Project supported by the Key Laboratory Fund(Grant No.6142804200303)from Science and Technology on Microsystem Laboratory;the Key Research Program of Frontier Sciences of the Chinese Academy of Sciences:Original Innovation Projects from 0 to 1(Grant No.ZDBS-LY-JSC010);the Key Research and Development Project of the Department of Science and Technology of Jiangsu Province,China(Grant No.BE2020003);the Beijing Municipal Science and Technology Commission(Grant No.Z191100004719001);the National Key Research and Development Program of China(Grant No.2017YFB0405400)。
Nickel-rich cathode materials are increasingly being applied in commercial lithium-ion batteries to realize higher specific capacity as well as improved energy density.However,low structural stability and rapid capaci...
This work was financially supported by the National Natural Science Foundation of China(Nos.51571182 and 51001091);the Fundamental Research Program from the Ministry of Science and Technology of China(No.2014CB931704);the Program for Innovative Research Team(in Science and Technology)in University of Henan Province(No.21IRTSTHN003).This work was also partially supported by the Provincial Scientific Research Program of Henan(No.182102310815).
To probe the coupling effect of the electron and Li ion conductivities in Ni-rich layered materials(LiNi0.8Co0.15Al0.05O2,NCA),lithium lanthanum titanate(LLTO)nanofiber and carbon-coated LLTO fiber(LLTO@C)materials we...
the financial support of the National Natural Science Foundation of China(Grant Nos.91834301,91534102 and 21271058);Science and Technology Project of Anhui Province(Nos.201903a05020021 and 17030901067).
Nickel(Ni)-rich layered materials have attracted considerable interests as promising cathode materials for lithium ion batteries(LIBs)owing to their higher capacities and lower cost.Nevertheless,Mn-rich cathode materi...