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1021
HYPERION: A HYdrogen PERmeatION Experiment to Quantify Hydrogen Transport in Fusion-Relevant Molten Salts
Published 2024“…The measurement of hydrogen transport properties of molten salts like FLiBe is crucial for the development of advanced nuclear technologies like lithium-bearing liquid immersion breeding blankets for fusion reactors. …”
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Thesis -
1022
Experimental study on sediment clump
Published 2017“…While the sediment cloud with thermal-like formation has been researched extensively, information is lacking in the wake-like formation. …”
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Final Year Project (FYP) -
1023
Using Principles from Cognitive Science to Analyze and Guide Language-Related Neural Networks
Published 2024“…To what extent are such AI models learning language in a “human-like” way? Defining “human-like” generally may be an impossible problem, but narrower definitions of aspects of human-like language processing, borrowed from cognitive science literature, afford metrics for evaluating AI models. …”
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Thesis -
1024
Elucidating the role of dust concentrations and initial turbulence on rice flour explosion
Published 2025“…Contrary to the explosibility, the maximum explosion overpressure (Pmax) of dried rice flour is the highest at the tv of 20 ms compared to those obtained at 60 and 100 ms, owing to the densely packed dust at the centre of the chamber. …”
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Article -
1025
Intelligent Seat: Tactile Signal-Based 3D Sitting Pose Inference
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Article -
1026
Enhanced charge transport and increased active sites on α-Fe2O3 (110) nanorod surface containing oxygen vacancies for improved solar water oxidation performance
Published 2019“…The reduced charge-transfer resistance is owing to the greatly increased number of active sites. …”
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Journal Article -
1027
Femtosecond laser-induced graphene for flexible electronics
Published 2020“…Graphene is a single layer of sp2-carbon atoms bonded by covalent bonds and organized in a 2D honeycomb lattice. Owing to this arrangement, graphene exhibits extraordinary properties such as excellent mechanical strength, large specific surface area, high electron mobility, great optical transmittance, excellent thermal conductivity, good chemical stability, biocompatibility, and many other supreme properties. …”
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Thesis-Doctor of Philosophy -
1028
Carbon quantum dot implanted graphite carbon nitride nanotubes : excellent charge separation and enhanced photocatalytic hydrogen evolution
Published 2020“…Graphite carbon nitride (g‐C3N4) is a promising candidate for photocatalytic hydrogen production, but only shows moderate activity owing to sluggish photocarrier transfer and insufficient light absorption. …”
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Journal Article -
1029
Metal-organic-framework-based catalysts for photoreduction of Co2
Published 2020“…Recently, metal-organic frameworks (MOFs) have attracted much attention as CO2 photoreduction-related catalysts, owing to their unique electronic band structures, excellent CO2 adsorption capacities, and tailorable light-absorption abilities. …”
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Journal Article -
1030
Graphene layers‐wrapped Fe/Fe5C2 nanoparticles supported on n‐doped graphene nanosheets for highly efficient oxygen reduction
Published 2020“…An interesting exfoliation–denitrogen mechanism underlying the conversion of bulk g-C3N4 into N-doped graphene nanosheets is revealed. Owing to the high graphitic degree, optimum N-doping level and sufficient active sites from the graphene layers-wrapped Fe/Fe5C2 nanoparticles, the as-prepared GL-Fe/Fe5C2/NG electrocatalyst obtained at 800 °C exhibits outstanding ORR activity with a 20 mV more positive half-wave potential than the commercial Pt/C catalyst in 0.1 m KOH solution and a comparable onset potential of 0.98 V. …”
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Journal Article -
1031
Atomic-scale mechanisms of defect- and light-induced oxidation and degradation of InSe
Published 2020“…Layered indium selenide (InSe), a new two-dimensional (2D) material with a hexagonal structure and semiconducting characteristics, is gaining increasing attention owing to its intriguing electronic properties. Here, by using first-principles calculations, we reveal that perfect InSe possesses high chemical stability against oxidation, superior to MoS2. …”
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Journal Article -
1032
Few-layer NiPS3 nanosheets as bifunctional materials for Li-ion storage and oxygen evolution reaction
Published 2020“…The construction of two-dimensional (2D) ultrathin nanosheets is considered as a promising strategy for enhancing electrochemical performance, owing to their large surface area and fast electron transport. …”
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Journal Article -
1033
The new "rare metal age" : new challenges and implications of critical raw materials supply security in the 21st century
Published 2020“…In the past few years, the worldwide attention cast on the future supply security of rare earths and other critical raw materials has increased in the United States, the European Union, Japan and other countries owing to the global expansion of “green technologies” (including renewable energy sources, electric vehicles and batteries, and smart grids) and digitalisation as well as equipment and devices embedded with artificial intelligence. …”
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Working Paper -
1034
General methods for large-scale production of nanostructured V2O5 with controlled morphologies
Published 2020“…The morphologies and crystalline phases were characterized by scanning electrical microscopy, X-ray diffraction and Raman spectroscopy. Owing to the advantages of low-cost and high reproducibility, these methods can be potentially applied in large-scale production of nanostructured V2O5 material for practical application.…”
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Journal Article -
1035
Fire behaviour and design of hybrid fibre reinforced high-performance concrete columns subjected to uniaxial bending
Published 2022“…No spalling is observed in all the specimens owing to the synergistic effect of hybrid polypropylene and steel fibres. …”
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Journal Article -
1036
Electronic modulation of non-van der Waals 2D electrocatalysts for efficient energy conversion
Published 2022“…The exploration of efficient electrocatalysts for energy conversion is important for green energy development. Owing to their high surface areas and unusual electronic structure, 2D electrocatalysts have attracted increasing interest. …”
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Journal Article -
1037
Strained graphene optoelectronic devices with unprecedented pseudo-magnetic fields
Published 2022“…Photonic-integrated circuit (PIC) is a research field that has been attracting many researchers’ interests owing to its great potential for enabling various disruptive technologies. …”
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Final Year Project (FYP) -
1038
2D molybdenum compounds for electrocatalytic energy conversion
Published 2023“…Recently, 2D nanomaterial-derived hetero-geneous electrocatalysts have shown great promise for both fundamental research and practical applications owing to their extremely high surface-to-volume ratio and tunable geometric and electronic properties. …”
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Journal Article -
1039
Clustering-triggered emission of EPS-605 nanoparticles and their application in biosensing
Published 2023“…Overall, these findings not only benefit the exploitation of EPS-based nonconventional biomacromolecule luminogens, but also reveal the potential applications of EPS-605 in biosensing/bioimaging, anticounterfeiting, and encryption owing to its excellent biocompatibility, environmental friendliness, and intrinsic photoluminescence property.…”
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Journal Article -
1040
Bessel beams in ophthalmology: a review
Published 2023“…Dealing with precise imaging in scattering media, such as in the case of biomedical imaging, is even more difficult owing to the weak signal-to-noise ratios. Recent developments in non-diffractive beams such as Bessel beams, Airy beams, vortex beams, and Mathieu beams have paved the way to tackle some of these challenges. …”
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Journal Article