4.8 Article

An efficient palm waste derived hierarchical porous carbon for electrocatalytic hydrogen evolution reaction

Journal

CARBON
Volume 152, Issue -, Pages 188-197

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2019.06.016

Keywords

Palm spathe-pollen; Hydrogen evolution; Low overpotential; Carbon nanosheets; Hierarchical architecture

Funding

  1. Ministry of New and Renewable Energy (MNRE), Govt. of India [31/03/2014-15/PVSE-RD]
  2. CSIR

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Replacing precious Pt, Ir, and Pd-metal based catalysts with cost-effective alternatives for hydrogen production via electrocatalytic hydrogen evolution reaction (HER) would benefit significantly towards clean green energy technologies. In this perspective, we demonstrate graphene-like hierarchical porous nanosheets derived from an inexpensive dry spathe-pollen waste of palm plant as an efficient HER catalyst by pursuing energy from waste strategy. Investigation of chemical composition and micro-environment by X-ray photoelectron spectroscopy (XPS) confirms the presence of pyridinic, pyrrolic, and graphitic nitrogen innate from N-containing organic components. The textural features with N-2 sorption measurements suggests complimentary of high surface area (1297 m(2) g(-1)), pore volume (0.6 mL g(-1)), and hierarchical micro/mesoporous architecture which could strongly promote the performance in HER catalysis. Tested as a HER catalyst, the as-prepared carbon material furnish a smaller overpotential (eta(10)) of 0.33 V vs. RHE, at 10.0 mA cm(-2) along with a small Tafel slope value of 63 mV dec(-1) and long-term stability under acidic medium. The hydrogen binding energy of HPNS and undoped carbon were calculated from DFT studies to support the HPNS activity. Such exquisite properties may be attributed to unique combination of high surface area, facile electrolyte percolation within hierarchical bimodal pore system, robust electrode/electrolyte interface, and N-dopant. (C) 2019 Elsevier Ltd. All rights reserved.

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