A hollow neuronal carbon skeleton with ultrahigh pyridinic N content as a self-supporting potassium-ion battery anode
文献情報
Yongwen Sun, Ya Zhang, Zheng Xing, Denghu Wei, Quanchao Zhuang
Safe, non-toxic and low cost carbonaceous materials, as ideal anodes for potassium ion batteries (KIBs), have broad application foregrounds. However, due to the large radius of K+, the challenges of cycling stability and structural stability of electrode materials are severe. In this paper, a flexible carbon sheet with ultrahigh pyridinic N content and a three-dimensional skeletal structure is reported as a self-supporting anode for KIBs and named HNCS. Herein, the hollow interconnected structure, being similar to a neuronal cell network, can effectively relieve the stress of volume expansion during cycling and provide more potassium storage space. In particular, the content of pyridinic N reaches up to 16.3% in HNCS (the N doping ratios in overall material is 31.7% and the pyridinic N ratios in N content is 57.4%) and is higher than most previous reports about N-doped carbonaceous materials. HNCS as a self-supporting anode shows great electrochemical performance, especially in terms of the superior cycling stability. HNCS delivers an initial charge capacity of 219.3 mA h g−1 at 100 mA g−1 and maintains 90% after 200 cycles and still displays a reversible capacity of 134 mA h g−1 after 500 cycles at 0.5 A g−1. Besides, the contribution of surface-dominated K-storage is quantitatively analyzed by CV measurements.
関連文献
IF 6.222
Solventless thermal crosslinked polymer protective layer for high stable lithium metal batteriesIF 6.367
Ultra-thin NiFeSe nanosheets as a highly efficient bifunctional electrocatalyst for overall water splittingIF 6.367
Boronic acid liposomes for cellular delivery and content release driven by carbohydrate binding‡IF 6.222
Strong circularly polarized luminescence of an octahedral chromium(iii) complexIF 6.222
Mechanically stable and economically viable polyvinyl alcohol-based membranes with sulfonated carbon nanotubes for proton exchange membrane fuel cellsIF 6.367
A robust multifunctional ligand-controlled palladium-catalyzed carbonylation reaction in waterIF 6.222
Cu2ZnSnS4 nanocrystals for microwave thermal and microwave dynamic combination tumor therapyIF 6.222
Building microsphere–nanosheet structures in N-doped carbon to improve its performance in the oxygen reduction reaction and vanadium redox flow batteriesIF 6.367
Facile room-temperature growth of nanostructured CuBi2O4 for selective electrochemical reforming and photoelectrochemical hydrogen evolution reactionsIF 6.367