Rastogi R P, Srivastava R C, Agrawal Y K
Chemistry Department, Gorakhpur University, Gorakhpur 273 009, India.
J Colloid Interface Sci. 2006 May 15;297(2):711-4. doi: 10.1016/j.jcis.2005.10.064. Epub 2005 Dec 9.
Attempt has been made to elucidate the mechanism of electric potential oscillations at oil-aqueous solution interface involving adsorption at oil-vapor interface on a semi-theoretical basis. The mechanism stipulates adsorption of ammonia, amines and pheromones at the liquid-vapor interface followed by transfer of ions through membrane-aqueous solution interface and subsequent interaction of ammonium (amine) ions and carbocations from pheromones with diffusing halide ions from the bulk. Relationship of the above mechanism with sensing mechanism of smell by olfactory nerves has also been pointed out.
已尝试在半理论基础上阐明油 - 水溶液界面处电势振荡的机制,该机制涉及在油 - 气相界面的吸附。该机制规定氨、胺和信息素在液 - 气界面吸附,随后离子通过膜 - 水溶液界面转移,以及来自信息素的铵(胺)离子和碳正离子与从主体扩散的卤离子随后发生相互作用。还指出了上述机制与嗅觉神经嗅觉传感机制的关系。