Search Results - "Fundamental interaction"
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The Fundamental Interactions Between Hydrogen and group III-VI and IV-VI van der Waals Crystals
Published 2023“…This PhD considers the fundamental interactions of vdW materials with hydrogen. Specifically, the focus of this work is on the interactions with the vdW semiconductors SnS2, SnS, γ-InSe and ϵ-GaSe. …”
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Electron scattering from molecular hydrogen in a spheroidal convergent close-coupling formalism
Published 2014“…Electron scattering from molecules is a fundamental interaction of matter and is the mechanism behind many chemical reactions. …”
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Review of X-ray phase contrast imaging techniques and propagation based imaging using a Benchtop Microfocal Source
Published 2007“…Currently, the basis for standard clinical X-ray radiography is absorption, tracking attenuation of radiation when X-ray beams pass through a particular part of the body. The fundamental interaction processes are dependent on variations in the atomic number and density of the target medium; consequentially radiographic contrast can be poor, particularly in regard to soft tissue imaging. …”
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Synthesis of mmixed-mode monoilithic colum for high efficiency capillary electrochrommatographic (CEC) separation
Published 2009“…Better understanding of the fundamental interaction between the chemical compounds studied with the synthesized stationary phase inside a CEC column provide data which are to be shared through publication in journals. …”
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Impact of oil composition on microwave heating behavior of heavy oils
Published 2018“…Opportunities exist for electromagnetic heating in overcoming the heat-transfer limitations within viscous oils, and potentially as a down-hole or in-situ heating technique to raise the temperature within a reservoir. The fundamental interaction of electromagnetic energy with viscous and heavy oils and their constituent components is poorly-understood, and this study enhances the understanding of these interactions at microwave frequencies by establishing the effect of temperature on the dielectric properties of heavy oil and its SARA fractions. …”
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Microwave processing of vermiculite
Published 2015“…The objective of this research was to critically evaluate the fundamental interaction of electromagnetic waves with vermiculite from different source locations and to understand the mechanism of exfoliation in an applied microwave field. …”
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Advanced X-ray photoelectron spectroscopy of N-based ionic liquids
Published 2018“…X-ray photoelectron spectroscopy (XPS) has been used to probe the influence of cation structure on fundamental interactions within Ionic Liquid (IL) systems. …”
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XPS of PEG-functionalised ionic liquids: towards chlorozincate-based systems
Published 2019“…X-ray photoelectron spectroscopy (XPS) has been utilised to investigate the influence of poly(ethylene glycol) (PEG) substituents on fundamental interactions in ionic liquids (ILs). A series of monocationic and dicationic PEG-functionalised IL systems that are based upon imidazolium, pyridinium and pyrrolidinium cation have been investigated. …”
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Modelling the binding of organic molecules to metal-organic frameworks
Published 2018“…Modelling of the fundamental interactions between small organic molecule to metal-organic frameworks (MOFs) and MOF-like structures has been carried out using a variety of computational techniques to further understand and aid in the design of MOFs for gas storage and separation applications. …”
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Microwave processing of oil sands and contribution of clay minerals
Published 2014“…In this work the fundamental interactions of microwave energy with Oil Sands are investigated and understood for the first time, and the material characterisation related to microwave heating and oil extraction studies is carried out. …”
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Modelling of single spark interactions during electrical discharge coating
Published 2018“…However, industrial uptake of EDC has been restricted due to limited understanding of the fundamental interactions between energy source and workpiece material. …”
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XPS of quaternary ammonium and phosphonium ionic liquids
Published 2016“…X-ray Photoelectron Spectroscopy (XPS) has been used to probe the influence of cation structure on fundamental interactions within Ionic Liquid (IL) systems. …”
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Conventional and microwave-assisted pyrolysis of rapeseed oil for bio-fuel production
Published 2014“…The potential of microwave-assisted pyrolysis of rapeseed oil was evaluated in this study, based on understanding the fundamental interactions of oils with microwaves and evaluation of the product yield and composition. …”
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2D organisation of complex organic molecules
Published 2010“…The self-assembly of two-dimensional molecular systems is of significant interest, offering an insight into the fundamental interactions which drive the formation of complex supramolecular structures. …”
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An evaluation of microwave and RF technology as energy and time efficient alternatives for the drying process of barley malt
Published 2016“…The objective of this project was to explore the fundamental interactions between microwave and radio frequency (RF) energy and malt. …”
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Multimodal flavour perception: the impact of sweetness, bitterness, alcohol content and carbonation level on flavour perception
Published 2011“…This research has focussed on beer flavour perception and the fundamental interactions between the main flavour components - sweetness, bitterness (from hop acids), alcohol content and carbonation level. …”
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Characterisation, modelling and tribological investigations of nano-structured TiC-based electrical discharge coatings
Published 2018“…However, the integrity of as-processed EDC surfaces, as reported on in literature, is generally poor, with limited understanding of the fundamental interactions between energy source and workpiece material, and the microstructural development of the surfaces created. …”
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Fabrication and characterization of nickel-coated polyethylene terephthalate supported mangabese dioxide thin-film electrochimical capacitor prototypes
Published 2011“…Much research on the synthesis of nanomaterials is imperatively necessary to better understand the myriad of fundamental interactions at nanoscale level. Electrodes of desired microstructures can therefore be finely architectured to obtain enhanced capacitive performance. …”
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