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Electrocatalytic Seawater Splitting
Seawater electrolysis opens a new opportunity to lower the cost of hydrogen production from current water electrolysis technologies. However, due to... -
Photovoltaic Electrocatalytic Seawater Splitting
Hydrogen generation through photovoltaic electrocatalytic seawater splitting is a highly desirable for economically and cleanly harvesting solar... -
Solid Bi2O3-derived nanostructured metallic bismuth with high formate selectivity for the electrocatalytic reduction of CO2
CO 2 electrochemical reduction (CO 2 ER) is an important research area for carbon neutralization. However, available catalysts for CO 2 reduction are...
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In situ structural evolution of BiOCOOH nanowires and their performance towards electrocatalytic CO2 reduction
Bismuth-based materials have attracted broad research interest as catalysts for electrocatalytic CO 2 reduction (ECR) to formate in recent years. Most...
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Interstitial Sn-do** promotes electrocatalytic CO2-to-formate conversion on bismuth
Electrochemical CO 2 reduction (CO 2 RR) is a promising technology to mitigate the greenhouse effect and convert CO 2 to value-added chemicals. Yet,...
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Recent advances in electrocatalytic seawater splitting
AbstractElectrocatalytic water splitting as a green chemical process to evolve H 2 has increasingly attracted attention. Using fresh water as the...
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Unveiling structural evolution of Fe single atom catalyst in nitrate reduction for enhanced electrocatalytic ammonia synthesis
Atomic transition metal–nitrogen–carbon electrocatalysts exhibit outstanding activity in various electrocatalytic reactions. The challenge lies in...
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Recent advances in glycerol valorization through electrocatalytic methods
The recent tremendous growth of biodiesel production from vegetable oils or waste fats has led to increased glycerol accumulation as a by-product of...
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Synergistic effect between Er-doped MoS2 nanosheets and interfacial Mo–N coupling phases for enhanced electrocatalytic hydrogen evolution
Hydrogen production via electrochemical water splitting is a promising and green technology. As one of the most representative transition metal...
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Heterostructure Cu3P−Ni2P/CP catalyst assembled membrane electrode for high-efficiency electrocatalytic nitrate to ammonia
Electrochemical nitrate reduction reaction (NO 3 RR) is a promising means for generating the energy carrier ammonia. Herein, we report the synthesis of...
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Mesoporous MnO2 nanosheets for efficient electrocatalytic nitrogen reduction via high spin polarization induced by oxygen vacancy
The electrochemical N 2 reduction reaction (NRR) represents a green and sustainable route for NH 3 synthesis under ambient conditions. However, the...
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Synergistically tuning intermediate adsorption and promoting water dissociation to facilitate electrocatalytic nitrate reduction to ammonia over nanoporous Ru-doped Cu catalyst
Electrochemical nitrate reduction reaction (NO 3 RR) for ammonia generation has garnered attention as an emerging alternative to the energy intensive...
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Rational coordination regulation in carbon-based single-metal-atom catalysts for electrocatalytic oxygen reduction reaction
Single-metal-atom catalysts (SMACs) have garnered extensive attention for various electrocatalytic applications, owing to their maximum...
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Enhanced electrocatalytic CO2 reduction to formic acid using nanocomposites of In2O3@C with graphene
In 2 O 3 is an effective electrocatalyst to convert CO 2 to formic acid (HCOOH), but its inherent poor electrical conductivity limits the efficient...
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Bimetallic chalcogenides for electrocatalytic CO2 reduction
Electrocatalytic CO 2 reduction reaction (CO 2 RR) converts CO 2 into valuable chemical fuels, which can effectively alleviate global warming and energy...
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Fe2Mo3O8/XC-72 electrocatalyst for enhanced electrocatalytic nitrogen reduction reaction under ambient conditions
To perform the electrochemical nitrogen reduction reaction (NRR) under milder conditions for sustainable ammonia production, electrocatalysts should...
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Site difference influence of anchored Ru in mesoporous carbon on electrocatalytic performance toward pH-universal hydrogen evolution reaction
Ru-based electrocatalysts have demonstrated excellent electrocatalytic performance toward hydrogen evolution reaction (HER). However, designing Ru...
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Five-fold twinned Ir-alloyed Pt nanorods with high C1 pathway selectivity for ethanol electrooxidation
Develo** efficient and robust electrocatalysts toward ethanol oxidation reaction (EOR) with high C1 pathway selectivity is critical for...
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Alliance of atomic-scale/nanoscale Fe/Co active sites with hierarchically porous N-doped carbon frameworks for efficient electrocatalytic oxygen reduction
Ingenious establishment of transition metal–nitrogen–carbon electrocatalysts with diverse catalytic active sites and hierarchically porous frameworks...
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Pd-Sn alloy nanoparticles for electrocatalytic methanol oxidation: Phase evolution from solid solution to intermetallic compounds
Develo** efficient catalysts with high activity and durability via alloying strategy is essential to the energy conversion in various...