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- W4229374185 abstract "Probing the cost-effective electrochemical catalyst is the prerequisite for producing the hydrogen energy through water splitting for commercial considerations. Owing to low cost and greater redox potential, the alkaline metal-based electrochemical catalysts need to be assessed for hydrogen evolution reaction. Herein, the strontium selenide (SrSe) nanowires with various contents of strontium have been synthesized using the hydrothermal process. Sr 2 Se 1 nanowires attained a good current density at higher pH values and exhibited an over potential of 130 mV at pH of 13.10, with an onset potential of 0.362 V Sr 2 Se 1 nanowires have also revealed a good Tafel slope of 58 mVdec −1 at pH 13.30, as compared to other catalysts. Moreover, the Sr 2 Se 1 nanowires have revealed a turn over frequency of 211.50 ms −1 at the fixed reversible electrode potential of 1.0 V and an exchange current density of 6.80 mAcm −2 . The symmetric system, consisting of Sr 2 Se 1 nanowires, has also revealed a good Tafel slope of 84 mVdec −1 and an over potential of 907 mV at pH of 13.10. The results revealed that the Sr 2 Se 1 nanowires performed a good hydrogen evolution activity and can be employed as a suitable electrocatalyst." @default.
- W4229374185 created "2022-05-10" @default.
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- W4229374185 date "2022-08-01" @default.
- W4229374185 modified "2023-10-13" @default.
- W4229374185 title "Electrocatalytic behaviour of the strontium selenide nanowires for hydrogen evolution reaction at various pH values" @default.
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- W4229374185 doi "https://doi.org/10.1016/j.mssp.2022.106765" @default.
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