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Qingfu Zeng, Gongyao Nie, Lanhua Yi, Jiawei Wan, Xingzhu Wang
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The Evolution and Future of Earth’s Nitrogen Cycle
10.1126/science.1186120 · 2010
Transformation of the Nitrogen Cycle: Recent Trends, Questions, and Potential Solutions
10.1126/science.1136674 · 2008
Renaissance of Ammonia Synthesis for Sustainable Production of Energy and Fertilizers
10.1016/j.cogsc.2021.100466 · 2021
Bi-Atom Electrocatalyst for Electrochemical Nitrogen Reduction Reactions
10.1007/s40820-021-00638-y · 2021
Electrochemical Ammonia Synthesis and Ammonia Fuel Cells
10.1002/adma.201805173 · 2019
Ammonia: A Versatile Candidate for the Use in Energy Storage Systems
10.1016/j.renene.2022.06.015 · 2022
Exploring the Alternatives of Biological Nitrogen Fixation
10.1039/c8mt00038g · 2018
Dinitrogen Coordination Chemistry: On the Biomimetic Borderlands
10.1021/cr020610c · 2004
Ammonia and Nitric Acid Demands for Fertilizer Use in 2050
10.1021/acsenergylett.1c01614 · 2021
MoS2 Polymorphic Engineering Enhances Selectivity in the Electrochemical Reduction of Nitrogen to Ammonia
Provenance
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Confidence 100%
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10.1021/acsenergylett.8b02257 · 2019
Detonator of the Population Explosion
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Review on Photocatalytic and Electrocatalytic Artificial Nitrogen Fixation for Ammonia Synthesis at Mild Conditions: Advances, Challenges and Perspectives
10.1007/s12274-018-2268-5 · 2019
Catalysts for Nitrogen Reduction to Ammonia
10.1038/s41929-018-0092-7 · 2018
Recent Advances in Electrocatalytic Ammonia Synthesis
10.1016/s1872-2067(23)64464-x · 2023
Biomimetic FeMo(Se, Te) as Joint Electron Pool Promoting Nitrogen Electrofixation
10.1002/anie.202115198 · 2022
Battery-Driven N2 Electrolysis Enabled by High-Entropy Catalysts: From Theoretical Prediction to Prototype Model
10.1002/smll.202106358 · 2022
Binary and Ternary Doping of Nitrogen, Boron, and Phosphorus into Carbon for Enhancing Electrochemical Oxygen Reduction Activity
10.1021/nn3021234 · 2012
Identification of Catalytic Sites for Oxygen Reduction and Oxygen Evolution in N-Doped Graphene Materials: Development of Highly Efficient Metal-Free Bifunctional Electrocatalyst
10.1126/sciadv.1501122 · 2016
Enhanced N2-to-NH3 Conversion Efficiency on Cu3P Nanoribbon Electrocatalyst
10.1007/s12274-022-4568-z · 2022
Nitrogen-Coordinated Single Cobalt Atom Catalysts for Oxygen Reduction in Proton Exchange Membrane Fuel Cells
10.1002/adma.201706758 · 2018
A Pyrolysis-Phosphorization Approach to Fabricate Carbon Nanotubes with Embedded CoP Nanoparticles for Ambient Electrosynthesis of Ammonia
10.1039/c9cc06385d · 2019
Modulation of Surface Properties on Cobalt Phosphide for High-Performance Ambient Ammonia Electrosynthesis
10.1016/j.apcatb.2021.120874 · 2022
Alkylthiol Surface Engineering: An Effective Strategy toward Enhanced Electrocatalytic N2-to-NH3 Fixation by a CoP Nanoarray
10.1039/d1ta02424h · 2021
Electrocatalytic Synthesis of Ammonia at Room Temperature and Atmospheric Pressure from Water and Nitrogen on a Carbon Nanotube Based Electrocatalyst
10.1002/anie.201609533 · 2017
Rational Design of Transition Metal-Based Materials for Highly Efficient Electrocatalysis
10.1002/smtd.201800211 · 2019
Isolated Single-atom Pd Sites in Intermetallic Nanostructures: High Catalytic Selectivity for Semihydrogenation of Alkynes
10.1021/jacs.7b01471 · 2017
C2+ Selectivity for CO2 Electroreduction on Oxidized Cu-Based Catalysts
10.1021/jacs.3c03022 · 2023
A Review of Transition Metal Boride, Carbide, Pnictide, and Chalcogenide Water Oxidation Electrocatalysts
10.1021/acs.chemrev.3c00005 · 2023
The Surface States of Transition Metal X-Ides under Electrocatalytic Conditions
10.1063/5.0147123 · 2023
Tuning Coordination Structures of Zn Sites Through Symmetry-Breaking Accelerates Electrocatalysis
10.1002/adma.202306687 · 2024
Density-Functional Theory Study of Dimethyl Carbonate Synthesis by Methanol Oxidative Carbonylation on Single-Atom Cu1/Graphene Catalyst
