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首页> 外文期刊>Chemical engineering journal >Highly efficient hierarchical multiroom-structured molybdenum carbide/carbon composite microspheres grafted with nickel-nanoparticle-embedded nitrogen-doped carbon nanotubes as air electrode for lithium-oxygen batteries
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Highly efficient hierarchical multiroom-structured molybdenum carbide/carbon composite microspheres grafted with nickel-nanoparticle-embedded nitrogen-doped carbon nanotubes as air electrode for lithium-oxygen batteries

机译:用镍纳米粒子嵌入的氮气掺杂碳纳米管接枝作为锂 - 氧电池的空气电极的高效分层多孔结构钼碳化物/碳复合微球

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摘要

Designing an efficient and effective air electrode catalyst material is the most intrinsic requisite for rechargeable lithium-oxygen (Li-O-2) batteries showing long cycling lives and high rate capacities. Here, we present for the first time, hierarchical multiroom-structured molybdenum carbide/carbon composite microspheres grafted with Ni nanoparticle-embedded N-doped carbon nanotubes (NCNTs) (i.e., mNi-NCNT-MoC-C), which are prepared by pilot-scale spray drying and subsequent surface growth of NCNT bundles. The designed mNi-NCNT-MoC-C microspheres show efficient bifunctional catalytic activities toward both oxygen reduction and evolution. In addition, the hierarchical multiroom structure of mNi-NCNT-MoC-C microspheres increases the discharge capacity by providing sufficient space to accommodate Li2O2, which forms during discharging. A Li-O-2 battery prepared using mNi-NCNT-MoC-C microspheres as an air electrode exhibits excellent electrochemical performances including a long cycle life (199 cycles) and low overpotentials of 0.20 and 0.21 V for charging and discharging, respectively. The synergetic effects of efficient morphology (i.e., the multiroom structure), highly electrocatalytically active materials (i.e., NCNT, Ni, and MoC), and high electrical conductivity (imparted by the NCNTs) is responsible for the superior performance of mNi-NCNT-MoC-C microspheres as an air cathode material for Li-O-2 batteries.
机译:设计有效且有效的空气电极催化剂材料是可充电锂 - 氧(Li-O-2)电池的最内在的必要条件,显示出长循环的寿命和高速率容量。在这里,我们首次出现,其嫁接与Ni纳米粒子嵌入的N掺杂的N掺杂碳纳米管(即MnI-NCNT-MOC-C)接枝的分层多粒子结构钼碳化物/碳复合微球,其通过飞行员制备-Spale喷雾干燥和随后的NCNT束的表面生长。设计的MNI-NCNT-MOC-C微球显示出氧气减少和进化的有效双官能催化活性。另外,MNI-NCNT-MOC-C微球的分层多型组织结构通过提供足够的空间来容纳Li2O2的放电容量,在放电期间形成。使用MnI-NCNT-MOC-C微球制备的Li-O-2电池作为空气电极的优异的电化学性能,包括长循环寿命(199个循环)和0.20和0.21V的低流量,用于充电和放电。有效形态(即,多载体结构),高电催化活性物质(即,NCNT,Ni和MoC)和高导电性(由NCNT施加)的协同作用是负责MNI-NCNT的优异性能 - MOC-C微球作为Li-O-2电池的空气阴极材料。

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