On one-dimensional nucleation and growth of “living” polymers I. Homogeneous nucleation
Identifieur interne : 004E81 ( Main/Exploration ); précédent : 004E80; suivant : 004E82On one-dimensional nucleation and growth of “living” polymers I. Homogeneous nucleation
Auteurs : M. P. Firestone [États-Unis] ; R. De Levie [États-Unis] ; S. K. Rangarajan [Inde]Source :
- Journal of Theoretical Biology [ 0022-5193 ] ; 1983.
English descriptors
- Teeft :
- Academic press, Actin, Approximate results, Asakura, Characteristic features, Circular cylinder, Constant monomer concentration, Constant radius, Critical nuclei, Critical nucleus, Experimental results, Firestone, Globular proteins, Growth proceeds, Helical, Homogeneous nucleation, Initial barrier diagram, Initial monomer concentration, Initial value, Johnson borisy, Kinetic scheme, Kinetics, Large number, Linear polymers, Local equilibrium, Mathematical description, Model assumptions, Monomer, Monomer addition, Monomer concentration, Monomer supersaturation, Nucleation, Nucleation period, Numerical integration, Polymer, Polymer distribution, Polymerization, Polymerization reaction, Rate constants, Rate parameters, Reversible polymerization, Schematic representation, Sickle cell hemoglobin, Solubility, Steady state, Steady states, Subcritical, Subcritical clusters, Such kinetics, Such polymers, Supercritical, Supercritical clusters, Supercritical ones, Third phase, Time constants, Time dependence, Tobacco mosaic virus protein, Tubulin, Unit volume.
Abstract
Abstract: The kinetics of one-dimensional polymerization are described in terms of successive monomer additions. During homogeneous nucleation, the concentration cn of critical nuclei is proportional to the nth power of monomer concentration c1 and, initially, to the (n−1)th power of time.
Url:
DOI: 10.1016/0022-5193(83)90244-8
Affiliations:
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Le document en format XML
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<term>Characteristic features</term>
<term>Circular cylinder</term>
<term>Constant monomer concentration</term>
<term>Constant radius</term>
<term>Critical nuclei</term>
<term>Critical nucleus</term>
<term>Experimental results</term>
<term>Firestone</term>
<term>Globular proteins</term>
<term>Growth proceeds</term>
<term>Helical</term>
<term>Homogeneous nucleation</term>
<term>Initial barrier diagram</term>
<term>Initial monomer concentration</term>
<term>Initial value</term>
<term>Johnson borisy</term>
<term>Kinetic scheme</term>
<term>Kinetics</term>
<term>Large number</term>
<term>Linear polymers</term>
<term>Local equilibrium</term>
<term>Mathematical description</term>
<term>Model assumptions</term>
<term>Monomer</term>
<term>Monomer addition</term>
<term>Monomer concentration</term>
<term>Monomer supersaturation</term>
<term>Nucleation</term>
<term>Nucleation period</term>
<term>Numerical integration</term>
<term>Polymer</term>
<term>Polymer distribution</term>
<term>Polymerization</term>
<term>Polymerization reaction</term>
<term>Rate constants</term>
<term>Rate parameters</term>
<term>Reversible polymerization</term>
<term>Schematic representation</term>
<term>Sickle cell hemoglobin</term>
<term>Solubility</term>
<term>Steady state</term>
<term>Steady states</term>
<term>Subcritical</term>
<term>Subcritical clusters</term>
<term>Such kinetics</term>
<term>Such polymers</term>
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<term>Supercritical clusters</term>
<term>Supercritical ones</term>
<term>Third phase</term>
<term>Time constants</term>
<term>Time dependence</term>
<term>Tobacco mosaic virus protein</term>
<term>Tubulin</term>
<term>Unit volume</term>
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<front><div type="abstract" xml:lang="en">Abstract: The kinetics of one-dimensional polymerization are described in terms of successive monomer additions. During homogeneous nucleation, the concentration cn of critical nuclei is proportional to the nth power of monomer concentration c1 and, initially, to the (n−1)th power of time.</div>
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