Interaction of Cyanoacrylate with Metal Oxide Surfaces (Cu, Al).
Philipp MoritzOliver HöfftLienhard WegewitzWolfgang Maus-FriedrichsPublished in: Chemphyschem : a European journal of chemical physics and physical chemistry (2023)
Cyanoacrylates are an extremely reactive class of adhesives. Despite their commercial use as instant adhesives, the adhesion mechanism, especially to technically relevant oxidized metal surfaces, has not yet been sufficiently investigated. In the present work, ultra-thin ethyl cyanoacrylate films are deposited on copper oxide and aluminum oxide by spin coating and cured there. Various surface sensitive spectroscopy methods are used to identify possible interactions. X-Ray photoelectron spectroscopy (XPS) indicates, among other information, hydrogen bonding of the carbonyl group to the oxidized surfaces. Metastable induced electron spectroscopy (MIES) measurements support the theory of this preferential molecular orientation. In addition, XPS shows the presence of an ionic carboxylate (COO - ) species at the interface. Infrared reflection adsorption spectroscopy (IRRAS) measurements confirm this ionic interaction and furthermore allow to investigate the influence of water on the reaction. A possible interaction mechanism of cyanoacrylates with metal oxides could be proposed. The formation of a carboxylate species probably occurs by hydrolysis of the ethyl group via the intermediate of a carboxyl (COOH) species.
Keyphrases
- high resolution
- single molecule
- solid state
- ionic liquid
- biofilm formation
- room temperature
- atomic force microscopy
- oxide nanoparticles
- pseudomonas aeruginosa
- low density lipoprotein
- genetic diversity
- healthcare
- diabetic rats
- computed tomography
- aqueous solution
- escherichia coli
- oxidative stress
- health information
- staphylococcus aureus
- electron microscopy
- endothelial cells
- electron transfer