The preparation of an MoS2–polymer carbon nanodot (MoS2-PCND) hybrid material was accomplished by employing an easy and fast bottom-up synthetic approach. Specifically, MoS2-PCND was realized by the thermal decomposition of ammonium tetrathiomolybdate and the in situ complexation of Mo with carboxylic acid units present on the surface of PCNDs. The newly prepared hybrid material was comprehensively characterized by spectroscopy, thermal means, and electron microscopy. The electrocatalytic activity of MoS2-PCND was examined in the hydrogen evolution reaction (HER) and compared with that of the corresponding hybrid material prepared by a top-down approach, namely MoS2-PCND(exf-fun), in which MoS2 was firstly exfoliated and then covalently fun...
Pt and Ir are the popular catalysts for electrochemical water splitting, but their low abundance ...
Though MoS2 has been regarded a promising alternative to Pt for catalyzing hydrogen evolution reacti...
Designing high efficient and noble metal-free bifunctional electrocatalysts for both hydrogen and ox...
The preparation of an MoS2–polymer carbon nanodot (MoS2-PCND) hybrid material was accomplished by em...
Molybdenum disulfide (MoS2) is considered a low-cost material that may replace platinum -based elect...
The design and development of inexpensive highly efficient electrocatalysts for hydrogen production ...
Transition metal dichalcogenides, especially MoS2, are considered as promising electrocatalysts for ...
Designing a MoS2 catalyst having a large number of active sites and high site activity enables the c...
Edge-oriented MoS2 nanopetals complexed with basal-oriented MoS2 thin films have been mildly grown t...
The production of cost-effective catalysts for the production of hydrogen by electrolysis of water i...
Nano-structured molybdenum disulfide (MoS2) catalysts have been extensively developed for the hydrog...
Hydrogen is an efficient fuel which can be generated via water splitting, however hydrogen evolution...
The sandwich-like 2H MoS2 and unilaminar graphitic nanocarbon hybrid was synthesized via graphitizin...
© The Royal Society of Chemistry 2020. Molybdenum disulfide (MoS2) can be an efficient electro-catal...
Available online 29 May 2017A new composite material consisting of 0D MoS2 nanodots and 3D MoS2 nano...
Pt and Ir are the popular catalysts for electrochemical water splitting, but their low abundance ...
Though MoS2 has been regarded a promising alternative to Pt for catalyzing hydrogen evolution reacti...
Designing high efficient and noble metal-free bifunctional electrocatalysts for both hydrogen and ox...
The preparation of an MoS2–polymer carbon nanodot (MoS2-PCND) hybrid material was accomplished by em...
Molybdenum disulfide (MoS2) is considered a low-cost material that may replace platinum -based elect...
The design and development of inexpensive highly efficient electrocatalysts for hydrogen production ...
Transition metal dichalcogenides, especially MoS2, are considered as promising electrocatalysts for ...
Designing a MoS2 catalyst having a large number of active sites and high site activity enables the c...
Edge-oriented MoS2 nanopetals complexed with basal-oriented MoS2 thin films have been mildly grown t...
The production of cost-effective catalysts for the production of hydrogen by electrolysis of water i...
Nano-structured molybdenum disulfide (MoS2) catalysts have been extensively developed for the hydrog...
Hydrogen is an efficient fuel which can be generated via water splitting, however hydrogen evolution...
The sandwich-like 2H MoS2 and unilaminar graphitic nanocarbon hybrid was synthesized via graphitizin...
© The Royal Society of Chemistry 2020. Molybdenum disulfide (MoS2) can be an efficient electro-catal...
Available online 29 May 2017A new composite material consisting of 0D MoS2 nanodots and 3D MoS2 nano...
Pt and Ir are the popular catalysts for electrochemical water splitting, but their low abundance ...
Though MoS2 has been regarded a promising alternative to Pt for catalyzing hydrogen evolution reacti...
Designing high efficient and noble metal-free bifunctional electrocatalysts for both hydrogen and ox...