4.4 Review

Research Progress of Transition Metal Anode Catalysts for Direct Borohydride Fuel Cells

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Cobalt nickel boride nanocomposite as high-performance anode catalyst for direct borohydride fuel cell

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Summary: The article introduces a unique cobalt nickel boride nanocomposite with outstanding catalytic activity and long-term durability for borohydride electrooxidation reaction. This nanocomposite achieved high power density in a miniature direct borohydride fuel cell and has the potential for cost reduction and scale-up production.

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Efficient nickel catalyst with preferred orientation and microsphere for direct borohydride fuel cell

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Summary: In this study, Ni catalysts with preferred orientation and microsphere structure were fabricated using a simple one-step pulsed voltage electrodeposition method, and their crystal plane orientation and catalytic activity towards borohydride oxidation reaction (BOR) were systematically investigated. The results showed that adjusting the pulse anode potential can effectively control the morphology and crystal plane orientation of Ni catalysts. The optimal NiPVE0.15 catalyst exhibited the highest catalytic activity and fuel efficiency.

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An efficient Ni-P amorphous alloy electrocatalyst with a hierarchical structure toward borohydride oxidation

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Summary: This study prepared a Ni and P deposited nickel foam (Ni-P@NF) catalyst electrode with a unique hierarchical structure using a simple one-step electrodeposition method, which showed excellent catalytic activity, stability, and durability during borohydride electrooxidation. The Ni-P@NF catalyst exhibited high current density and fuel utilization in borohydride oxidation, and maintained a high current level even after 500 cycles of CV testing.

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Investigation of carbon supported Pd-Cu nanoparticles as anode catalysts for direct borohydride fuel cell

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The electrocatalytic application of RuO2 in direct borohydride fuel cells

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Ultrafine amorphous Co-W-B alloy as the anode catalyst for a direct borohydride fuel cell

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Graphene supported platinum nanoparticles as anode electrocatalyst for direct borohydride fuel cell

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Developments in direct borohydride fuel cells and remaining challenges

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A direct borohydride fuel cell with a polymer fiber membrane and non-noble metal catalysts

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Electrooxidation of hydrogen peroxide and sodium borohydride on Ni deposited carbon fiber electrode for alkaline fuel cells

Aylin Aytac et al.

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First-principles based microkinetic modeling of borohydride oxidation on a Au(111) electrode

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Improving the direct borohydride fuel cell performance with thiourea as the additive in the sodium borohydride solution

Cenk Celik et al.

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Effects of alkaline treatment of hydrogen storage alloy on electrocatalytic activity for NaBH4 oxidation

Guiling Wang et al.

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Performance of supported Au-Co alloy as the anode catalyst of direct borohydride-hydrogen peroxide fuel cell

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Study of LaCoO3 as a cathode catalyst for a membraneless direct borohydride fuel cell

Yan Liu et al.

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Current status and progress of direct borohydride fuel cell technology development

B. H. Liu et al.

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A simple direct borohydride fuel cell with a cobalt phthalocyanine catalyzed cathode

Jinfu Ma et al.

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Hydrogen storage alloys as the anode materials of the direct borohydride fuel cell

Bin Hong Liu et al.

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Performance enhancement of a direct borohydride fuel cell in practical running conditions

Cheolhwan Kim et al.

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Carbon-supported cobalt catalyst for hydrogen generation from alkaline sodium borohydride solution

Dongyan Xu et al.

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Study of fuel efficiency in a direct borohydride fuel cell

Romain Jamard et al.

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Ni-Pt/C as anode electrocatalyst for a direct borohydride fuel cell

Xiaoying Geng et al.

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Agni-catalyzed anode for direct borohydride fuel cells

R. X. Feng et al.

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Iron phthalocyanine as a cathode catalyst for a direct borohydride fuel cell

Jinfu Ma et al.

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Investigation of Ti mesh-supported anodes for direct borohydride fuel cells

H. Cheng et al.

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A direct borohydride fuel cell using MnO2-catalyzed cathode and hydrogen storage alloy anode

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