4.8 Article

Aqueous Cathodic Exfoliation Strategy toward Solution-Processable and Phase-Preserved MoS2 Nanosheets for Energy Storage and Catalytic Applications

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 11, 期 40, 页码 36991-37003

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b13484

关键词

two-dimensional material; transition-metal dichalcogenides; MoS2; electrochemical exfoliation; energy storage; catalysis

资金

  1. Spanish Ministerio de Economia y Competitividad (MINECO)
  2. European Regional Development Fund (ERDF) [MAT2015-69844-R]
  3. Spanish Ministerio de Ciencia, Innovacion y Universidades
  4. ERDF [RTI2018-100832-B400, IDI/2018/000233]
  5. Plan de Ciencia, Tecnologia e Innovacion (PCTI) 2013-2017 del Principado de Asturias
  6. Spanish MINECO [BES/2016 077830, MAT2016-78155-C2-1-R]
  7. Ministerio de Education, Cultura y Deporte (MECD) [FPU14/00792]
  8. Government of the Principality of Asturias [GRUPIN-IDI/2018/170]

向作者/读者索取更多资源

The production of MoS2 nanosheets by electrochemical exfoliation routes holds great promise as a means to access this two-dimensional material in large quantities for different practical applications. However, the use of electrolytes based on synthetic organic salts and solvents, as well as issues related to the unwanted oxidation and/or phase transformation of the exfoliated nanosheets, constitute significant obstacles that hinder the industrial adoption of the electrochemical approach. Here, we introduce a safe and sustainable method for the cathodic delamination of MoS2 that makes use of aqueous solutions of very simple and widely available salts, mainly KCI, as the electrolyte. Combined with an appropriate biomoleculebased solvent transfer protocol, such an electrolytic exfoliation route is shown to afford colloidally dispersed, oxide-free, and phase-preserved MoS2 nanosheets of high structural quality in considerable yields. The mechanisms behind the efficient aqueous delamination of the bulk MoS2 cathode are also discussed and rationalized on the basis of the penetration of hydrated cations from the electrolyte between its layers and the immediate reduction of the accompanying water molecules. An asymmetric supercapacitor assembled with a cathodic MoS2 nanosheet single walled carbon nanotube hybrid as the positive electrode and activated carbon as the negative electrode delivered energy densities (e.g., 26 W h kg(-1) at 750 W kg(-1) in 6 M KOH) that were competitive with those of other MoS2-based asymmetric devices. When used as a catalyst for the reduction of nitroarenes, the present cathodically exfoliated nanosheets exhibited one of the highest activities reported so far with MoS2 nanostructures, the origin of which is accounted for as well. Overall, by facilitating access to this two-dimensional material through a particularly simple, efficient, and cost-effective technique, these results should expedite the practical implementation of MoS2 nanosheets in energy storage, catalysis, and beyond.

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