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浅议脱铜脱砷电积及其电单耗 被引量:3
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作者 邱文顺 柴兴亮 叶锋 《有色设备》 2017年第2期50-56,共7页
本文主要阐述了脱铜脱砷电积的工艺原理。分析了电能消耗的方式,并建立了评价脱铜脱砷电积工艺能耗的模型,对多金属电积的综合能耗进行了表征。同时,对国内不同的脱铜脱砷电积工艺生产数据进行了分析,找到了一种评价多金属电积综合能耗... 本文主要阐述了脱铜脱砷电积的工艺原理。分析了电能消耗的方式,并建立了评价脱铜脱砷电积工艺能耗的模型,对多金属电积的综合能耗进行了表征。同时,对国内不同的脱铜脱砷电积工艺生产数据进行了分析,找到了一种评价多金属电积综合能耗高低的方法。 展开更多
关键词 脱铜脱砷电 多金属电积 电能消耗 表征
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Preparation and electrochemical lithium storage performance of porous silicon microsphere composite with metal modification and carbon coating
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作者 XU Zeyu LU Tongzhou +1 位作者 SHAO Haibo WANG Jianming 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第10期1995-2008,共14页
This work adopts a multi⁃step etching⁃heat treatment strategy to prepare porous silicon microsphere com⁃posite with Sb⁃Sn surface modification and carbon coating(pSi/Sb⁃Sn@C),using industrial grade SiAl alloy micro⁃sp... This work adopts a multi⁃step etching⁃heat treatment strategy to prepare porous silicon microsphere com⁃posite with Sb⁃Sn surface modification and carbon coating(pSi/Sb⁃Sn@C),using industrial grade SiAl alloy micro⁃spheres as a precursor.pSi/Sb⁃Sn@C had a 3D structure with bimetallic(Sb⁃Sn)modified porous silicon micro⁃spheres(pSi/Sb⁃Sn)as the core and carbon coating as the shell.Carbon shells can improve the electronic conductivi⁃ty and mechanical stability of porous silicon microspheres,which is beneficial for obtaining a stable solid electrolyte interface(SEI)film.The 3D porous core promotes the diffusion of lithium ions,increases the intercalation/delithia⁃tion active sites,and buffers the volume expansion during the intercalation process.The introduction of active met⁃als(Sb⁃Sn)can improve the conductivity of the composite and contribute to a certain amount of lithium storage ca⁃pacity.Due to its unique composition and microstructure,pSi/Sb⁃Sn@C showed a reversible capacity of 1247.4 mAh·g^(-1) after 300 charge/discharge cycles at a current density of 1.0 A·g^(-1),demonstrating excellent rate lithium storage performance and enhanced electrochemical cycling stability. 展开更多
关键词 silicon⁃based anode porous structure metallic deposition carbon coating electrochemical lithium storage
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