State Key Laboratory of Fine Chemicals, School of Petroleum and Chemical Engineering, Dalian University of Technology, No. 2, Dagong Road, Liaodongwan New District, Panjin, 124221, People's Republic of China.
Nanotechnology. 2017 Nov 24;28(47):475401. doi: 10.1088/1361-6528/aa8f78.
In this work, nitrogen-doped hollow porous carbon nanospheres coated with MnO nanosheets (NHPC@MnO) were prepared as a novel sulfur host for the cathode of lithium-sulfur battery. N-doping of carbon and deposition of the inherently polar MnO promote chemical binding of the host with sulfur and its reduction products, known as polysulfides. Meanwhile, proper N-doping can improve the electron conductivity of carbon, and the nanosheet structure may help to guarantee facile electron- and lithium-ion transport through MnO. Attributed to these advantages, the NHPC@MnO/S cathode with a high sulfur content (70 wt% and 2.6 mg cm) exhibited an excellent cycle stability: its capacity retention was 93% within 100 cycles at 0.5 C. It also displayed a good rate capability: discharge capacities being ∼1130 mAh g at 0.2 C, ∼1000 mAh g at 0.5 C, ∼820 mAh g at 1 C, and ∼630 mAh g at 2 C. Our work demonstrates the synergistic effect of MnO nanostructure and N-doped carbon nanospheres for enhanced performance of lithium-sulfur battery cathodes.
在这项工作中,制备了氮掺杂的空心多孔碳纳米球包覆的 MnO 纳米片(NHPC@MnO)作为锂硫电池阴极的新型硫主体。碳的氮掺杂和固有极性的 MnO 的沉积促进了宿主与硫及其还原产物多硫化物的化学结合。同时,适当的氮掺杂可以提高碳的电子电导率,纳米片结构有助于保证 MnO 中电子和锂离子的传输。由于这些优点,高硫含量(70wt%和 2.6mgcm)的 NHPC@MnO/S 阴极表现出优异的循环稳定性:在 0.5C 下 100 次循环后容量保持率为 93%。它还显示出良好的倍率性能:在 0.2C 时的放电容量约为 1130mAhg,在 0.5C 时为 1000mAhg,在 1C 时为 820mAhg,在 2C 时为 630mAhg。我们的工作证明了 MnO 纳米结构和氮掺杂碳纳米球的协同效应,可增强锂硫电池阴极的性能。