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Hunt, Samuel B.; Lamb, Jessica V.; Arroyave, Alejandra; Voccia, Maria; Morello, Martina; Zuccaccia, Cristiano; Kaphan, David M.; Kropf, A. Jeremy; Tosoni, Sergio; Perras, Frédéric A.; et al. (2026) Supported Organoiridium-Pincer Catalysts for the Nonoxidative Dehydrogenation of High-Density Polyethylene. Organometallics, 45 (1). doi:10.1021/acs.organomet.5c00372

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Reference TypeJournal (article/letter/editorial)
TitleSupported Organoiridium-Pincer Catalysts for the Nonoxidative Dehydrogenation of High-Density Polyethylene
JournalOrganometallics
AuthorsHunt, Samuel B.Author
Lamb, Jessica V.Author
Arroyave, AlejandraAuthor
Voccia, MariaAuthor
Morello, MartinaAuthor
Zuccaccia, CristianoAuthor
Kaphan, David M.Author
Kropf, A. JeremyAuthor
Tosoni, SergioAuthor
Perras, Frédéric A.Author
Delferro, MassimilianoAuthor
Year2026 (January 12)Volume45
Issue1
PublisherAmerican Chemical Society (ACS)
DOIdoi:10.1021/acs.organomet.5c00372Search in ResearchGate
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Mindat Ref. ID19457499Long-form Identifiermindat:1:5:19457499:2
GUID0
Full ReferenceHunt, Samuel B.; Lamb, Jessica V.; Arroyave, Alejandra; Voccia, Maria; Morello, Martina; Zuccaccia, Cristiano; Kaphan, David M.; Kropf, A. Jeremy; Tosoni, Sergio; Perras, Frédéric A.; et al. (2026) Supported Organoiridium-Pincer Catalysts for the Nonoxidative Dehydrogenation of High-Density Polyethylene. Organometallics, 45 (1). doi:10.1021/acs.organomet.5c00372
Plain TextHunt, Samuel B.; Lamb, Jessica V.; Arroyave, Alejandra; Voccia, Maria; Morello, Martina; Zuccaccia, Cristiano; Kaphan, David M.; Kropf, A. Jeremy; Tosoni, Sergio; Perras, Frédéric A.; et al. (2026) Supported Organoiridium-Pincer Catalysts for the Nonoxidative Dehydrogenation of High-Density Polyethylene. Organometallics, 45 (1). doi:10.1021/acs.organomet.5c00372
In(2026, January) Organometallics Vol. 45 (1). American Chemical Society (ACS)

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Geddie, J. B. J. Big Oil’s plastic boom threatens U.N.’s ‘historic’ pollution pact ; Reuters, 2022. https://www.reuters.com/business/environment/big-oils-plastic-boom-threatens-uns-historic-pollution-pact-2022-03-04/.
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It should be noted that there was some amount of unavoidable carryover of catalyst nanoparticles, inorganic nanoparticles can adhere to the column packing material, which when ‘blended’ with nonpolar polyethylene (i.e. HDPE) may result in the HDPE/SiO2 material having limited solubility resulting in peak fronting or adherence to the column resulting in peak tailing, both of which will result in broadening.
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