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Titlebook: Chemomechanical Instabilities in Responsive Materials; P. Borckmans,P. Kepper,S. Métens Conference proceedings 2009 Springer Science+Busin

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An Excursion in Theoretical Non Linear Chemistry: From Oscillations to Turing Patterns,ve both been used in other chapters in conjunction with gels sensitive to such chemical behavior. Because the use of inert gels played such importance in their experimental discovery, elements of the theory of Turing stationary spatial periodic patterns are also discussed.
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Chemomechanical Dynamics of Responsive Gels,tion. This theory is based on an hydrodynamical multi-diffusional approach of a gel, which is plunged in a chemically active mixture. Emergent volume self-oscillation dynamics of the gel result from the nonlinear coupling of the elastic deformation, the chemical kinetics and the transport phenomenon
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Autonomous Rhythmic Drug Delivery Systems Based on Chemical and Biochemomechanical Oscillators, to achieve their optimal effect. Here we describe studies with two model autonomous rhythmic delivery systems. The first system is driven by a pH oscillator that modulates the ionization state of a model drug, benzoic acid, which can permeate through a lipophilic membrane when the drug is uncharged
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Nonlinear Chemical Dynamics In Synthetic Polymer Systems,nd inorganic systems that have been the subject of nonlinear dynamics. We consider two methods for approaching the problem — coupling polymers to other nonlinear systems and using inherent nonlinear behavior of polymers. We specifically focus on frontal polymerization.
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Internal Stress as a Link Between Macroscale and Mesoscale Mechanics,macroscopic scale where the system is regarded as a black-box. Yet nonequilibrium macroscopic operations allow to create and observe the internal stress. We present in this lecture some examples of the internal stress and its operations. We describe the memory effect in some detail, the process in w
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