Qiu Wenda, Xiao Hongbing, Li Yu, Lu Xihong, Tong Yexiang
School of Eco-Environmental Technology, Guangdong Industry Polytechnic, 152 Xingang West Road, Guangzhou, 510300, P. R. China.
KLGHEI of Environment and Energy Chemistry, MOE of the Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry, Sun Yat-Sen University, Guangzhou, 510275, P. R. China.
Small. 2019 Jun;15(23):e1901285. doi: 10.1002/smll.201901285. Epub 2019 Apr 29.
With the fast development in flexible electronic technology, power supply devices with high performance, low-cost, and flexibility are becoming more and more important. Potassium ion batteries (KIBs) have a brilliant prospect for applications benefiting from high voltage, lost cost, as well as similar electrochemistry to lithium ion batteries (LIBs). Although carbon materials have been studied as KIBs anodes, their rate capability and cycling stability are still unsatisfactory due to the large-size potassium ions. Herein, a nitrogen (N) and phosphorus (P) dual-doped vertical graphene (N, P-VG) uniformly grown on carbon cloth (N, P-VG@CC) is reported as a binder-free anode for flexible KIBs. With the combined advantages of rich active sites, highly accessible surface, highly conductive network, larger interlayer spacing as well as robust structural stability, this binder-free N, P-VG@CC anode exhibits high capacity (344.3 mAh g ), excellent rate capability (2000 mA g ; 46.5% capacity retention), and prominent long-term cycling stability (1000 cycles; 82% capacity retention), outperforming most of the recently reported carbonaceous anodes. Moreover, a potassium ion full cell is successfully assembled on the basis of potassium Prussian blue (KPB)//N, P-VG@CC, exhibiting a large energy density of 232.5 Wh kg and outstanding cycle stability.
随着柔性电子技术的快速发展,高性能、低成本且具备灵活性的电源装置变得越来越重要。钾离子电池(KIBs)因具有高电压、低成本以及与锂离子电池(LIBs)相似的电化学性质,在应用方面有着广阔的前景。尽管碳材料已被研究用作钾离子电池的负极,但由于钾离子尺寸较大,其倍率性能和循环稳定性仍不尽人意。在此,报道了一种均匀生长在碳布上的氮(N)和磷(P)双掺杂垂直石墨烯(N,P-VG),即N,P-VG@CC,作为柔性钾离子电池的无粘结剂负极。这种无粘结剂的N,P-VG@CC负极具有丰富的活性位点、高度可及的表面、高导电网络、更大的层间距以及稳健的结构稳定性等综合优势,展现出高容量(344.3 mAh g)、优异的倍率性能(2000 mA g;容量保持率46.5%)和出色的长期循环稳定性(1000次循环;容量保持率82%),优于最近报道的大多数碳质负极。此外,基于普鲁士蓝钾(KPB)//N,P-VG@CC成功组装了钾离子全电池,展现出232.5 Wh kg的高能量密度和出色的循环稳定性。