Piezoelectric polarization promoted spatial separation of photoexcited electrons and holes in two-dimensional g-CN nanosheets for efficient elimination of chlorophenols.

J Hazard Mater

Department of Chemistry, Key Laboratory of Surface & Interface Science of Polymer Materials of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou 310018, China. Electronic address:

Published: January 2022

AI Article Synopsis

  • Graphitic carbon nitride (g-CN) is effective for environmental purification, but its photocatalytic efficiency is limited by high recombination rates of photogenerated carriers.
  • The study demonstrates that using 2D ultrathin g-CN nanosheets with piezoelectric properties significantly enhances the degradation of chlorophenols, specifically 2,4-dichlorophenol (2,4-DCP), through a process called photopiezocatalysis.
  • The results show increased removal efficiency due to improved charge separation from ultrasound-induced piezoelectric fields, along with enhanced performance across various chlorophenols, suggesting a promising approach for energy-conversion materials that harness both solar and mechanical energy.

Article Abstract

Graphitic carbon nitride (g-CN) has been proved to be a potential photocatalyst for environment purification, but the high recombination rate of photogenerated carriers leads to the low photocatalytic efficiency. Herein, we report the enhanced degradation of chlorophenols by 2D ultrathin g-CN nanosheets with intrinsic piezoelectricity through photopiezocatalysis strategy. Under the simultaneous visible-light irradiation and ultrasonic vibration, the 2D g-CN presented improved removal efficiency for elimination of 2,4-dichlorophenol (2,4-DCP) with an apparent rate constant of 6.65 × 10 min, which was 6.7 and 2.2 times of the photocatalysis and piezocatalysis, respectively. The improved removal efficiency was attributed to the sufficient separation of free charges driven by the ultrasound-induced piezoelectric field in the 2D g-CN, which was demonstrated by the enhanced current response under photopiezocatalysis mode. Additionally, the photopiezocatalysis of 2D g-CN was proved to possess well universality for removing different chlorophenols, as well as high durability and dechlorination efficiency. Finally, a possible photopiezocatalytic mechanism for removal of 2,4-DCP was proposed based on the electron paramagnetic resonance (EPR) technique and the determination of intermediates through liquid chromatography-mass spectrometry (LC-MS) analysis. This work provides a promising strategy for the design of energy-conversion materials towards capturing solar and mechanical energy in ambient environment.

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Source
http://dx.doi.org/10.1016/j.jhazmat.2021.126696DOI Listing

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