Cargando…

Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure

A novel polyaniline (PANI)/Sn(3)O(4) heterojunction composed of PANI nanofibers and Sn(3)O(4) nanosheets was fabricated by a facile physical milling technique. Modification of Sn(3)O(4) with a PANI conductive polymer contributes to facilitating interfacial charge transfer efficiency, and thus, signi...

Descripción completa

Detalles Bibliográficos
Autores principales: Lv, Manfei, Yang, Liuqing, Wang, Xiangliang, Cheng, Xinlei, Song, Yan, Yin, Yinkun, Liu, Huimin, Han, Yongjun, Cao, Kesheng, Ma, Wei, Qi, Guang, Li, Songtian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9076232/
https://www.ncbi.nlm.nih.gov/pubmed/35542680
http://dx.doi.org/10.1039/c9ra07562c
_version_ 1784701875718717440
author Lv, Manfei
Yang, Liuqing
Wang, Xiangliang
Cheng, Xinlei
Song, Yan
Yin, Yinkun
Liu, Huimin
Han, Yongjun
Cao, Kesheng
Ma, Wei
Qi, Guang
Li, Songtian
author_facet Lv, Manfei
Yang, Liuqing
Wang, Xiangliang
Cheng, Xinlei
Song, Yan
Yin, Yinkun
Liu, Huimin
Han, Yongjun
Cao, Kesheng
Ma, Wei
Qi, Guang
Li, Songtian
author_sort Lv, Manfei
collection PubMed
description A novel polyaniline (PANI)/Sn(3)O(4) heterojunction composed of PANI nanofibers and Sn(3)O(4) nanosheets was fabricated by a facile physical milling technique. Modification of Sn(3)O(4) with a PANI conductive polymer contributes to facilitating interfacial charge transfer efficiency, and thus, significantly enhances the visible-light Rhodamine B (RhB) photo-degradation. Results indicate that PANI/Sn(3)O(4) heterostructures with 10 wt% PANI reached the maximum degradation efficiency (around 97%) for RhB within 5 h, which is 2.27 times higher than that of Sn(3)O(4) alone. This improvement is due to the p–n heterostructure formation in PANI/Sn(3)O(4). Moreover, the outcome of reactive species capturing experiments demonstrated that in PANI/Sn(3)O(4), holes made the largest contribution to RhB degradation under visible light illumination, while hydroxyl radicals showed less significance under the same conditions. In addition, the photocatalytic mechanism was proposed based on evidence from the reactive species test and energy band structure analysis.
format Online
Article
Text
id pubmed-9076232
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90762322022-05-09 Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure Lv, Manfei Yang, Liuqing Wang, Xiangliang Cheng, Xinlei Song, Yan Yin, Yinkun Liu, Huimin Han, Yongjun Cao, Kesheng Ma, Wei Qi, Guang Li, Songtian RSC Adv Chemistry A novel polyaniline (PANI)/Sn(3)O(4) heterojunction composed of PANI nanofibers and Sn(3)O(4) nanosheets was fabricated by a facile physical milling technique. Modification of Sn(3)O(4) with a PANI conductive polymer contributes to facilitating interfacial charge transfer efficiency, and thus, significantly enhances the visible-light Rhodamine B (RhB) photo-degradation. Results indicate that PANI/Sn(3)O(4) heterostructures with 10 wt% PANI reached the maximum degradation efficiency (around 97%) for RhB within 5 h, which is 2.27 times higher than that of Sn(3)O(4) alone. This improvement is due to the p–n heterostructure formation in PANI/Sn(3)O(4). Moreover, the outcome of reactive species capturing experiments demonstrated that in PANI/Sn(3)O(4), holes made the largest contribution to RhB degradation under visible light illumination, while hydroxyl radicals showed less significance under the same conditions. In addition, the photocatalytic mechanism was proposed based on evidence from the reactive species test and energy band structure analysis. The Royal Society of Chemistry 2019-12-09 /pmc/articles/PMC9076232/ /pubmed/35542680 http://dx.doi.org/10.1039/c9ra07562c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Lv, Manfei
Yang, Liuqing
Wang, Xiangliang
Cheng, Xinlei
Song, Yan
Yin, Yinkun
Liu, Huimin
Han, Yongjun
Cao, Kesheng
Ma, Wei
Qi, Guang
Li, Songtian
Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure
title Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure
title_full Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure
title_fullStr Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure
title_full_unstemmed Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure
title_short Visible-light photocatalytic capability and the mechanism investigation of a novel PANI/Sn(3)O(4) p–n heterostructure
title_sort visible-light photocatalytic capability and the mechanism investigation of a novel pani/sn(3)o(4) p–n heterostructure
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9076232/
https://www.ncbi.nlm.nih.gov/pubmed/35542680
http://dx.doi.org/10.1039/c9ra07562c
work_keys_str_mv AT lvmanfei visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT yangliuqing visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT wangxiangliang visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT chengxinlei visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT songyan visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT yinyinkun visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT liuhuimin visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT hanyongjun visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT caokesheng visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT mawei visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT qiguang visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure
AT lisongtian visiblelightphotocatalyticcapabilityandthemechanisminvestigationofanovelpanisn3o4pnheterostructure