10.1016/j.apsusc.2017.07.002 · 2017
Density-Functional Theory Study of Dimethyl Carbonate Synthesis by Methanol Oxidative Carbonylation on Single-Atom Cu1/Graphene Catalyst
10.1016/j.apsusc.2017.07.002 · doi-reference
Tuning Coordination Structures of Zn Sites Through Symmetry-Breaking Accelerates Electrocatalysis
10.1002/adma.202306687 · doi-reference
The Surface States of Transition Metal X-Ides under Electrocatalytic Conditions
10.1063/5.0147123 · doi-reference
A Review of Transition Metal Boride, Carbide, Pnictide, and Chalcogenide Water Oxidation Electrocatalysts
10.1021/acs.chemrev.3c00005 · doi-reference
C2+ Selectivity for CO2 Electroreduction on Oxidized Cu-Based Catalysts
10.1021/jacs.3c03022 · doi-reference
Isolated Single-atom Pd Sites in Intermetallic Nanostructures: High Catalytic Selectivity for Semihydrogenation of Alkynes
10.1021/jacs.7b01471 · doi-reference
Rational Design of Transition Metal-Based Materials for Highly Efficient Electrocatalysis
10.1002/smtd.201800211 · doi-reference
Electrocatalytic Synthesis of Ammonia at Room Temperature and Atmospheric Pressure from Water and Nitrogen on a Carbon Nanotube Based Electrocatalyst
10.1002/anie.201609533 · doi-reference
Alkylthiol Surface Engineering: An Effective Strategy toward Enhanced Electrocatalytic N2-to-NH3 Fixation by a CoP Nanoarray
10.1039/d1ta02424h · doi-reference
Modulation of Surface Properties on Cobalt Phosphide for High-Performance Ambient Ammonia Electrosynthesis
10.1016/j.apcatb.2021.120874 · doi-reference
A Pyrolysis-Phosphorization Approach to Fabricate Carbon Nanotubes with Embedded CoP Nanoparticles for Ambient Electrosynthesis of Ammonia
10.1039/c9cc06385d · doi-reference
Nitrogen-Coordinated Single Cobalt Atom Catalysts for Oxygen Reduction in Proton Exchange Membrane Fuel Cells
10.1002/adma.201706758 · doi-reference
Enhanced N2-to-NH3 Conversion Efficiency on Cu3P Nanoribbon Electrocatalyst
10.1007/s12274-022-4568-z · doi-reference
Identification of Catalytic Sites for Oxygen Reduction and Oxygen Evolution in N-Doped Graphene Materials: Development of Highly Efficient Metal-Free Bifunctional Electrocatalyst
10.1126/sciadv.1501122 · doi-reference
Binary and Ternary Doping of Nitrogen, Boron, and Phosphorus into Carbon for Enhancing Electrochemical Oxygen Reduction Activity
10.1021/nn3021234 · doi-reference
Battery-Driven N2 Electrolysis Enabled by High-Entropy Catalysts: From Theoretical Prediction to Prototype Model
10.1002/smll.202106358 · doi-reference
Biomimetic FeMo(Se, Te) as Joint Electron Pool Promoting Nitrogen Electrofixation
10.1002/anie.202115198 · doi-reference
Recent Advances in Electrocatalytic Ammonia Synthesis
10.1016/s1872-2067(23)64464-x · doi-reference
Catalysts for Nitrogen Reduction to Ammonia
10.1038/s41929-018-0092-7 · doi-reference
Review on Photocatalytic and Electrocatalytic Artificial Nitrogen Fixation for Ammonia Synthesis at Mild Conditions: Advances, Challenges and Perspectives
10.1007/s12274-018-2268-5 · doi-reference
Detonator of the Population Explosion
10.1038/22672 · doi-reference
MoS2 Polymorphic Engineering Enhances Selectivity in the Electrochemical Reduction of Nitrogen to Ammonia
10.1021/acsenergylett.8b02257 · doi-reference
Ammonia and Nitric Acid Demands for Fertilizer Use in 2050
10.1021/acsenergylett.1c01614 · doi-reference
Dinitrogen Coordination Chemistry: On the Biomimetic Borderlands
10.1021/cr020610c · doi-reference
Exploring the Alternatives of Biological Nitrogen Fixation
10.1039/c8mt00038g · doi-reference
Ammonia: A Versatile Candidate for the Use in Energy Storage Systems
10.1016/j.renene.2022.06.015 · doi-reference
Electrochemical Ammonia Synthesis and Ammonia Fuel Cells
10.1002/adma.201805173 · doi-reference
Bi-Atom Electrocatalyst for Electrochemical Nitrogen Reduction Reactions
10.1007/s40820-021-00638-y · doi-reference
Renaissance of Ammonia Synthesis for Sustainable Production of Energy and Fertilizers
10.1016/j.cogsc.2021.100466 · doi-reference
Transformation of the Nitrogen Cycle: Recent Trends, Questions, and Potential Solutions
10.1126/science.1136674 · doi-reference
The Evolution and Future of Earth’s Nitrogen Cycle
10.1126/science.1186120 · doi-reference