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Enhanced tribocatalytic degradation using piezoelectric CdS nanowires for efficient water remediation

  • Bian Yang
  • , Haobin Chen
  • , Xudong Guo
  • , Lei Wang
  • , Tao Xu
  • , Jihong Bian
  • , Yaodong Yang
  • , Qida Liu
  • , Yaping Du
  • , Xiaojie Lou
  • Xi'an Jiaotong University
  • First People's Hospital of Qujing
  • Qilu University of Technology
  • Nankai University

科研成果: 期刊稿件文章同行评审

111 引用 (Scopus)

摘要

Friction-driven contaminant degradation is a novel and potential solution to mitigate environmental pollution. However, the core mechanism of tribocatalytic degradation remains elusive. To understand the key parameters that affect tribocatalytic performance, we have synthesized CdS semiconductor nanowires with controllable piezoelectric properties. Intriguingly, only under magnetic stirring can these CdS nanowires degrade rhodamine B organic dye (as a representative organic pollutant) highly effectively in the dark, overcoming the drawback of the intermittent nature of sunlight in photocatalysis. In addition, the efficiency of tribocatalysis can be greatly improved through enhancing the friction or increasing the interfacial area between the stirring rods and the container. Further analysis indicates that piezoelectric CdS nanowires with higher aspect ratios enable more efficient charge carrier separation and transfer, playing a pivotal role in enhancing the degradation of organic compounds. Our findings blaze a new trail for removing harmful pollutants from wastewater and pave the way for many important applications through utilizing friction energy.

源语言英语
页(从-至)14845-14854
页数10
期刊Journal of Materials Chemistry C
8
42
DOI
出版状态已出版 - 14 11月 2020

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