Padron-Wells, G. et al. published their research in Colloids and Surfaces, B: Biointerfaces in 2009 |CAS: 929-37-3

The Article related to diethylene glycol vinyl ether pulsed plasma antifouling coating, Pharmaceuticals: Prosthetics and Medical Goods and other aspects.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

On February 1, 2009, Padron-Wells, G.; Jarvis, Brandon C.; Jindal, A. K.; Goeckner, M. J. published an article.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol The title of the article was Understanding the synthesis of DEGVE pulsed plasmas for application to ultra thin biocompatible interfaces. And the article contained the following:

There is interest in the development of novel surface treatments for biocompatibility and non-fouling behaviors on various surfaces of in vivo devices. Polyethylene glycol thin films have shown promise as non-fouling passivation layers for such devices. Studies of the surface chem. and non-fouling effectiveness of plasma deposited di(ethylene glycol) vinyl ether (DEGVE) films have observed that non-fouling performance is maximized when plasma deposition occurs at low values of average power, (<5 W). [Y. J. Wu, R. B. Timmons, J. S. Jen, Frank E. Molock, Non-fouling surfaces produced by gas phase pulsed plasma polymerization of an ultra low mol. weight ethylene oxide containing monomer, Colloids and Surfaces B: Biointerfaces 18 (2000) 235-248.] Chem. properties of plasma deposited films were directly attributed to the complex interactions occurring within the gas phase. In order to better understand the deposition process, as well as the significance of the conclusions drawn by Wu et al. [Y. J. Wu, R. B. Timmons, J. S. Jen, Frank E. Molock, Non-fouling surfaces produced by gas phase pulsed plasma polymerization of an ultra low mol. weight ethylene oxide containing monomer, Colloids and Surfaces B: Biointerfaces 18 (2000) 235-248.] an investigation of the gas phase behavior in DEGVE pulsed plasma discharges was performed. IR spectra were used to characterize the chem. composition and dissociative behavior of DEGVE plasmas across a range of average powers. This allowed for the construction of a dissociative model of the DEGVE monomer in the plasma discharge. Anal. of the observed dissociative pattern demonstrates the presence of key daughter species which would account for the observations made on deposited DEGVE films by Wu et al. [Y. J. Wu, R. B. Timmons, J. S. Jen, Frank E. Molock, Non-fouling surfaces produced by gas phase pulsed plasma polymerization of an ultra low mol. weight ethylene oxide containing monomer, Colloids and Surfaces B: Biointerfaces 18 (2000) 235-248.]. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

The Article related to diethylene glycol vinyl ether pulsed plasma antifouling coating, Pharmaceuticals: Prosthetics and Medical Goods and other aspects.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

Referemce:
Ether – Wikipedia,
Ether | (C2H5)2O – PubChem