Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/63243
Title: Porous Graphitic Carbon Nitride Nanosheets by Pre-polymerization for Enhanced Hydrogen Evolution from Water Splitting under Solar Light
Authors: Fan, H. Q.
Wang, C.
Ren, X. H.
Wang, W. J.
Issue Date: 2018
Publisher: Knowledge E
Citation: Porous Graphitic Carbon Nitride Nanosheets by Pre-polymerization for Enhanced Hydrogen Evolution from Water Splitting under Solar Light / H. Q. Fan, C. Wang, X. H. Ren, W. J. Wang // ASRTU Conference on Alternative Energy : Sino-Russian ASRTU Conference Alternative Energy: Materials, Technologies, and Devices (Ural Federal University, Ekaterinburg, Russia, 13–16 July 2018). – Dubai : Knowledge E, 2018. – pp. 80-89. — DOI: 10.18502/kms.v4i2.3039
Abstract: A facile and green method was developed to fabricate porous graphitic carbon nitride (g-C 3 N 4 ) nanosheets by simple pre-polymerizing melamine. Porous structures were formed in polymerized g-C 3 N 4 at 350 ∘ C for 2h, which greatly enhanced the specific surface area and pore volume, resulting in superior photocatalytic evolution. The hydrogen evolution rate was 11.2 higher than that of bulk g-C 3 N 4 under visible light. The porous structure not only provided abundant active catalytic sites and cross-plane diffusion channels to facilitate the charge and mass transportation, but also promoted the charge separation in the photocatalytic reaction. This g-C 3 N 4 is suitable for mass-production to generate hydrogen from water splitting.
Keywords: GRAPHITIC CARBON NITRIDE
PHOTOCATALYTIC
POROUS STRUCTURES
PREPOLYMERIZATION
HYDROGEN EVOLUTION FROM WATER SPLITTING
URI: http://elar.urfu.ru/handle/10995/63243
Conference name: Sino-Russian ASRTU Conference Alternative Energy: Materials, Technologies, and Devices
Conference date: 13.07.2018-16.07.2018
ISSN: 2519-1438
DOI: 10.18502/kms.v4i2.3039
Sponsorship: This work is supported by the NSFC (51672220) and the NPU Seed Foundation of Innovation and Creation for Graduate Students (Z2018007).
Origin: Sino-Russian ASRTU Conference Alternative Energy: Materials, Technologies, and Devices. — Ekaterinburg, 2018
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