4.2 Article

XPS Study of Sulfur and Phosphorus Compounds with Different Oxidation States

Journal

SAINS MALAYSIANA
Volume 47, Issue 8, Pages 1913-1922

Publisher

UNIV KEBANGSAAN MALAYSIA
DOI: 10.17576/jsm-2018-4708-33

Keywords

Binding energies; oxidation state; phosphorus; sulfur; XPS

Funding

  1. Australian Research Council via the Special Research Centre for Particle and Material Interfaces
  2. Ministry of Education, Malaysia [GUP-2015-039, Hi-COEBio-MEMS AKU95]

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In this report, we demonstrate that continuous improvement in XPs instruments and the calibration standards as well as analysis with standard component-fitting procedures can be used to determine the binding energies of compounds containing phosphorus and sulfur of different oxidation states with higher confidence. Based on such improved XPS analyses, the binding energies (BEs) of S2p signals for sulfur of increasing oxidation state are determined to be 166-1675 eV for S=O in dimethyl sulfoxide, 168.1 eV for S=O-2 in polysulfone, 168.4 eV for SO3 in polystyrene sulfonate and 168.8 eV for SO4 in chondroitin sulfate. The BEs of P2p signals show the following values: 132.9 eV for PO3 in triisopropyl phosphite, 1333 eV for PO4 in glycerol phosphate, 133.5 eV for PO4 in sodium tripolyphosphate and 134.0 eV for PO4 in sodium hexametaphosphate. These results showed that there are only small increases in the binding energy when additional oxygen atoms are added to the S-O chemical group. A similar result is obtained when the fourth oxygen or poly-phosphate environment is added to the phosphorus compound. These BE values are useful to researchers involved in identifying oxidation states of phosphorus and sulfur atoms commonly observed on modified surfaces and interfaces found in applications such as bioniaterials, super-capacitors and catalysis.

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