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Author Correction: A general Lewis acidic etching route for preparing MXenes with enhanced electrochemical performance in non-aqueous electrolyte.
Li Y, Shao H, Lin Z, Lu J, Liu L, Duployer B, Persson POÅ, Eklund P, Hultman L, Li M, Chen K, Zha XH, Du S, Rozier P, Chai Z, Raymundo-Piñero E, Taberna PL, Simon P, Huang Q. Li Y, et al. Among authors: li m. Nat Mater. 2021 Apr;20(4):571. doi: 10.1038/s41563-021-00925-4. Nat Mater. 2021. PMID: 33462470 No abstract available.
Multielemental single-atom-thick A layers in nanolaminated V2(Sn, A) C (A = Fe, Co, Ni, Mn) for tailoring magnetic properties.
Li Y, Lu J, Li M, Chang K, Zha X, Zhang Y, Chen K, Persson POÅ, Hultman L, Eklund P, Du S, Francisco JS, Chai Z, Huang Z, Huang Q. Li Y, et al. Among authors: li m. Proc Natl Acad Sci U S A. 2020 Jan 14;117(2):820-825. doi: 10.1073/pnas.1916256117. Epub 2019 Dec 26. Proc Natl Acad Sci U S A. 2020. PMID: 31879341 Free PMC article.
A general Lewis acidic etching route for preparing MXenes with enhanced electrochemical performance in non-aqueous electrolyte.
Li Y, Shao H, Lin Z, Lu J, Liu L, Duployer B, Persson POÅ, Eklund P, Hultman L, Li M, Chen K, Zha XH, Du S, Rozier P, Chai Z, Raymundo-Piñero E, Taberna PL, Simon P, Huang Q. Li Y, et al. Among authors: li m. Nat Mater. 2020 Aug;19(8):894-899. doi: 10.1038/s41563-020-0657-0. Epub 2020 Apr 13. Nat Mater. 2020. PMID: 32284597 Free article.
A negative electrode of Ti(3)C(2) MXene material obtained through this molten salt synthesis method delivers a Li(+) storage capacity of up to 738 C g(-1) (205 mAh g(-1)) with high charge-discharge rate and a pseudocapacitive-like electrochemical signature in 1 M Li …
A negative electrode of Ti(3)C(2) MXene material obtained through this molten salt synthesis method delivers a Li(+) storage capacity …
Electrochemical Lithium Storage Performance of Molten Salt Derived V2SnC MAX Phase.
Li Y, Ma G, Shao H, Xiao P, Lu J, Xu J, Hou J, Chen K, Zhang X, Li M, Persson POÅ, Hultman L, Eklund P, Du S, Chai Z, Huang Z, Jin N, Ma J, Liu Y, Lin Z, Huang Q. Li Y, et al. Among authors: li m. Nanomicro Lett. 2021 Jul 22;13(1):158. doi: 10.1007/s40820-021-00684-6. Nanomicro Lett. 2021. PMID: 34292406 Free PMC article.
Supported by operando X-ray diffraction and density functional theory, a charge storage mechanism with dual redox reaction is proposed with a Sn-Li (de)alloying reaction that occurs at the edge sites of V(2)SnC particles where Sn atoms are exposed to the electrolyte follow …
Supported by operando X-ray diffraction and density functional theory, a charge storage mechanism with dual redox reaction is proposed with …
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