The scientist’s investigation covers issues in Cement, Portland cement, Inorganic chemistry, Analytical chemistry and Silicate. His study focuses on the intersection of Portland cement and fields such as Metakaolin with connections in the field of Salt, Friedel's salt, Chloride and Pozzolan. Jørgen Skibsted combines subjects such as Resorcinol, Portlandite, Nanoparticle, Calcium silicate hydrate and Aerogel with his study of Inorganic chemistry.
His Analytical chemistry research integrates issues from Ettringite, Hydrate, Crystallization and NMR spectra database. His work on Carbon-13 NMR satellite is typically connected to Sideband as part of general NMR spectra database study, connecting several disciplines of science. The various areas that Jørgen Skibsted examines in his Silicate study include Brucite, Phase, Aluminium and Silanol.
His primary areas of study are Analytical chemistry, Quadrupole, Cement, Nuclear magnetic resonance spectroscopy and Portland cement. His research integrates issues of Boron, Spinning, NMR spectra database, Magic angle spinning and Chemical shift in his study of Analytical chemistry. In his research, Physical chemistry is intimately related to Crystal structure, which falls under the overarching field of Quadrupole.
As part of one scientific family, Jørgen Skibsted deals mainly with the area of Cement, narrowing it down to issues related to the Mineralogy, and often Silicate and Microstructure. His studies deal with areas such as Single crystal, Solid-state nuclear magnetic resonance, Isostructural and Electric field gradient as well as Nuclear magnetic resonance spectroscopy. His Portland cement research is multidisciplinary, incorporating elements of Inorganic chemistry, Metakaolin and Calcium silicate.
Jørgen Skibsted spends much of his time researching Cement, Catalysis, Carbonation, Inorganic chemistry and Cementitious. His Cement study incorporates themes from Precipitation and Dissolution. Jørgen Skibsted has researched Inorganic chemistry in several fields, including Aluminosilicate, Calcium aluminosilicate and Magnesium.
In his study, Belite is inextricably linked to Metakaolin, which falls within the broad field of Cementitious. His Depolymerization study integrates concerns from other disciplines, such as Portland cement and Calcium silicate. His Portland cement research integrates issues from Tetragonal crystal system, NMR spectra database, Quadrupole and Chemical shift.
His primary scientific interests are in Cement, Dissolution, Portlandite, Clinker and Reactivity. A large part of his Cement studies is devoted to Ettringite. His Ettringite research is multidisciplinary, incorporating perspectives in Fineness, Calcium, Gypsum, Isothermal titration calorimetry and Analytical chemistry.
The various areas that he examines in his Dissolution study include Precipitation, Nuclear chemistry, Solid-state nuclear magnetic resonance, Montmorillonite and Calcination. Jørgen Skibsted works mostly in the field of Portlandite, limiting it down to topics relating to Phase and, in certain cases, Hydrate, Calcium aluminosilicate, Compressive strength, Aqueous solution and Microstructure, as a part of the same area of interest. In his study, Metakaolin, Pozzolana and Pozzolan is strongly linked to Cementitious, which falls under the umbrella field of Clinker.
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Incorporation of aluminum in the calcium silicate hydrate (C-S-H) of hydrated portland cements: a high-field 27Al and 29Si MAS NMR investigation.
Morten Daugaard Andersen;Hans J Jakobsen;Jørgen Skibsted.
Inorganic Chemistry (2003)
Satellite transitions in MAS NMR spectra of quadrupolar nuclei
Jørgen Skibsted;Niels Chr Nielsen;Henrik Bildsøe;Hans J Jakobsen.
Journal of Magnetic Resonance (1991)
A new aluminium-hydrate species in hydrated Portland cements characterized by 27Al and 29Si MAS NMR spectroscopy
M.D. Andersen;Hans Jørgen Jakobsen;Jørgen Bengaard Skibsted.
Cement and Concrete Research (2006)
A Series of Mixed-Metal Borohydrides
Dorthe Ravnsbæk;Yaroslav Filinchuk;Yngve Cerenius;Hans J. Jakobsen.
Angewandte Chemie (2009)
Magic-angle spinning NMR spectra of satellite transitions for quadrupolar nuclei in solids
Hans J Jakobsen;Jørgen Skibsted;Henrik Bildsøe;Niels Chr Nielsen.
Journal of Magnetic Resonance (1989)
Carbonation of C–S–H and C–A–S–H samples studied by 13C, 27Al and 29Si MAS NMR spectroscopy
Tine F. Sevelsted;Jørgen Skibsted.
Cement and Concrete Research (2015)
Properties of magnesium silicate hydrates (M-S-H)
Dominik Nied;Kasper Enemark-Rasmussen;Emilie L'Hopital;Jørgen Skibsted.
Cement and Concrete Research (2016)
Zeolites by confined space synthesis – characterization of the acid sites in nanosized ZSM-5 by ammonia desorption and 27Al/29Si-MAS NMR spectroscopy
Claus J.H Jacobsen;Claus Madsen;Ton V.W Janssens;Hans J Jakobsen.
Microporous and Mesoporous Materials (2000)
Friedel's salt profiles from thermogravimetric analysis and thermodynamic modelling of Portland cement-based mortars exposed to sodium chloride solution
Zhenguo Shi;Mette Rica Geiker;Barbara Lothenbach;Klaartje De Weerdt.
Cement & Concrete Composites (2017)
51V MAS NMR spectroscopy: determination of quadrupole and anisotropic shielding tensors, including the relative orientation of their principal-axis systems
Jørgen Skibsted;Niels Chr. Nielsen;Henrik Bildsøe;Hans J. Jakobsen.
Chemical Physics Letters (1992)
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