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Journal ArticleDOI

Measurement of forces between two mica surfaces in aqueous electrolyte solutions in the range 0–100 nm

Jacob N. Israelachvili, +1 more
- 01 Jan 1978 - 
- Vol. 74, pp 975-1001
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TLDR
The main results and conclusions of experimental measurements of the forces between molecularly smooth mica surfaces in aqueous electrolyte solutions are as follows: as mentioned in this paper, and they are based on the following assumptions:
Abstract
The main results and conclusions of experimental measurements of the forces between molecularly smooth mica surfaces in aqueous electrolyte solutions are as follows:

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Mechanism of homophilic adhesion by the neural cell adhesion molecule: use of multiple domains and flexibility.

TL;DR: The results suggest that a combination of multiple bound states and internal molecular flexibility allows for sequentially synergistic bond formation and the ability to accommodate differences in intercellular space.
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Measurement of forces between two mica surfaces in aqueous poly(ethylene oxide) solutions

TL;DR: In this paper, the authors measured the forces between two curved mica surfaces immersed in a solution of 0.01% poly(ethylene oxide) (molecular weight 148,000) in 0.04 M MgSO4 (a good solvent).
Book ChapterDOI

Protein/Emulsifier Interactions

TL;DR: The four main mechanisms that can be identified in the process of breaking down an emulsion are creaming, flocculation, coalescence, and Ostwald ripening as mentioned in this paper.
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Interaction Mechanism between Hydrophobic and Hydrophilic Surfaces: Using Polystyrene and Mica as a Model System

TL;DR: Results indicate that DLVO forces dominate the interaction between hydrophilic surface and hydrophobic polymer and PS, while the types of electrolytes, electrolyte concentration, degassing, and surface hydrophobicity can significantly affect the formation and stability of bubbles on the interacting surfaces, thus affecting the range and magnitude of the interaction forces.
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