Literature DB >> 31950961

Light and complex 3D MoS2/graphene heterostructures as efficient catalysts for the hydrogen evolution reaction.

Jonah Teich1, Ravit Dvir1, Alex Henning2, Eliran R Hamo1, Michael J Moody2, Titel Jurca3, Hagai Cohen4, Tobin J Marks5, Brian A Rosen1, Lincoln J Lauhon2, Ariel Ismach1.   

Abstract

Multi-component 3D porous structures are highly promising hierarchical materials for numerous applications. Herein we show that atomic-layer deposition (ALD) of MoS2 on graphene foams with variable pore size is a promising methodology to prepare complex 3D heterostructures to be used as electrocatalysts for the hydrogen evolution reaction (HER). The effect of MoS2 crystallinity is studied and a trade-off between the high density of defects naturally presented in amorphous MoS2 coatings and the highly crystalline phase obtained after annealing at 800 °C is established. Specifically, an optimal annealing at 500 °C is shown to yield improved catalytic performance with an overpotential of 180 mV, a low Tafel slope of 47 mV dec-1, and a high exchange current of 17 μA cm-2. The ALD deposition is highly conformal, and thus advantageous when coating 3D porous structures with small pore sizes, as required for real-world applications. This approach is enabled by conformal thin film deposition on porous structures with controlled crystallinity by tuning the annealing temperature. The results presented here therefore serve as an effective and general platform for the design of chemically and structurally tunable, binder-free, complex, lightweight, and highly efficient 3D porous heterostructures to be used for catalysis, energy storage, composite materials, sensors, water treatment, and more.

Entities:  

Year:  2020        PMID: 31950961     DOI: 10.1039/c9nr09564k

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  2 in total

1.  Nickel foam supported porous copper oxide catalysts with noble metal-like activity for aqueous phase reactions.

Authors:  Lorianne R Shultz; Konstantin Preradovic; Suvash Ghimire; Hayden M Hadley; Shaohua Xie; Varchaswal Kashyap; Melanie J Beazley; Kaitlyn E Crawford; Fudong Liu; Kausik Mukhopadhyay; Titel Jurca
Journal:  Catal Sci Technol       Date:  2022-04-01       Impact factor: 6.177

2.  Stabilizing an ultrathin MoS2 layer during electrocatalytic hydrogen evolution with a crystalline SnO2 underlayer.

Authors:  Jonas Englhard; Yuanyuan Cao; Sebastian Bochmann; Maïssa K S Barr; Stéphane Cadot; Elsje Alessandra Quadrelli; Julien Bachmann
Journal:  RSC Adv       Date:  2021-05-18       Impact factor: 3.361

  2 in total

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