Search Results - "Baart, Timothy A."
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In Situ Characterization of Mixtures of Linear and Branched Hydrocarbons Confined within Porous Media Using 2D DQF-COSY NMR Spectroscopy
Published in Analytical chemistry (Washington) (22-02-2022)“…The analysis of 1D anti-diagonal spectra from the projections of 2D double-quantum filtered correlation spectroscopy NMR spectra is presented for the…”
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Experimental Determination of H2 and CO Diffusion Coefficients in a Wax Mixture Confined in a Porous Titania Catalyst Support
Published in The journal of physical chemistry. B (03-12-2020)“…The ability to measure and predict molecular diffusion coefficients in multicomponent mixtures is not only of fundamental scientific interest but also of…”
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Mesoscopic Elastic Distortions in GaAs Quantum Dot Heterostructures
Published in Nano letters (09-05-2018)“…Quantum devices formed in high-electron-mobility semiconductor heterostructures provide a route through which quantum mechanical effects can be exploited on…”
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Water-wax behaviour in porous silica at low temperature Fischer-Tropsch conditions
Published in Applied catalysis. A, General (25-02-2019)“…[Display omitted] •Operando magnetic resonance measurements of water-wax behaviour in porous silica pellets.•Reactor operated at 195 °C with water pressure in…”
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Experimental Determination of H 2 and CO Diffusion Coefficients in a Wax Mixture Confined in a Porous Titania Catalyst Support
Published in The journal of physical chemistry. B (03-12-2020)Get full text
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6
Operando magnetic resonance imaging of product distributions within the pores of catalyst pellets during Fischer–Tropsch synthesis
Published in Nature catalysis (01-02-2023)“…The optimization of a heterogeneous catalytic process requires characterization of the catalyst at industrially relevant conditions and length scales. Here we…”
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Mesoscopic Elastic Distortions in GaAs Quantum Dot Heterostructures
Published 25-02-2020“…Nano Lett. 18, 2780 (2018) Quantum devices formed in high-electron-mobility semiconductor heterostructures provide a route through which quantum mechanical…”
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