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Hierarchical ZnIn2S4: A promising cocatalyst to boost visible-light-driven photocatalytic hydrogen evolution of In(OH)3

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TLDR
In this paper, a 3D hierarchical core-shell-like ZnIn2S4@In(OH)3 microspheres have been fabricated by a facile hydrothermal method via controlling the sulfur source.
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This article is published in International Journal of Hydrogen Energy.The article was published on 2019-03-01. It has received 39 citations till now. The article focuses on the topics: Photocatalysis.

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An Efficient ZnIn2S4@CuInS2 Core–Shell p–n Heterojunction to Boost Visible-Light Photocatalytic Hydrogen Evolution

TL;DR: In this article, an efficient core-shell p-n heterojunction of ZnIn2S was proposed for improving the activity of photocatalytic hydrogen evolution, which is crucial for photoexcited electrons and holes.
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Vacancy-induced 2H@1T MoS2 phase-incorporation on ZnIn2S4 for boosting photocatalytic hydrogen evolution

TL;DR: In this paper, the synergistic regulations of both structural and electronic benefits were discovered by introducing sulfur vacancies in a 1T-MoS2 nanosheets host to prompt the transformation of the surrounding 1T -MoS 2 local lattice into a 2H phase, leading to the dramatically enhanced PHE activity.
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Facile synthesis of sphere-like structured ZnIn2S4-rGO-CuInS2 ternary heterojunction catalyst for efficient visible-active photocatalytic hydrogen evolution.

TL;DR: In this paper, the ternary ZnIn2S4-rGO-CuInS2 system showed enhanced photocatalytic H2 production compared to pure N2S/Na2SO3−water mixture.
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A novel hierarchical Bi2MoO6/Mn0.2Cd0.8S Heterostructured Nanocomposite for Efficient Visible-light hydrogen production

TL;DR: In this article, a series of MnxCd1-xS solid solutions as efficient photocatalysts for hydrogen evolution with visible light response were synthesized via a co-precipitation method.
References
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Journal ArticleDOI

Core/Shell Photocatalyst with Spatially Separated Co-Catalysts for Efficient Reduction and Oxidation of Water†

TL;DR: A simple method allows the preparation of core/shell photocatalysts with spatially separated co-catalysts for efficient water splitting and the high activity was attributed to the core/ shell structure and separation and collection of the electrons and holes at the respective co-Catalysts.
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MoS2 as non-noble-metal co-catalyst for photocatalytic hydrogen evolution over hexagonal ZnIn2S4 under visible light irradiations

TL;DR: MoS2/ZnIn2S4 nanocomposites were prepared by impregnating the hydrothermally prepared hexagonal ZnIn 2S4 microspheres with an aqueous solution of (NH4)2MoS4, followed by a treatment in H2S flow at high temperatures to transform Mo(VI) to Mo(IV) as discussed by the authors.
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Engineering Catalytic Active Sites on Cobalt Oxide Surface for Enhanced Oxygen Electrocatalysis

TL;DR: In this article, a controllable synthesis of surface-tailored Co3O4 nanocrystals including nanocube (NC), nanotruncated octahedron (NTO), and nanopolyhedron anchored on nitrogen-doped reduced graphene oxide (N-rGO), through a facile and template-free hydrothermal strategy, is provided.
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Synergetic Integration of Cu1.94S–ZnxCd1–xS Heteronanorods for Enhanced Visible-Light-Driven Photocatalytic Hydrogen Production

TL;DR: The integration of synergetic designs into high-quality, well-defined Cu1.94S-ZnxCd1-xS heteronanorods with continuous composition adjustment for enhanced photocatalytic hydrogen evolution fully exploit the benefits of both interfacial charge separation and optimized band alignments is presented.
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Engineering nanointerfaces for nanocatalysis

TL;DR: This review focuses on the recent advances in the delicate design and the fine control of various complex nanomaterials with well-defined interfaces based on progress in nano-synthetic methodologies, including metal-metal oxide,Metal-metal, metal-non-oxide and metal in confined spaces.
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