材料科学
相间
电解质
合金
阳极
金属
沉积(地质)
金属锂
化学工程
复合材料
纳米技术
冶金
电极
物理化学
古生物学
化学
遗传学
沉积物
工程类
生物
作者
Yihong Gao,Xiaolong Cheng,Hangyu Zhang,Xinping Tao,Pengcheng Shi,Yu Yao,Yingjie Sun,Yu Shao,Fangzhi Huang,Yu Jiang
标识
DOI:10.1002/adfm.202515253
摘要
Abstract Na/K metal batteries (NMBs; KMBs), featuring intrinsic high theoretical capacity, energy density, and resource availability, represent an ideal choice for sustainable energy storage. However, the unstable solid electrolyte interface (SEI) and uncontrollable Na/K dendrite growth have seriously impeded their widespread application. Herein, an in situ conversion strategy is proposed for constructing a gradient interphase layer (NT/NBS) on the Na metal surface, which consists of a Na 2 Te‐rich (denoted as NT) outer layer and a sodiophilic Na 3 Bi–Na 3 Sb alloy (denoted as NBS) inner layer. This innovative design reduces nucleation overpotential, promotes Na + diffusion kinetics, homogenizes the Na + flux, ensures high interfacial and mechanical stability, thereby realizing the dendrite‐free Na deposition. As a result, the optimized Na symmetric cell demonstrates remarkable durability of 1600 h at 0.5 mA cm −2 . Furthermore, the Na full cell (NVP||NT/NBS@Na) coupling with Na 3 V 2 (PO 4 ) 3 (NVP) cathode achieves 82.8% capacity retention after 2600 cycles at 20C rate. Notably, NVP||NT/NBS@Na still delivers excellent rate capability and superior cyclic stability at −40 °C and 60 °C, respectively. More impressively, both modified K‐half and K‐full cells achieve superior cycle life. These findings provide a paradigm for the design of a multifunctional gradient interphase layer that enables wide‐temperature operation of stable NMBs/KMBs.
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