Z-scheme driven photocatalytic activity of CNTs-integrated Bi2S3/WO3 nanohybrid catalysts for highly efficient hydrogen evolution under solar light irradiation

被引:28
作者
Bharagav, U. [1 ]
Reddy, N. Ramesh [3 ]
Rao, V. Navakoteswara [4 ]
Ravi, P.
Sathish, M. [2 ]
Shankar, M. V. [1 ]
Aminabhavi, Tejraj M. [1 ,5 ,6 ]
Kakarla, Raghava Reddy [1 ,7 ]
Kumari, M. Mamatha [1 ]
机构
[1] Yogi Vemana Univ, Dept Mat Sci & Nanotechnol, Nanocatalysis & Solar Fuels Res Lab, Kadapa 516005, Andhra Pradesh, India
[2] Cent Electrochem Res Inst, Electrochem Power Sources Div, CSIR, Karaikkudi, Tamil Nadu, India
[3] Yeungnam Univ, Sch Mech Engn, Gyongsan 38541, South Korea
[4] KAISTS Deputy Nanotechnol Inst, Natl Nanofab Ctr, Nano Convergence Technol Div, Daejeon 34141, South Korea
[5] KLE Technol Univ, Ctr Energy & Environm, Sch Adv Sci, Hubballi 580031, India
[6] Chandigarh Univ, Univ Ctr Res & Dev UCRO, Mohali 140413, Punjab, India
[7] Univ Sydney, Sch Chem & Biomol Engn, Sydney, NSW 2006, Australia
关键词
Bi; 2; S; 3; nanorods; WO; nanosheets; Carbon nanomaterials; Heterostructured nanohybrids; Photocatalysis; Photo-corrosion; Z-scheme photocatalysts; Hydrogen production; BAND-STRUCTURE; PERFORMANCE; FILMS; HETEROSTRUCTURE; HETEROJUNCTION; NANOCOMPOSITES; OXIDE;
D O I
10.1016/j.cej.2023.142886
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Harvesting solar energy for the production of molecular hydrogen through photocatalytic approach is a clean and sustainable pathway to deal with the energy crisis and pollution. In this connection, direct Z-scheme interfaced noble metal free CNTs integrated Bi2S3-WO3 ternary composite was designed and developed through simple hydrothermal and wet impregnation strategies. This combination was manifested for the first time to tackle the photo-corrosion of Bi2S3 through Z-scheme heterojunction formation, and its effective contribution in the mitigation of charge carrier recombination was investigated. 9 wt% WO3 loaded Bi2S3 (WB-9) delivered a notable H2 production rate of 4.85 mmol.h-1.g-1cat over 5 vol% glycerol as a sacrificial reagent under simulated solar light irradiation. This enhancement was six folds higher than the pristine Bi2S3 photocatalytic activity. To enhance the reduction half-reaction further, electron mobility was regulated with CNT integration, which not only triggers the successive transport of electrons through its tubular channel, but also facilitate an excellent reduction co-catalyst to support rapid reduction of protons to form H2 molecules. Upon optimization of CNTs loading, 1 wt % CNTs loaded WB-9 (CWB-4) produced two-folds higher H2 production rates than WB-9, which is about 9.91 mmol.h 1. g � 1 cat. The observed efficiency, stability, and recyclability of CWB-4 attributed to the effective utili-zation of generated charge carriers across the system and suppressed photo-corrosion of Bi2S3 through the Z-scheme interface.
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页数:13
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