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Ultralong-life lithium metal batteries enabled by decorating robust hybrid interphases on 3D layered framworks
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作者 Qiongjie Ke Qingshuai Xu +4 位作者 Xuejun Lai Xianfeng Yang Huichun Gao Zaisheng Wang Yongcai Qiu 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第5期610-615,共6页
Stable solid-electrolyte interphase(SEI)is crucial for advanced development of lithium metal batteries.However,the continuous collapse and reconstruction of SEI will deplete fresh Li and electrolytes upon cycling,lead... Stable solid-electrolyte interphase(SEI)is crucial for advanced development of lithium metal batteries.However,the continuous collapse and reconstruction of SEI will deplete fresh Li and electrolytes upon cycling,leading to irreversible capacity loss.Herein,we addressed this issue by pre-formation of artificial robust hybrid interphase on a 3D layered graphene/lithium metal framework,in which is constructed by LiF associated with Li2TiF 6generated by the in-situ reaction between the surfacial lithium and titanium fluoride contained electrolytes.The as-obtained interphase can maintain the structure integrality and avoid continuous consumption of the fresh Li and electrolytes.As a consequence,the Li symmetric cells achieve high-efficiency Li deposition and stable cycling over 3600 h.When paired with LiFePO_(4)cathodes,the coin cells exhibit long lifespan(>800 cycles)with almost 88.3%retention of the initial capacity. 展开更多
关键词 Lithium metal battery tif_4 Artificial SEI Dendrite free 3D frameworks
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TiF_(4)预处理牙本质对复合树脂的粘接性能及边缘微渗漏影响的研究进展 被引量:6
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作者 李响(综述) 李妍 +3 位作者 俞鸿飞 柏乐 王自立 高江红(审校) 《福建医科大学学报》 2021年第5期464-470,共7页
龋病是一种常见病、高发病,可造成牙体硬组织的缺损。牙体硬组织缺损后常用牙科复合树脂修复,而复合树脂的聚合收缩及其热膨胀系数和牙体硬组织间存在一定差异,易造成充填体和牙体硬组织之间的密合性降低甚至脱粘接,继而导致微渗漏甚至... 龋病是一种常见病、高发病,可造成牙体硬组织的缺损。牙体硬组织缺损后常用牙科复合树脂修复,而复合树脂的聚合收缩及其热膨胀系数和牙体硬组织间存在一定差异,易造成充填体和牙体硬组织之间的密合性降低甚至脱粘接,继而导致微渗漏甚至继发龋的形成。因此,促进复合树脂充填体与牙体组织间粘接的持久性和密合性一直是粘接剂研究的重点问题。 展开更多
关键词 TiF_(4) 牙本质预处理 复合树脂 微渗漏 粘接性能
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