Bifunctional thioacetamide-mediated synthesis of few-layered MoOSx nanosheet-modified CdS hollow spheres for efficient photocatalytic H2 production
Literature Information
Siqin Tao, Wei Zhong, Yuxiao Chen, Feng Chen, Ping Wang
Constructing efficient cocatalyst-modified hollow-structured photocatalysts holds great potential in the photocatalytic H2 evolution field. Regrettably, it still remains a formidable challenge to develop cost-effective cocatalysts and explore simple synthetic methods for their scalable applications. Herein, a novel one-step strategy of bifunctional thioacetamide-mediated synthesis has been developed to synthesize few-layered MoOSx nanosheet-modified CdS hollow sphere photocatalysts (MoOSx/CdS). In this case, the MoOSx nanosheets exhibit a typical few-layered structure of 3–7 layers and are homogeneously attached to the surface of the CdS hollow spheres. It is observed that the few-layered MoOSx/CdS (1 wt%) hollow sphere photocatalysts obtain the highest photocatalytic H2-evolution rate of 929.40 μmol h−1 g−1, which is far beyond that of the blank CdS sample by a factor of 3.7. The in situ X-ray photoelectron spectroscopy (XPS) and density functional theory (DFT) analyses confirm that the well-designed few-layered MoOSx cocatalysts can efficiently suppress photoexcited carrier recombination and provide abundant electron-deficient S sites to speed up the interfacial H2-evolution reaction, thus improving the photocatalytic H2-generation efficiency of the CdS photocatalysts. This study opens a new window into the fabrication of non-precious metal cocatalyst-modified hollow structures with remarkably promoted photocatalytic H2-production activity.
Related Literature
Ultraductile, notch and stab resistant supramolecular hydrogels via host–guest interactions
Mei Tan, Yulin Cui, Aidi Zhu, Han Han, Mingyu Guo, Ming Jiang
DOI: 10.1039/C5PY01073J
Cheap and fast: oxalic acid initiated CO2-based polyols synthesized by a novel preactivation approach
Yusheng Qin, Lijun Qiao, Yuyang Miao, Xianhong Wang, Fosong Wang
DOI: 10.1039/C5PY01338K
Sustainable, eco-friendly polyesters synthesized from renewable resources: preparation and thermal characteristics of poly(dimethyl-propylene furanoate)
Vasilios Tsanaktsis, Zoe Terzopoulou, Dimitrios N. Bikiaris, Dimitris S. Achilias, Dimitrios G. Papageorgiou, George Z. Papageorgiou
DOI: 10.1039/C5PY01367D
A robust procedure for large scale synthesis of a high molar mass, unsubstituted poly(m,p-phenylene)
Bernd Deffner, A. Dieter Schlüter
DOI: 10.1039/C5PY01317H
Controlling the morphology of glyco-nanoparticles in water using block copolymer mixtures: the effect on cellular uptake
Hongxu Lu, Martina Stenzel
DOI: 10.1039/C5PY01360G
The Ugi reaction in polymer chemistry: syntheses, applications and perspectives
Bin Yang, Yuan Zhao, Yen Wei, Changkui Fu, Lei Tao
DOI: 10.1039/C5PY01398D
Enhancement of the crosslink density, glass transition temperature, and strength of epoxy resin by using functionalized graphene oxide co-curing agents
Jin Jung, Yong-Mun Choi, Jae Hun Choi, Jaesang Yu, Jae Kwan Lee, Nam-Ho You, Munju Goh
DOI: 10.1039/C5PY01483B
Classical photopolymerization kinetics, exceptional gelation, and improved diffraction efficiency and driving voltage in scaffolding morphological H-PDLCs afforded using a photoinitibitor
Guannan Chen, Mingli Ni, Yan Yan, Jiaqing Zhuang, V. A. L. Roy, Robert K. Y. Li
DOI: 10.1039/C5PY01414J
You might also like
What are the main uses of 4-Nitrophenyl phosphate disodium salt hexahydrate (CAS: 333338-18-4)?
4-Nitrophenyl phosphate disodium salt hexahydrate is primarily used as a substra...
What are the main uses of 2-(Trifluoromethyl)-1,3-oxazole-4-carboxylic Acid (CAS: 1060816-01-4)?
2-(Trifluoromethyl)-1,3-oxazole-4-carboxylic Acid (CAS: 1060816-01-4) is widely ...
How should 2-Fluoro-4-biphenylcarboxylic acid (CAS: 137045-30-8) be stored?
2-Fluoro-4-biphenylcarboxylic acid should be stored in a cool, dry place at room...
What industries use Prednisolone-21-Carboxylic Acid (CAS: 61549-70-0)?
Prednisolone-21-Carboxylic Acid is primarily used in the pharmaceutical industry...
How should 4-(Hydrazinomethyl)-1,2,3-benzenetriol (CAS: 3614-72-0) be stored?
4-(Hydrazinomethyl)-1,2,3-benzenetriol (CAS: 3614-72-0) should be stored in a co...
What industries use 4-Amino-1-methyl-1H-pyrazole-5-carboxylic acid hydrochloride (CAS: 92534-70-8)?
4-Amino-1-methyl-1H-pyrazole-5-carboxylic acid hydrochloride (CAS: 92534-70-8) i...
What regulatory guidelines apply to dehydropachymic acid (CAS: 77012-31-8)?
Dehydropachymic acid (CAS: 77012-31-8) is regulated by various agencies. It fall...
What is the market or research trend for 6-[(2,2-Dimethylpropanoyl)amino]nicotinic acid (CAS: 898561-66-5)?
The market and research trends for 6-[(2,2-Dimethylpropanoyl)amino]nicotinic aci...
How should 1,10-Phenanthroline-2,9-dicarbaldehyde (CAS: 57709-62-3) be stored?
1,10-Phenanthroline-2,9-dicarbaldehyde should be stored in a cool, dry place awa...
How is 5-Carbamoyl-11-oxo-10,11-dihydro-5H-dibenzo[b,f]azepin-10-yl acetate (CAS: 113952-21-9) typically synthesized?
5-Carbamoyl-11-oxo-10,11-dihydro-5H-dibenzo[b,f]azepin-10-yl acetate can be synt...
Source Journal
Catalysis Science & Technology

