ELECTROKINETIC PHENOMENA. II

Author:

Abramson Harold A.1

Affiliation:

1. From the Department of Physical Chemistry in the Laboratories of Physiology, Harvard Medical School, Boston

Abstract

Two theories which predict different values for the ratio of VE, the electroendosmotic velocity of a liquid past a surface, to Vp, the electric mobility of a particle of the same surface through the same liquid are discussed. The theory demanding that See PDF for Equation was supported by certain data of van der Grinten for a glass surface. Re-calculation of van der Grinten's data reveals that the ratio varies between 2.1 and 2.8. These results are in accord with previous data of Abramson. It is pointed out that glass is unsuitable for the investigation. The ratio See PDF for Equation is here determined for a flat surface and particles when both are covered by the same proteins. Under these conditions See PDF for Equation The theory is similarly tested for a round surface using a micro-cataphoresis cell. It is shown that See PDF for Equation for a round surface is approximately 1.00. These findings are confirmatory of previous data supporting the view that cataphoretic mobility is independent of the size and shape of the particles when all particles compared have similar surface constitutions.

Publisher

Rockefeller University Press

Subject

Physiology

Cited by 14 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Nanochannel Systems for Personalized Therapy and Laboratory Diagnostics;Current Pharmaceutical Biotechnology;2010-06-01

2. Edwin J. Cohn †;Ergebnisse der Physiologie Biologischen Chemie und Experimentellen Pharmakologie;1955-12

3. Edwin J. Cohn;Ergebnisse der Physiologie Biologischen Chemie und Experimentellen Pharmakologie;1955

4. Part I.—Experimental methods and results. (A) Electrophoresis. Microscopic method of electrophoresis and its application to the study of ionogenic and non-ionogenic surfaces;Trans. Faraday Soc.;1940

5. The Polar Groups of Protein and Amino Acid Surfaces in Liquids.;Chemical Reviews;1939-04-01

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