Research Project:
Applications of Carbon-Fluorine Bond Activation by Main Group Electrophilic Catalysts to PFAS Remediation

dc.contributor.departmentChemistry
dc.contributor.memberTAMU
dc.contributor.pdachttps://hdl.handle.net/20.500.14641/458
dc.contributor.sponsorDOD-Navy-Naval Research Laboratory
dc.creator.piOzerov, Oleg
dc.date2021-09-21
dc.date.accessioned2025-03-10T21:29:01Z
dc.date.available2025-03-10T21:29:01Z
dc.descriptionGrant
dc.description.abstractSignificantly fluorinated triarylmethyl cations have long attracted attention as potentially accessible highly reactive carbocations, but their isolation in a convenient form has proved elusive. We show that abstraction of chloride with a cationic silylium reagent leads to the facile formation of di-, tetra-, and hexafluorinated trityl cations, which could be isolated as analytically pure salts with the [HCB11Cl11] counterion and are compatible with (halo)arene solvents. The F6Tr+ cation carrying six meta-F substituents was computationally predicted to possess up to 20% higher hydride affinity than the parent triphenylmethyl cation Tr+. We report that indeed F6Tr+ displays reactivity unmatched by Tr+. F6Tr+ at ambient temperature abstracts hydrides from the C–H bonds in tetraethylsilane, mesitylene, methylcyclohexane, and catalyzes Friedel–Crafts alkylation of arenes with ethylene, while Tr+ does none of these.
dc.description.chainOfCustody2025-03-10T21:29:32.306897619 David Hubbard (35aca544-f5e8-4e99-90c9-c0033655efed) added Ozerov, Oleg (203e8795-ddb5-47df-99ae-f042a0da1d5c) to null (45512cae-4bf4-4933-8b45-a6776dc18493)en
dc.identifier.otherM2100187
dc.identifier.urihttps://hdl.handle.net/20.500.14641/770
dc.relation.profileurlhttps://scholars.library.tamu.edu/vivo/display/n8f8f768d
dc.titleApplications of Carbon-Fluorine Bond Activation by Main Group Electrophilic Catalysts to PFAS Remediation
dc.title.projectApplications of Carbon-Fluorine Bond Activation by Main Group Electrophilic Catalysts to PFAS Remediation
dspace.entity.typeResearchProject
local.awardNumberN00173-20-1-G010
local.pdac.nameOzerov, Oleg
local.projectStatusTerminated

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