Porous molybdenum carbide nano-octahedrons synthesized via confined carburization in metal-organic frameworks for efficient hydrogen production
Пористые нано-октаэдры карбида молибдена, синтезированные методом ограниченной карбюризации в металлоорганических каркасах для эффективного производства водорода
2015-03-11
SCID: 54.1/f5n9e8mn
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confined carburization in metal-organic frameworkselectrocatalytic hydrogen evolution (HER)metal-organic frameworks-assisted synthesismolybdenum-based polyoxometalatesporous molybdenum carbide nano-octahedrons
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Abstract (AI)
Electrochemical water splitting has been considered as a promising approach to produce clean and sustainable hydrogen fuel. However, the lack of high-performance and low-cost electrocatalysts for hydrogen evolution reaction hinders the large-scale application. As a new class of porous materials with tunable structure and composition, metal-organic frameworks have been considered as promising candidates to synthesize various functional materials. Here we demonstrate a metal-organic frameworks-assisted strategy for synthesizing nanostructured transition metal carbides based on the confined carburization in metal-organic frameworks matrix. Starting from a compound consisting of copper-based metal-organic frameworks host and molybdenum-based polyoxometalates guest, mesoporous molybdenum carbide nano-octahedrons composed of ultrafine nanocrystallites are successfully prepared as a proof of concept, which exhibit remarkable electrocatalytic performance for hydrogen production from both acidic and basic solutions. The present study provides some guidelines for the design and synthesis of nanostructured electrocatalysts.
Key Findings
1
A MOF-assisted confined carburization strategy was developed to synthesize nanostructured transition metal carbides.
2
Mesoporous molybdenum carbide nano-octahedrons composed of ultrafine nanocrystallites were successfully prepared from a Cu-based MOF host and Mo-based polyoxometalate guest.
3
The approach demonstrates that MOF matrices can be used to tune structure and composition of carbide electrocatalysts, providing design guidelines for nanostructured electrocatalyst synthesis.
4
The synthesized porous Mo2C nano-octahedrons exhibit remarkable electrocatalytic performance for hydrogen evolution in both acidic and basic solutions.
Research Object
Mesoporous molybdenum carbide nano-octahedrons synthesized via confined carburization in metal-organic frameworks
Research Subject
Electrocatalytic performance for hydrogen evolution (HER) in acidic and basic aqueous solutions
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2015-03-11
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