Mechanistic Insight and Local Structure Evolution of NiPS3 upon Electrochemical Lithiation

Transition metal phosphorus trisulfide materials have received considerable research interest since the 1980–1990s as they exhibit promising energy conversion and storage properties. However, the mechanistic insights into Li-ion storage in these materials are poorly understood to date. Here, we expl...

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Veröffentlicht in:ACS applied materials & interfaces 2022-01, Vol.14 (3), p.3980-3990
Hauptverfasser: Choi, Christopher, Ashby, David, Rao, You, Anber, Elaf, Hart, James L, Butts, Danielle, Wilson, Catrina, Levin, Emily, Taheri, Mitra, Ghazisaeidi, Maryam, Dunn, Bruce, Doan-Nguyen, Vicky
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Sprache:eng
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Zusammenfassung:Transition metal phosphorus trisulfide materials have received considerable research interest since the 1980–1990s as they exhibit promising energy conversion and storage properties. However, the mechanistic insights into Li-ion storage in these materials are poorly understood to date. Here, we explore the lithiation of NiPS3 material by employing in situ pair-distribution function analysis, Monte Carlo molecular dynamics calculations, and a series of ex situ characterizations. Our findings elucidate complex ion insertion and storage dynamics around a layered polyanionic compound, which undergoes intercalation and conversion reactions in a sequential manner. This study of NiPS3 material exemplifies the Li-ion storage mechanism in transition metal phosphorus sulfide materials and provides insights into the challenges associated with achieving reliable, high-energy phosphorus trisulfide systems.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.1c19963