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      Boride-based electrocatalysts: Emerging candidates for water splitting

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          Most cited references136

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          Recent advances in transition metal phosphide nanomaterials: synthesis and applications in hydrogen evolution reaction.

          The urgent need of clean and renewable energy drives the exploration of effective strategies to produce molecular hydrogen. With the assistance of highly active non-noble metal electrocatalysts, electrolysis of water is becoming a promising candidate to generate pure hydrogen with low cost and high efficiency. Very recently, transition metal phosphides (TMPs) have been proven to be high performance catalysts with high activity, high stability, and nearly ∼100% Faradic efficiency in not only strong acidic solutions, but also in strong alkaline and neutral media for electrochemical hydrogen evolution. In this tutorial review, an overview of recent development of TMP nanomaterials as catalysts for hydrogen generation with high activity and stability is presented. The effects of phosphorus (P) on HER activity, and their synthetic methods of TMPs are briefly discussed. Then we will demonstrate the specific strategies to further improve the catalytic efficiency and stability of TMPs by structural engineering. Making use of TMPs as cocatalysts and catalysts in photochemical and photoelectrochemical water splitting is also discussed. Finally, some key challenges and issues which should not be ignored during the rapid development of TMPs are pointed out. These strategies and challenges of TMPs are instructive for designing other high-performance non-noble metal catalysts.
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            Recent Trends and Perspectives in Electrochemical Water Splitting with an Emphasis on Sulfide, Selenide, and Phosphide Catalysts of Fe, Co, and Ni: A Review

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              Molybdenum boride and carbide catalyze hydrogen evolution in both acidic and basic solutions.

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                Author and article information

                Journal
                Nano Research
                Nano Res.
                Springer Science and Business Media LLC
                1998-0124
                1998-0000
                February 2020
                January 02 2020
                February 2020
                : 13
                : 2
                : 293-314
                Article
                10.1007/s12274-020-2618-y
                29b0b549-410f-4e23-ba4d-2c9e637da583
                © 2020

                http://www.springer.com/tdm

                http://www.springer.com/tdm

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