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Hydrophobic Effects. Opinions and Facts

Angewandte Chemie International Edition in English · 1993 · Vol. 32(11) · pp. 1545–1579
Wilfried BlokzijlJan B. F. N. Engberts

Abstract

Abstract The term hydrophobic interactions denotes the tendency of relatively apolar molecules to stick together in aqueous solution. These interactions are of importance in many chemical disciplines, including the chemistry of in vivo processes. Enzyme‐substrate interactions, the assembly of lipids in biomembranes, surfactant aggregation, and kinetic solvent effects in water‐rich solutions are all predominantly governed by hydrophobic interactions. Despite extensive research efforts, the hydration of apolar molecules and the noncovalent interactions between these molecules in water are still poorly understood. In fact, the question as to what the driving force for hydrophobic intractions is shifts the study into a quest for a detailed understanding of the remarkable properties of liquid water. This review highlights some of the novel insights that have been obtained in the past decade. The emphasis is on both hydrophobic hydration and hydrophobic interactions since both phenomena are intimately connected. Several traditional views have been found to be deeply unsatisfactory, and courageous attempts have been made to conceptualize the driving force behind pairwise and bulk hydrophobic interactions. The review presents an admittedly personal selection of the recent experimental and theoretical developments, and when necessary, reference is made to relevant studies of earlier date.

Spectroscopy and Quantum Chemical StudiesLipid Membrane Structure and BehaviorSurfactants and Colloidal SystemsHydrophobic effectChemistryNon-covalent interactionsHydrophobeMoleculeAqueous solutionChemical physicsNanotechnologyComputational chemistryOrganic chemistry
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1,137
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Comparison of simple potential functions for simulating liquid water
The Journal of Chemical Physics · 1983 · 41,376 citations
Synthetic Bilayer Membranes: Molecular Design, Self‐Organization, and Application
Angewandte Chemie International Edition in English · 1992 · 677 citations
The interpretation of protein structures: Estimation of static accessibility
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Dominant forces in protein folding
Biochemistry · 1990 · 3,775 citations
Theory for the folding and stability of globular proteins
Biochemistry · 1985 · 1,255 citations
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