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首页> 外文期刊>ACS applied materials & interfaces >Design of P-Doped Mesoporous Carbon Nitrides as High-Performance Anode Materials for Li-Ion Battery
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Design of P-Doped Mesoporous Carbon Nitrides as High-Performance Anode Materials for Li-Ion Battery

机译:P掺杂介孔碳氮化物的设计为Li离子电池的高性能阳极材料

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Herein, we demonstrate a simple and unique strategy for the preparation of P-doped into the substructure of mesoporous carbon nitride materials (P-MCN-1) with ordered porous structures as a high-energy and high-power Li-ion battery (LIB) anode. The P-MCN-1 as an anode in LIB delivers a high reversible discharge capacity of 963 mAh g(-1) even after 1000 cycles at a current density of 1 A g(-1), which is much higher than that of other counterparts comprising s-triazine (C3H3N3, g-C3N4), pristine MCN-1, and B-containing MCN-1 (B-MCN-1) subunits or carbon allotropes like CNT and graphene (rGO) materials. The P-MCN-1 electrode also exhibits exceptional rate capability even at high current densities of 5, 10, and 20 A g(-1) delivering 685, 539, and 274 mAh g(-1), respectively, after 2500 cycles. The high electrical conductivity and Li-ion diffusivity (D), estimated from electrochemical impedance spectra (EIS), very well support the extraordinary electrochemical performance of the P-MCN-1. Higher formation energy, lower bandgap value, and high Li-ion adsorption ability predicted by first principle calculations of P-MCN-1 are in good agreement with experimentally observed high lithium storage, stable cycle life, high power capability, and minimal irreversible capacity (IRC) loss. To the best of our knowledge, it is an entirely new material with the combination of ordered mesostructures with P codoping in carbon nitride substructure which offers superior performance for LIB, and hence we believe that this work will create new momentum for the design and development of clean energy storage devices.
机译:在此,我们证明了一种简单而独特的策略,用于制备具有有序多孔结构作为高能和高功率锂离子电池的有序多孔结构(Lib )阳极。 Lib中的p-mcn-1作为阳极,即使在1000个循环为1 a g(-1)的1000个周期之后,Lib的高可逆放电容量也远远高于其他循环包含S-三嗪(C3H3N3,G-C3N4),原始MCN-1和含B的MCN-1(B-MCN-1)亚单位或碳异滴体,如CNT和石墨烯(RGO)材料。即使在2500次循环之后,P-MCN-1电极也表现出分别在5,10和20Ag(-1)的高电流密度为5,10和20Ag(-1)的高电流密度。从电化学阻抗谱(EIS)估计的高电导率和锂离子扩散率(D),非常好地支持P-MCN-1的非凡电化学性能。通过第一原理计算P-MCN-1的较高的形成能量,较低的带隙值和高锂离子吸附能力与实验观察到的高锂储存,稳定的循环寿命,高功率能力和最小的不可逆容量( IRC)损失。据我们所知,它是一种完全新的材料,具有有序的型腹腔结构与P编码在氮化物子结构中的组合,这为LIB提供了卓越的性能,因此我们相信这项工作将为设计和开发创造新的势头清洁储能设备。

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