Literature DB >> 31911380

Revealing adsorption and the photodegradation mechanism of gas phase o-xylene on carbon quantum dots modified TiO2 nanoparticles.

Asad Mahmood1, Xiao Wang2, Gansheng Shi2, Zhuang Wang2, Xiaofeng Xie2, Jing Sun3.   

Abstract

Here, we report the photocatalytic oxidation (PCO) of o-xylene on carbon quantum dots (CQDs) modified TiO2 nanoparticles. The results demonstrated that with 1 wt% CQDs loading, 87 % of o-xylene (50 ppm) can be photodegraded, which is 55.3 % higher than pure TiO2 (56 %) under UV/visible light. This improved photocatalytic activity is associated with the important role of CQDs on TiO2 surface, which increased the o-xylene adsorption and facilitated the photogenerated hole-electron separation process. Also, the 1 wt%CQDs/TiO2 nanocomposite showed photocatalytic activity in the visible region (λ > 400 nm) compared to pure TiO2 (inactive). The DFT study revealed that o-xylene strongly adsorb on TiO2 (001) surface than (101) through π electrons of the aromatic ring. The in situ DRIFTS study showed that free OH groups on the photocatalyst surface could act as effective Lewis sides for the o-xylene adsorption. The interaction of π electrons of the aromatic ring and isolated OH groups was also observed. The FTIR peaks for CO2 increased in the case of CQDs/TiO2 nanocomposite contrasted to pure TiO2, which suggested that the presence of CQDs improved the mineralization potency of TiO2. These findings should affect the quest for a better photocatalyst to photodegrade VOCs.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Carbon quantum dots; DFT; In-situ DRIFTS; O-xylene; TiO(2)

Year:  2019        PMID: 31911380     DOI: 10.1016/j.jhazmat.2019.121962

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  1 in total

1.  Visible-Ultraviolet Upconversion Carbon Quantum Dots for Enhancement of the Photocatalytic Activity of Titanium Dioxide.

Authors:  Yiqing Deng; Mengxiao Chen; Gang Chen; Wangcai Zou; Yanqing Zhao; Huan Zhang; Qiang Zhao
Journal:  ACS Omega       Date:  2021-02-04
  1 in total

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