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Juntong Huang

Researcher at Nanchang Hangkong University

Publications -  127
Citations -  4217

Juntong Huang is an academic researcher from Nanchang Hangkong University. The author has contributed to research in topics: Chemistry & Sialon. The author has an hindex of 26, co-authored 99 publications receiving 2283 citations. Previous affiliations of Juntong Huang include University of Sheffield & China University of Geosciences (Beijing).

Papers
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Enhanced photocatalytic degradation and H2/H2O2 production performance of S-pCN/WO2.72 S-scheme heterojunction with appropriate surface oxygen vacancies

TL;DR: In this article, a solvent evaporation induced self-assembly method was employed to prepare a novel S-scheme heterojunction composite by combining sulfur-doped porous graphite carbon nitride (S-pCN) with tungsten oxide (WO2.72) semiconductors which manifest effective interface contact and excellent photocatalytic performance.
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Novel BP/BiOBr S-scheme nano-heterojunction for enhanced visible-light photocatalytic tetracycline removal and oxygen evolution activity

TL;DR: The novel S-scheme two-dimensional BP/BiOBr nano-heterojunction for boosting spatial charge separation retained the useful holes-electrons with higher redox ability, which was very beneficial for producing more OH, H2O2 and O2, and the photocatalytic activity was greatly improved.
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CN/rGO@BPQDs high-low junctions with stretching spatial charge separation ability for photocatalytic degradation and H2O2 production

TL;DR: In this paper, reduced graphene oxide modified black phosphorus quantum dots (rGO@BPQDs) were obtained through surface modification of BPQDs with rGO via an ultrasound-assisted liquid phase method.
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Microstructure and mechanical properties of aluminium alloy cellular lattice structures manufactured by direct metal laser sintering

TL;DR: In this article, the microstructure and mechanical properties of AlSi10Mg periodic cellular lattice structures with a wide range of volume fractions (5 − 20%) and unit cell sizes (3 − 7mm) fabricated via direct metal laser sintering (DMLS) were investigated.
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Recent advances in 3D g-C3N4 composite photocatalysts for photocatalytic water splitting, degradation of pollutants and CO2 reduction

TL;DR: The 3D network-like g-C3N4 composite materials constructed by nanotechnology can effectively improve the adsorption capacity, light response, structure stability and recyclability of photocatalysts as discussed by the authors.