Fine-tuning the efficiency of para-hydrogen-induced hyperpolarization by rational N-heterocyclic carbene design
Rayner, Peter J., Norcott, Philip, Appleby, Kate M., Iali, Wissam, John, Richard O., Hart, Sam J., Whitwood, Adrian C., Duckett, Simon B.
Published in Nature communications (12.10.2018)
Published in Nature communications (12.10.2018)
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Filling a Niche in “Ligand Space” with Bulky, Electron‐Poor Phosphorus(III) Alkoxides
Hussein, Sharifa, Priester, Denis, Beet, Paul, Cottom, Jonathon, Hart, Sam J., James, Tim, Thatcher, Robert J., Whitwood, Adrian C., Slattery, John M.
Published in Chemistry : a European journal (11.02.2019)
Published in Chemistry : a European journal (11.02.2019)
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Solvent- and anion-dependent rearrangement of fluorinated carbene ligands provides access to fluorinated alkenes
Hall, Lewis M, Milner, Lucy M, Hart, Sam J, Whitwood, Adrian C, Lynam, Jason M, Slattery, John M
Published in Dalton transactions : an international journal of inorganic chemistry (03.12.2019)
Published in Dalton transactions : an international journal of inorganic chemistry (03.12.2019)
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Iridium Cyclooctene Complex That Forms a Hyperpolarization Transfer Catalyst before Converting to a Binuclear C–H Bond Activation Product Responsible for Hydrogen Isotope Exchange
Iali, Wissam, Green, Gary G. R, Hart, Sam J, Whitwood, Adrian C, Duckett, Simon B
Published in Inorganic chemistry (21.11.2016)
Published in Inorganic chemistry (21.11.2016)
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Using signal amplification by reversible exchange (SABRE) to hyperpolarise 119 Sn and 29 Si NMR nuclei
Olaru, Alexandra M, Burt, Alister, Rayner, Peter J, Hart, Sam J, Whitwood, Adrian C, Green, Gary G R, Duckett, Simon B
Published in Chemical communications (Cambridge, England) (13.12.2016)
Published in Chemical communications (Cambridge, England) (13.12.2016)
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Using coligands to gain mechanistic insight into iridium complexes hyperpolarized with para-hydrogen† †Electronic supplementary information (ESI) available. CCDC 1893624. For ESI and crystallographic data in CIF or other electronic format see DOI: 10.1039/c9sc00444k; NMR can be located viahttps://doi.org/10.15124/bbafb6fb-d40a-45ae-81c2-9bebe43249b2
Tickner, Ben. J., John, Richard O., Roy, Soumya S., Hart, Sam J., Whitwood, Adrian C., Duckett, Simon B.
Published in Chemical science (Cambridge) (19.03.2019)
Published in Chemical science (Cambridge) (19.03.2019)
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Journal Article
Using signal amplification by reversible exchange (SABRE) to hyperpolarise 119Sn and 29Si NMR nuclei
Olaru, Alexandra M, Burt, Alister, Rayner, Peter J, Hart, Sam J, Whitwood, Adrian C, Green, Gary G R, Duckett, Simon B
Published in Chemical communications (Cambridge, England) (13.12.2016)
Published in Chemical communications (Cambridge, England) (13.12.2016)
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Using signal amplification by reversible exchange (SABRE) to hyperpolarise 119Sn and 29Si NMR nucleiData created during this research are available by request from the University of York Data Catalogue http://dx.doi.org/10.15124/12345.Electronic supplementary information (ESI) available: General procedures and experimental conditions, sample preparation, performing SABRE experiments, ligand exchange rates, field dependent polarisation transfer studies, synthetic methods. CCDC 1501636 and 1501637
Olaru, Alexandra M, Burt, Alister, Rayner, Peter J, Hart, Sam J, Whitwood, Adrian C, Green, Gary G. R, Duckett, Simon B
Year of Publication 13.12.2016
Year of Publication 13.12.2016
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Using signal amplification by reversible exchange (SABRE) to hyperpolarise 119Sn and 29Si NMR nuclei† †Data created during this research are available by request from the University of York Data Catalogue http://dx.doi.org/10.15124/12345. ‡ ‡Electronic supplementary information (ESI) available: General procedures and experimental conditions, sample preparation, performing SABRE experiments, ligand exchange rates, field dependent polarisation transfer studies, synthetic methods. CCDC 1501636 and
Olaru, Alexandra M., Burt, Alister, Rayner, Peter J., Hart, Sam J., Whitwood, Adrian C., Green, Gary G. R., Duckett, Simon B.
Published in Chemical communications (Cambridge, England) (23.11.2016)
Published in Chemical communications (Cambridge, England) (23.11.2016)
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Rapid Markovnikov addition of HCl to a pendant alkyne: evidence for a quinoidal cumuleneElectronic supplementary information (ESI) available: Experimental details, DFT calculations, X-ray data. CCDC 1029206 and 1029207. For ESI and crystallographic data in CIF or other electronic format see DOI: 10.1039/c4cc09696g
Eaves, Samantha G, Hart, Sam J, Whitwood, Adrian C, Yufit, Dmitry S, Low, Paul J, Lynam, Jason M
Year of Publication 21.05.2015
Year of Publication 21.05.2015
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Homogeneous and silica-supported zinc complexes for the synthesis of propylene carbonate from propane-1,2-diol and carbon dioxideElectronic supplementary information (ESI) available: Copies of NMR, mass and DRIFTS spectra, porosimetry data and X-ray data. CCDC 1448143-1448145. For ESI and crystallographic data in CIF or other electronic format see DOI: 10.1039/c6cy00134c
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