2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic Performance

Abstract Combination of two-dimensional (2D) materials and semiconductors is considered to be an effective way for fabricating photocatalysts for solving the environmental pollution and energy crisis. In this work, novel 2D/2D heterojunction of R-scheme Ti3C2 MXene/MoS2 nanosheets is successfully sy...

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Main Authors: Ziyu Yao, Huajun Sun, Huiting Sui, Xiaofang Liu
Format: Article
Language:English
Published: SpringerOpen 2020-04-01
Series:Nanoscale Research Letters
Subjects:
Online Access:http://link.springer.com/article/10.1186/s11671-020-03314-z
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spelling doaj-3d4a43166287488cb27c7146c00bc6e62020-11-25T03:09:12ZengSpringerOpenNanoscale Research Letters1556-276X2020-04-0115111210.1186/s11671-020-03314-z2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic PerformanceZiyu Yao0Huajun Sun1Huiting Sui2Xiaofang Liu3State Key Laboratory of Silicate Materials for Architectures, Wuhan University of TechnologyState Key Laboratory of Silicate Materials for Architectures, Wuhan University of TechnologyState Key Laboratory of Silicate Materials for Architectures, Wuhan University of TechnologySchool of Chemistry, Chemical Engineering and Life Sciences, Wuhan University of TechnologyAbstract Combination of two-dimensional (2D) materials and semiconductors is considered to be an effective way for fabricating photocatalysts for solving the environmental pollution and energy crisis. In this work, novel 2D/2D heterojunction of R-scheme Ti3C2 MXene/MoS2 nanosheets is successfully synthesized by hydrothermal reaction. The photocatalytic activity of the Ti3C2 MXene/MoS2 composites is evaluated by photocatalytic degradation and hydrogen evolution reaction. Especially, 0.5 wt% Ti3C2 MXene/MoS2 sample exhibits optimum methyl orange (MO) degradation and H2 evolution rate of 97.4% and H2 evolution rate of 380.2 μmol h−1 g−1, respectively, which is attributed to the enhanced optical absorption ability and increased specific surface area. Additionally, Ti3C2 MXene coupled with MoS2 nanosheets is favorable for improving the photocurrent response and reducing the electrochemical impedance, leading to the enhanced electron transfer of excited semiconductor and inhibition of charge recombination. This work demonstrates that Ti3C2 MXene could be a promising carrier to construct 2D/2D heterojunction in photocatalytic degradation and hydrogen evolution reaction.http://link.springer.com/article/10.1186/s11671-020-03314-z2D/2D heterojunctionHydrothermal reactionPhotocatalytic degradationH2 evolution reaction
collection DOAJ
language English
format Article
sources DOAJ
author Ziyu Yao
Huajun Sun
Huiting Sui
Xiaofang Liu
spellingShingle Ziyu Yao
Huajun Sun
Huiting Sui
Xiaofang Liu
2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic Performance
Nanoscale Research Letters
2D/2D heterojunction
Hydrothermal reaction
Photocatalytic degradation
H2 evolution reaction
author_facet Ziyu Yao
Huajun Sun
Huiting Sui
Xiaofang Liu
author_sort Ziyu Yao
title 2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic Performance
title_short 2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic Performance
title_full 2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic Performance
title_fullStr 2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic Performance
title_full_unstemmed 2D/2D Heterojunction of R-scheme Ti3C2 MXene/MoS2 Nanosheets for Enhanced Photocatalytic Performance
title_sort 2d/2d heterojunction of r-scheme ti3c2 mxene/mos2 nanosheets for enhanced photocatalytic performance
publisher SpringerOpen
series Nanoscale Research Letters
issn 1556-276X
publishDate 2020-04-01
description Abstract Combination of two-dimensional (2D) materials and semiconductors is considered to be an effective way for fabricating photocatalysts for solving the environmental pollution and energy crisis. In this work, novel 2D/2D heterojunction of R-scheme Ti3C2 MXene/MoS2 nanosheets is successfully synthesized by hydrothermal reaction. The photocatalytic activity of the Ti3C2 MXene/MoS2 composites is evaluated by photocatalytic degradation and hydrogen evolution reaction. Especially, 0.5 wt% Ti3C2 MXene/MoS2 sample exhibits optimum methyl orange (MO) degradation and H2 evolution rate of 97.4% and H2 evolution rate of 380.2 μmol h−1 g−1, respectively, which is attributed to the enhanced optical absorption ability and increased specific surface area. Additionally, Ti3C2 MXene coupled with MoS2 nanosheets is favorable for improving the photocurrent response and reducing the electrochemical impedance, leading to the enhanced electron transfer of excited semiconductor and inhibition of charge recombination. This work demonstrates that Ti3C2 MXene could be a promising carrier to construct 2D/2D heterojunction in photocatalytic degradation and hydrogen evolution reaction.
topic 2D/2D heterojunction
Hydrothermal reaction
Photocatalytic degradation
H2 evolution reaction
url http://link.springer.com/article/10.1186/s11671-020-03314-z
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AT huitingsui 2d2dheterojunctionofrschemeti3c2mxenemos2nanosheetsforenhancedphotocatalyticperformance
AT xiaofangliu 2d2dheterojunctionofrschemeti3c2mxenemos2nanosheetsforenhancedphotocatalyticperformance
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