材料科学
二氟
涂层
电流(流体)
阳极
化学工程
集电器
复合材料
电极
金属
无机化学
作者
Zhen Hou,Wenhui Wang,Yikang Yu,Xixia Zhao,Qianwen Chen,Lincheng Zhao,Qian Di,Huanxin Ju,Zewei Quan
标识
DOI:10.1016/j.ensm.2019.06.026
摘要
Direct utilization of Na metal anode, instead of carbon or alloy-based anode, is highly desired in Na-ion batteries mainly because of its lowest operating potential and high capacity. Nevertheless, unstable solid electrolyte interphase and uncontrollable Na dendrite growth during the repetitive Na deposition/stripping process usually lead to the low Coulombic efficiency and safety hazards. Herein, dendrite-free Na deposition/stripping can be achieved via constructing a protective PVDF layer on Cu current collector through a facile and scalable doctor blade coating technique. As a result, [email protected] current collector exhibits a stable cycling lifetime for 1200 h with a small overpotential (∼35 mV) at 1 mA cm−2, which is 6 times longer than the bare Cu current collector (∼200 h). Furthermore, [email protected] current collector delivers a high average CE of 99.91% for 2000 h at 1 mA cm−2. The excellent electrochemical performances of [email protected] current collectors are found to arise from the formation of a stable solid electrolyte interphase consisted of Na2O2 with a high shear modulus and rich NaF with a fast Na ion migration based on the defluorination reaction between PVDF and Na metal anode, which synergistically suppresses Na dendrite growth. This approach provides a new opportunity to stabilize Na metal anode.
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