XPS of quaternary ammonium and phosphonium ionic liquids

X-ray Photoelectron Spectroscopy (XPS) has been used to probe the influence of cation structure on fundamental interactions within Ionic Liquid (IL) systems. A series of tetraalkylammonium-based ILs and their phosphonium analogues have been investigated. A robust C 1s peak fitting model has been d...

Full description

Bibliographic Details
Main Author: Blundell, Rebecca K.
Format: Thesis (University of Nottingham only)
Language:English
Published: 2016
Online Access:https://eprints.nottingham.ac.uk/34589/
_version_ 1848794889542696960
author Blundell, Rebecca K.
author_facet Blundell, Rebecca K.
author_sort Blundell, Rebecca K.
building Nottingham Research Data Repository
collection Online Access
description X-ray Photoelectron Spectroscopy (XPS) has been used to probe the influence of cation structure on fundamental interactions within Ionic Liquid (IL) systems. A series of tetraalkylammonium-based ILs and their phosphonium analogues have been investigated. A robust C 1s peak fitting model has been developed and described for the tetraalkylphosphonium and tetraalkylammonium families of ionic liquid, with comparisons made between the two series. Cation-anion interactions have been investigated to determine the impact of changing the cationic core from nitrogen to phosphorus on the electronic environment of the anion. Comparisons between long and short chain cationic systems, and the effect of cation conformational restriction, are also described. Additionally, a high-energy Ag Lα’ X-ray source has been utilised to probe the structure of the IL/vacuum interface using Energy-resolved XPS (ERXPS) for tetraalkylammonium- and tetraalkylphosphonium-based ILs, with comparison made to data obtained with Angle-resolved XPS (ARXPS) experiments using a standard Al Kα X-ray source. The capability of the Ag Lα’ source for IL analysis is confirmed, alongside the characterisation of previously undetected high energy core level photoelectron emissions. The effect of cation functionalisation is also studied by XPS, with a view to establish fine-tuning of charge transfer from anion to cation using electron-withdrawing substituents embedded within the alkyl side chain of the cation. Binding energy analysis indicated cation functionalisation had minimal influence on the electronic environment of the ionic head groups with respect to the non-functionalised analogues. The performance of ILs, with respect to cation functionalisation, as solvents in the Suzuki reaction is also reported in this Thesis, whereby evidence is provided for changing the nature of catalysis via cation functionalisation.
first_indexed 2025-11-14T19:23:22Z
format Thesis (University of Nottingham only)
id nottingham-34589
institution University of Nottingham Malaysia Campus
institution_category Local University
language English
last_indexed 2025-11-14T19:23:22Z
publishDate 2016
recordtype eprints
repository_type Digital Repository
spelling nottingham-345892025-02-28T13:30:56Z https://eprints.nottingham.ac.uk/34589/ XPS of quaternary ammonium and phosphonium ionic liquids Blundell, Rebecca K. X-ray Photoelectron Spectroscopy (XPS) has been used to probe the influence of cation structure on fundamental interactions within Ionic Liquid (IL) systems. A series of tetraalkylammonium-based ILs and their phosphonium analogues have been investigated. A robust C 1s peak fitting model has been developed and described for the tetraalkylphosphonium and tetraalkylammonium families of ionic liquid, with comparisons made between the two series. Cation-anion interactions have been investigated to determine the impact of changing the cationic core from nitrogen to phosphorus on the electronic environment of the anion. Comparisons between long and short chain cationic systems, and the effect of cation conformational restriction, are also described. Additionally, a high-energy Ag Lα’ X-ray source has been utilised to probe the structure of the IL/vacuum interface using Energy-resolved XPS (ERXPS) for tetraalkylammonium- and tetraalkylphosphonium-based ILs, with comparison made to data obtained with Angle-resolved XPS (ARXPS) experiments using a standard Al Kα X-ray source. The capability of the Ag Lα’ source for IL analysis is confirmed, alongside the characterisation of previously undetected high energy core level photoelectron emissions. The effect of cation functionalisation is also studied by XPS, with a view to establish fine-tuning of charge transfer from anion to cation using electron-withdrawing substituents embedded within the alkyl side chain of the cation. Binding energy analysis indicated cation functionalisation had minimal influence on the electronic environment of the ionic head groups with respect to the non-functionalised analogues. The performance of ILs, with respect to cation functionalisation, as solvents in the Suzuki reaction is also reported in this Thesis, whereby evidence is provided for changing the nature of catalysis via cation functionalisation. 2016-12-14 Thesis (University of Nottingham only) NonPeerReviewed application/pdf en arr https://eprints.nottingham.ac.uk/34589/10/RKB%20Thesis_Student%20ID%204177525.pdf Blundell, Rebecca K. (2016) XPS of quaternary ammonium and phosphonium ionic liquids. PhD thesis, University of Nottingham.
spellingShingle Blundell, Rebecca K.
XPS of quaternary ammonium and phosphonium ionic liquids
title XPS of quaternary ammonium and phosphonium ionic liquids
title_full XPS of quaternary ammonium and phosphonium ionic liquids
title_fullStr XPS of quaternary ammonium and phosphonium ionic liquids
title_full_unstemmed XPS of quaternary ammonium and phosphonium ionic liquids
title_short XPS of quaternary ammonium and phosphonium ionic liquids
title_sort xps of quaternary ammonium and phosphonium ionic liquids
url https://eprints.nottingham.ac.uk/34589/