Solar water splitting provides a promising path for sustainable hydrogen production and solar energy storage. In recent times, metal–organic frameworks (MOFs) have received considerable attention as promising materials for diverse solar energy conversion applications. However, their photocatalytic performance is poor and rarely explored due to rapid electron–hole recombination. Herein, we have developed a material MOF@rGO that exhibits highly enhanced visible-light photocatalytic activity. A real-time investigation reveals that a strong π–π interaction between MOF and rGO is responsible for efficient separation of electron–hole pairs, and thereby enhances the photocatalytic hydrogen production activity. Surprisingly, MOF@rGO showed ∼9.1-fol...
We report the use of two earth abundant molybdenum sulfide-based cocatalysts, Mo3S132- clusters and ...
The fascinating chemical and physical properties of MOFs have recently stimulated exploration of the...
International audienceThe immobilization of polyoxometalates (POMs) near catalytic centers of metal–...
Amongst many strategies for renewable energy conversion, light-driven water splitting to produce cle...
Solar‐driven water splitting is a promising way to produce renewable hydrogen. The design of efficie...
Metal organic frameworks (MOFs) have attracted great interest in photocatalysis, but their activity ...
The development of clean and renewable energy materials as alternatives to fossil fuels is foreseen ...
Metal–organic frameworks (MOFs) have emerged as novel scaffolds for artificial photosynthesis due to...
A strategy for enhancing the photocatalytic performance of MOF- based systems (MOF: metal-organic fr...
There is an increasing interest in developing cost-effective technologies to produce hydrogen from s...
Defect engineering using surface linkage modification is an efficient method to tailor solar-to-chem...
Highly-efficient photocatalytic conversion of CO2 into valuable carbon-contained chemicals possesses...
Abstract The application of metal–organic framework (MOF) in the field of photocatalysis is limited,...
Abstract Artificial photosynthesis is an emerging and reliable technique for CO2 mitigation, and it...
Metal-organic frameworks (MOFs) are promising materials for the photocatalytic H2 evolution reaction...
We report the use of two earth abundant molybdenum sulfide-based cocatalysts, Mo3S132- clusters and ...
The fascinating chemical and physical properties of MOFs have recently stimulated exploration of the...
International audienceThe immobilization of polyoxometalates (POMs) near catalytic centers of metal–...
Amongst many strategies for renewable energy conversion, light-driven water splitting to produce cle...
Solar‐driven water splitting is a promising way to produce renewable hydrogen. The design of efficie...
Metal organic frameworks (MOFs) have attracted great interest in photocatalysis, but their activity ...
The development of clean and renewable energy materials as alternatives to fossil fuels is foreseen ...
Metal–organic frameworks (MOFs) have emerged as novel scaffolds for artificial photosynthesis due to...
A strategy for enhancing the photocatalytic performance of MOF- based systems (MOF: metal-organic fr...
There is an increasing interest in developing cost-effective technologies to produce hydrogen from s...
Defect engineering using surface linkage modification is an efficient method to tailor solar-to-chem...
Highly-efficient photocatalytic conversion of CO2 into valuable carbon-contained chemicals possesses...
Abstract The application of metal–organic framework (MOF) in the field of photocatalysis is limited,...
Abstract Artificial photosynthesis is an emerging and reliable technique for CO2 mitigation, and it...
Metal-organic frameworks (MOFs) are promising materials for the photocatalytic H2 evolution reaction...
We report the use of two earth abundant molybdenum sulfide-based cocatalysts, Mo3S132- clusters and ...
The fascinating chemical and physical properties of MOFs have recently stimulated exploration of the...
International audienceThe immobilization of polyoxometalates (POMs) near catalytic centers of metal–...