Catalysis Science & Technology is committed to publishing research reporting high-quality, cutting-edge developments across the catalysis community at large. The journal places equal focus on publications from the heterogeneous, homogeneous, thermo-, electro-, photo-, organo- and biocatalysis communities. Works published in the journal feature a balanced mix of fundamental, technology-oriented, experimental, computational, digital and data-driven original research, thus appealing to catalysis practitioners in both academic and industrial environments. Original research articles published in the journal must demonstrate new catalytic discoveries and/or methodological advances that represent a significant advance on previously published work, from the molecular to the process scales. We welcome rigorous research in a wide range of timely or emerging applications related to the environment, health, energy and materials. Catalysis Science & Technology publishes Communications, Articles, Reviews and Perspectives. More details regarding manuscript types may be found in the Information for Authors section.












![(2E)-3-(3-Chlorophenyl)-N-{2-[4-(methylsulfonyl)-1-piperazinyl]-2-oxoethyl}acrylamide structure (2E)-3-(3-Chlorophenyl)-N-{2-[4-(methylsulfonyl)-1-piperazinyl]-2-oxoethyl}acrylamide structure](https://static.chemtradehub.com/structs/250/2505001-54-5-c1e9.webp)

![(3R,5R)-1-[(Benzyloxy)carbonyl]-5-methyl-3-piperidinecarboxylic acid structure (3R,5R)-1-[(Benzyloxy)carbonyl]-5-methyl-3-piperidinecarboxylic acid structure](https://static.chemtradehub.com/structs/126/1269757-29-0-c552.webp)