| Literature DB >> 35014781 |
Christopher Choi1, David Ashby1,2, You Rao3, Elaf Anber4,5, James L Hart4, Danielle Butts1, Catrina Wilson3, Emily Levin6, Mitra Taheri4, Maryam Ghazisaeidi3, Bruce Dunn1, Vicky Doan-Nguyen3,7.
Abstract
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.Entities:
Keywords: 2D materials; Li-ion insertion mechanism; conversion reactions; intercalation reactions; metal phosphorus trichalcogenides
Year: 2022 PMID: 35014781 DOI: 10.1021/acsami.1c19963
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229