Rational construction of N-containing carbon sheets atomically doped NiP-CoP nanohybrid electrocatalysts for enhanced green hydrogen and oxygen production

<p dir="ltr">The pursuit of sustainable energy production has directed rigorous research in the field of electrocatalysis, particularly for water electrolysis (i.e., hydrogen evolution (HER) and oxygen evolution reactions (OER)). This study discloses the rational synthesis of N-conta...

وصف كامل

محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Adewale K. Ipadeola (12699590) (author)
مؤلفون آخرون: Mostafa H. Sliem (6316958) (author), Patrick Mwonga (11468339) (author), Kenneth I. Ozoemena (1924591) (author), Aboubakr M. Abdullah (1505017) (author)
منشور في: 2024
الموضوعات:
الوسوم: إضافة وسم
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الوصف
الملخص:<p dir="ltr">The pursuit of sustainable energy production has directed rigorous research in the field of electrocatalysis, particularly for water electrolysis (i.e., hydrogen evolution (HER) and oxygen evolution reactions (OER)). This study discloses the rational synthesis of N-containing carbon sheets atomically doped NiP-CoP nanohybrid (NiP-CoP/NCS) via precipitation/calcination. The fabrication method tailored the physicochemical merits for collective contribution to improved green hydrogen and oxygen production, elucidated by surface/bulk characterization and theoretical calculations. Thus, the NiP-CoP/NCS had improved HER activity at lower overpotential (<i>ƞ</i><sub>10</sub><i> </i>= 197.7/274.6 mV), higher exchange current density (j<sub>o</sub> = 0.71/0.67 mA/cm<sup>2</sup>), turnover frequency (TOF = 2.63/1.47 s<sup>-1</sup>), H<sub>2 </sub>production rate (3601.63/2519.12 µmol/g/h) and superior stability after 24 h in acid/alkaline media, than NiP/NCS and CoP/NCS. Moreover, NiP-CoP/NCS delivered impressive OER activity at reduced <i>ƞ</i><sub>10</sub> (309.1 mV), and Tafel slope (b<sub>a</sub> = 58.9 ± 3.0 mV/dec), but higher TOF (3.67 s<sup>-1</sup>) and O<sub>2</sub> production rate (3643.96 µmol/g/h) relative to NiP/NCS and CoP/NCS, besides higher stability for 24 h. These were further proved by theoretical calculations. This work indicates a deeper understanding of the fabrication methods of making efficient electrocatalysts for green and sustainable energy conversion.</p><h2>Other Information</h2><p dir="ltr">Published in: Electrochimica Acta<br>License: <a href="http://creativecommons.org/licenses/by/4.0/" target="_blank">http://creativecommons.org/licenses/by/4.0/</a><br>See article on publisher's website: <a href="https://dx.doi.org/10.1016/j.electacta.2024.145236" target="_blank">https://dx.doi.org/10.1016/j.electacta.2024.145236</a></p>