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Stoichiometric Ti_(3)C_(2)T_(x)Coating for Inhibiting Dendrite Growth in Anode-Free Lithium Metal Batteries
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作者 Xiangrong Zeng Manmatha Mahato +8 位作者 Woong Oh hyunjoon yoo Van Hiep Nguyen Saewoong Oh Geetha Valurouthu Soon-Ki Jeong Chi Won Ahn Yury Gogotsi Il-Kwon Oh 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第4期153-162,共10页
Lithium metal batteries(LMBs)and anode-free LMBs(AFLMBs)present a solution to the need for batteries with a significantly superior theoretical energy density.However,their adoption is hindered by low Coulombic efficie... Lithium metal batteries(LMBs)and anode-free LMBs(AFLMBs)present a solution to the need for batteries with a significantly superior theoretical energy density.However,their adoption is hindered by low Coulombic efficiency(CE)and rapid capacity fading,primarily due to the formation of unstable solid electrolyte interphase(SEI)layer and Li dendrite growth as a result of uneven Li plating.Here,we report on the use of a stoichiometric Ti_(3)C_(2)T_(x)(S-Ti_(3)C_(2)T_(x))MXene coating on the copper current collector to enhance the cyclic stability of an anode-free lithium metal battery.The S-Ti_(3)C_(2)T_(x)coating provides abundant nucleation sites,thereby lowering the overpotential for Li nucleation,and promoting uniform Li plating.Additionally,the fluorine(-F)termination of S-Ti_(3)C_(2)T_(x)participates in the SEI formation,producing a LiF-rich SEI layer,vital for stabilizing the SEI and improving cycle life.Batteries equipped with S-Ti_(3)C_(2)T_(x)@Cu current collectors displayed reduced Li consumption during stable SEI formation,resulting in a significant decrease in capacity loss.AFLMBs with S-Ti_(3)C_(2)T_(x)@Cu current collectors achieved a high initial capacity density of 4.2 mAh cm^(-2),70.9%capacity retention after 50 cycles,and an average CE of 98.19%in 100 cycles.This innovative application of MXenes in the energy field offers a promising strategy to enhance the performance of AFLMBs and could potentially accelerate their commercial adoption. 展开更多
关键词 anode-free lithium metal batteries stoichiometric MXene solid electrolyte interphase surface terminations
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韩国青云大学图书馆及总部大楼
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作者 hyunjoon yoo 李健美 《城市建筑》 2011年第7期89-93,共5页
基地位于山上,南面是道路交叉口,北面是松树林。从朝南的斜坡上可以看到远处绝佳的山景。向西穿过马路是教学楼,向北穿过松树林是宿舍楼和教学楼。这一施工地的最大挑战就是如何运用这里的斜坡使图书馆拥有一个宜人的环境条件。该项... 基地位于山上,南面是道路交叉口,北面是松树林。从朝南的斜坡上可以看到远处绝佳的山景。向西穿过马路是教学楼,向北穿过松树林是宿舍楼和教学楼。这一施工地的最大挑战就是如何运用这里的斜坡使图书馆拥有一个宜人的环境条件。该项目给定的综合楼主要包括两个功能.一个是普通的图书馆,一个是带有演讲礼堂、展览厅、院长室和会长室的办公区。 展开更多
关键词 大学图书馆 大楼 青云 韩国 道路交叉口 松树林 教学楼 宿舍楼
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