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A B,N co-doped carbon nanotube array with anchored MnO_(2) nanosheets as a flexible cathode for aqueous zinc-ion batteries
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作者 YUAN Yan-bing ZHAO Zong-bin +3 位作者 BI Hong-hui ZHANG Run-meng WANG Xu-zhen QIU Jie-shan 《新型炭材料(中英文)》 北大核心 2025年第1期200-210,共11页
For rechargeable aqueous zinc-ion batteries(ZIBs),the design of nanocomposites comprised of electrochemically active materials and carbon materials with novel structures has great prom-ise in addressing the issue of e... For rechargeable aqueous zinc-ion batteries(ZIBs),the design of nanocomposites comprised of electrochemically active materials and carbon materials with novel structures has great prom-ise in addressing the issue of electrical conductivity and structural stability in the electrode materials during electrochemical cycling.We report the production of a novel flexible electrode material,by anchoring MnO_(2) nanosheets on a B,N co-doped carbon nanotube ar-ray(BNCNTs)grown on carbon cloth(BNCNTs@MnO_(2)),which was fabricated by in-situ pyrolysis and hydrothermal growth.The generated BNCNTs were strongly bonded to the surface of the car-bon fibers in the carbon cloth which provides both excellent elec-tron transport and ion diffusion,and improves the stability and dur-ability of the cathode.Importantly,the BNCNTs offer more active sites for the hydrothermal growth of MnO_(2),ensuring a uniform dis-tribution.Electrochemical tests show that BNCNTs@MnO_(2) delivers a high specific capacity of 310.7 mAh g^(−1) at 0.1 A g^(−1),along with excellent rate capability and outstanding cycling stability,with a 79.7% capacity retention after 8000 cycles at 3 A g^(−1). 展开更多
关键词 B N co-doped carbon nanotube Manganese dioxide Flexible electrode Aqueous zinc-ion batteries
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一个研究型综合化学实验的设计 被引量:5
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作者 王玉芹 丁益民 +3 位作者 张慧 曹志源 饶薇薇 童玮琦 《实验室研究与探索》 CAS 北大核心 2010年第5期43-44,70,共3页
设计了一研究型综合化学实验,主要介绍了一种纳米二氧化锰粉末电极的制备工艺,并通过组装成三电极体系进行恒电流充放电测试,从而计算纳米二氧化锰研究电极的比电容。在实验教学过程中引入前沿热点超级电容器,可以让学生更加直观地了解... 设计了一研究型综合化学实验,主要介绍了一种纳米二氧化锰粉末电极的制备工艺,并通过组装成三电极体系进行恒电流充放电测试,从而计算纳米二氧化锰研究电极的比电容。在实验教学过程中引入前沿热点超级电容器,可以让学生更加直观地了解化学电源的基本结构与性能评价标准,拓展他们的知识领域。 展开更多
关键词 研究型实验 纳米二氧化锰电极 恒电流充放电 超级电容器
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