4.2 Article

Efficient cationic agents for exfoliating two-dimensional nickel oxide sheets

Journal

THEORETICAL CHEMISTRY ACCOUNTS
Volume 137, Issue 1, Pages -

Publisher

SPRINGER
DOI: 10.1007/s00214-017-2175-y

Keywords

DFT; Two-dimensional materials; Exfoliation

Funding

  1. Nancy and Stephen Grand Technion Energy Program (GTEP)
  2. I-CORE Program of the Planning and Budgeting Committee
  3. Israel Science Foundation [152/11]
  4. SPIRA Fund for Applied Research in the Field of Energy
  5. Ministry of Science and Technology (MOST), Israel
  6. post Link-SCEEM-2 project
  7. European Commission under the 7th Framework Program through the Capacities Research nfrastructure, Virtual Research Communities, Combination of Collaborative Project and Coordination and Support Actions (CP-CSA) [INFRA-2010-1.2.3, RI-261600]
  8. Israel Ministry of Aliyah and Immigrant Absorption
  9. Lady Davis fellowship
  10. GTEP fellowship

Ask authors/readers for more resources

Two-dimensional catalysis is a very active research area in recent years. Water splitting catalysis may be achieved with the outstanding efficiency of the nickel oxyhydroxide (NiOOH) catalyst. NiOOH is a layered material, which constitutes of partially hydrogenated nickel oxide (NiO2) layers that are stacked together with the possible intercalation of water and electrolyte species. Recently, various studies have reported that NiO single sheets could be prepared and exhibit interesting photocatalytic properties. However, there is a lack of knowledge in developing efficient exfoliation processes adapted to such materials. We investigate with density functional theory the effect of intercalating cations, which is a strategy demonstrated recently to be efficient for exfoliation of various metal oxides. We observed that earth-alkali cations significantly increase the strength and amount of H bonds and inhibit exfoliation. Hence, we conclude that small alkali species are preferable for an exfoliation process of NiOOH.

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