Fast electrosynthesis of Fe-containing layered double hydroxide arrays toward highly efficient electrocatalytic oxidation reactions.
about
An aqueous preoxidation method for monolithic perovskite electrocatalysts with enhanced water oxidation performanceMo6+ activated multimetal oxygen-evolving catalysts.Layered host-guest long-afterglow ultrathin nanosheets: high-efficiency phosphorescence energy transfer at 2D confined interface.A nickel iron diselenide-derived efficient oxygen-evolution catalyst.A Highly Efficient Oxygen Evolution Catalyst Consisting of Interconnected Nickel-Iron-Layered Double Hydroxide and Carbon Nanodomains.Reduced Graphene Oxide-Wrapped Co9-x Fex S8 /Co,Fe-N-C Composite as Bifunctional Electrocatalyst for Oxygen Reduction and Evolution.A Copper Porphyrin-Based Conjugated Mesoporous Polymer-Derived Bifunctional Electrocatalyst for Hydrogen and Oxygen Evolution.Strong Fe3+-O(H)-Pt Interfacial Interaction Induced Excellent Stability of Pt/NiFe-LDH/rGO Electrocatalysts.Nitrogen-doped carbon encapsulating γ-MoC/Ni heterostructures for efficient oxygen evolution electrocatalysts.Self-Supported Cu-Based Nanowire Arrays as Noble-Metal-Free Electrocatalysts for Oxygen Evolution.Layered double hydroxides toward electrochemical energy storage and conversion: design, synthesis and applications.Ultrathin layered double hydroxide nanosheets with Ni(III) active species obtained by exfoliation for highly efficient ethanol electrooxidation.High-performance bifunctional porous non-noble metal phosphide catalyst for overall water splitting.Corrosion engineering towards efficient oxygen evolution electrodes with stable catalytic activity for over 6000 hours.Remarkably enhanced water splitting activity of nickel foam due to simple immersion in a ferric nitrate solutionA ‘point–line–point’ hybrid electrocatalyst for bi-functional catalysis of oxygen evolution and reduction reactionsAdvances in Hybrid Electrocatalysts for Oxygen Evolution Reactions: Rational Integration of NiFe Layered Double Hydroxides and NanocarbonGuest–host modulation of multi-metallic (oxy)hydroxides for superb water oxidationDual-sized NiFe layered double hydroxides in situ grown on oxygen-decorated self-dispersal nanocarbon as enhanced water oxidation catalystsVertically oriented cobalt selenide/NiFe layered-double-hydroxide nanosheets supported on exfoliated graphene foil: an efficient 3D electrode for overall water splitting
P2860
Q28596740-7812E3F0-B9AF-43B0-8BC2-758D4A40441FQ33640214-2862F655-9B8B-43DC-8D14-1D9A9AFD07E3Q37711856-7D779F8F-450A-4109-8631-61C66C936BDBQ41863953-91A83AC7-E482-4606-A3B6-823221017351Q47262955-3A9E85CE-63E0-491C-BE09-06DE7FC060EFQ48043936-4F4B08A9-DD2E-4944-B19B-1220D60757EEQ48054957-FCF18E8B-C2A5-46CA-A3ED-F8453539A13BQ49179764-3ACBC06C-01B6-486E-B9C0-6B87E8A70F4CQ50730566-7633FED9-C48F-4676-AFC6-9DF068ECA022Q51240388-A880E80D-5645-4042-A212-28C55EA11147Q51688822-0F87A7EC-6E5E-4939-8A93-8CD30392BE85Q52603771-C512C792-72D7-44AE-B2C4-1DCC774C662EQ55396521-691DE89F-D6D0-4CED-9F90-FF233962D5D8Q55519184-D9439CCD-D06C-4E0D-8D4E-C1C8600827B8Q57632920-FEA84F9C-526B-4336-B2ED-EBCBEE4A0FF1Q57754499-B940960C-E578-4F0B-B4B2-BF664D58EF11Q57754506-C5B9F167-5385-417D-AEEA-C6CCAEB31946Q57754547-8AB28413-D9A0-4FAB-A59C-F02A32F8E911Q57754630-3041160E-A28A-4980-B01C-92195A4A567CQ58338232-A46E968F-C0C0-409E-B9D2-523E2CE18D69
P2860
Fast electrosynthesis of Fe-containing layered double hydroxide arrays toward highly efficient electrocatalytic oxidation reactions.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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name
Fast electrosynthesis of Fe-co ...... catalytic oxidation reactions.
@en
Fast electrosynthesis of Fe-co ...... catalytic oxidation reactions.
@nl
type
label
Fast electrosynthesis of Fe-co ...... catalytic oxidation reactions.
@en
Fast electrosynthesis of Fe-co ...... catalytic oxidation reactions.
@nl
prefLabel
Fast electrosynthesis of Fe-co ...... catalytic oxidation reactions.
@en
Fast electrosynthesis of Fe-co ...... catalytic oxidation reactions.
@nl
P2093
P2860
P356
P1433
P1476
Fast electrosynthesis of Fe-co ...... catalytic oxidation reactions.
@en
P2093
David G Evans
Mingfei Shao
Zhenhua Li
Zixuan Wang
P2860
P304
P356
10.1039/C5SC02417J
P577
2015-08-12T00:00:00Z