4.8 Article

Controllable Preparation of Square Nickel Chalcogenide (NiS and NiSe2) Nanoplates for Superior Li/Na Ion Storage Properties

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 8, Issue 38, Pages 25261-25267

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b07300

Keywords

2D MOF; nickel chalcogenides; square nanoplate; Li-ion batteries; Na-ion batteries

Funding

  1. Singapore MOE AcRF grants [RG2/13, RG113/15]

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A facile and bottom-up approach has been presented to prepare 2D Ni-MOFs based on cyanide-bridged hybrid coordination polymers. After thermally induced sulfurization and selenization processes, Ni-MOFs were successfully converted into NiS and NiSe2 nanoplates with carbon coating due to the decomposition of its organic parts. When evaluated as anodes of Li-ion batteries (LIBs) and Na-ion batteries (NIBs), NiS and NiSe2 nanoplates show high specific capacities, excellent rate capabilities, and stable cycling stability. The NiS plates show good Li storage properties, while NiSe2 plates show good Na storage properties as anode materials. The study of the diffusivity of Li+ in NiS and Na+ in NiSe2 shows consistent results with their Li/Na storage properties. The 2D MoFs-derived NiS and NiSe2 nanoplates reported in this work explore a new approach for the large-scale synthesis of 2D metal sulfides or selenides with potential applications for advanced energy storage.

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