2) and P3-K_(0.23)MnO_(2))and investigate them as cathode of PIBs for the first time.As the newcomer of potassium-containing layered manganese-based oxides(K_(x)MnO_(2))group,P2-K_(0.21)MnO_(2) delivers high discharge capacity of 99.3 mAh g^(-1) and P3-K_(0.23)MnO_(2) exhibits remarkable capacity retention rate of 75.5%.Besides,in-situ XRD and ex-situ XRD measurements reveal the reversible phase transition of P2-K_(0.21)MnO_(2) and P3-K_(0.23)MnO_(2) with the potassium-ions extraction and reinsertion,respectively.This work contributes to a better understanding for the potassium storage in K-deficient layered K_(x)MnO_(2)(x≤0.23),possessing an important basic scientific significance for the exploitation and application of layered K_(x)MnO_(2) in PIBs. 展开更多
关键词 potassium-ions battery CATHODE Layered k_(x)mno_(2) p2/p3-type structure Low potassium content
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