4.6 Article

Constructing a fragmentary g-C3N4 framework with rich nitrogen defects as a highly efficient metal-free catalyst for acetylene hydrochlorination

Journal

CATALYSIS SCIENCE & TECHNOLOGY
Volume 9, Issue 14, Pages 3753-3762

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9cy00927b

Keywords

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Funding

  1. National Natural Science Foundation of China (NSFC) [21878162, 21603107]
  2. Natural Science Foundation of Tianjin of China (NSFT) [16YFZCGX00020]
  3. Foundation from the Ministry of Education of China (MOE) [IRT-13R30, 113016A]
  4. Research Fund for the 111 Project [B12015]
  5. Fundamental Research Funds for the Central Universities

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Graphitic carbon nitride (denoted as g-C3N4), as a graphite-like CN material, is widely used in catalysis. In this paper, a fragmentary g-C3N4 framework with a porous structure and rich nitrogen defects was synthesized for acetylene hydrochlorination, using melamine formaldehyde (MF) resin as an oxygen-containing precursor. The fragmentary g-C3N4 shows a highly efficient activity with acetylene conversion reaching 94.5%, which is 30 times higher than that of pure g-C3N4 prepared by direct pyrolysis of melamine. Both experimental and characterization studies by XRD, XPS and TG-MS reveal that the high activity of the catalyst is mainly derived from the porous structure and rich nitrogen defects, which are attributed to the etching of the g-C3N4 framework by oxygen species in the MF resin. Moreover, density functional theory (DFT) calculations demonstrated that the nitrogen defects in the g-C3N4 framework greatly improved the adsorption of HCl and acetylene, and at the same time significantly reduced the energy barrier from 62.0 to 38.1 kcal mol(-1) at the rate-determining step.

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