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A surface-nitridized 3D nickel host for lithium metal anodes with long cycling life at a high rate

机译:surface-nitridized 3 d为锂镍主机金属阳极高循环寿命长率

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摘要

Three dimensional (3D) metal structures such as nickel (Ni) and copper (Cu) frames have long been regarded as a good host for lithium (Li) metal. However, Li deposition on different metals often causes obvious over-potential, affecting the electrode performance in lithium metal batteries. Here, a Ni–N–O interface was created by surface nitridation to the Ni micro-particles, which were made into 3D current collectors. The directly grown Ni3N created a thin and lithiophilic layer containing dense Li nucleation sites. The homogeneous distribution of amorphous Ni3N and NiO at the interface allowed for a fast transfer of both electrons and ions, and thus facilitated smooth and even plating/stripping of lithium. High cycling stability and rate capability were simultaneously achieved. The 3D Li@N–Ni anode exhibited an extremely low voltage hysteresis of ∼10 mV over 850 h in a symmetric cell. The full battery paired with LiFePO4 achieved steady cycling at 5C for 1500 cycles, with coulombic efficiency constantly higher than 99.2% and an average capacity loss of 0.027 mA h g−1 per cycle, demonstrating a rational strategy for the design and fabrication of efficient lithium anodes for practical applications.
机译:三维(3 d)等金属结构(倪)和铜镍(铜)帧一直视为一个好的主机(李)金属锂。然而,李沉积在不同的金属原因显而易见的潜在影响在锂金属电池电极的性能。在这里,一个Ni-N-O接口是由表面渗氮的沉积镍微粒,做成三维电流收集器。种植Ni3N创建了一个薄和lithiophilic层李含致密成核的网站。非晶态Ni3N和均匀分布NiO的接口允许快速转移电子和离子,从而促进光滑,甚至镀/剥离的锂。高循环稳定性和速度能力同时实现。表现出极低的电压滞后∼10 mV / 850 h对称的细胞。磷酸铁锂电池搭配实现稳定骑自行车5 c 1500周期,库仑和一个不断效率高于99.2%平均产能损失0.027 mA h g−1周期,并展示了一种理性的战略设计和制造高效的锂阳极实际应用。

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