Oscillatory behavior has been observed for almost all electrochemical reactions in a certain, although sometimes small, range of external parameters. Only in the past ten years has it been possible, however, to find a common explanation for the occurrence of these temporal self-organization phenomena of chemically completely different electrochemical reactions. The breakthrough was achieved because new methods and concepts, which had been developed in nonlinear dynamics to describe the spontaneous formation of order in various disciplines, could be applied. This development in turn was only possible because the underlying laws are universal at a certain abstract level. Oscillations are only one possible manifestation of nonlinear behavior. ...
In this thesis the spatiotemporal pattern formation in electrochemical systems was theoretically inv...
In this thesis the spatiotemporal pattern formation in electrochemical systems was theoretically inv...
Spatiotemporal pattern formation through the interplay of chemical reactions and electrical effects ...
Oscillatory behavior has been observed for almost all electrochemical reactions in a certain, althou...
Practically every electrochemical reaction exhibits temporal instabilities, such as bistable reactio...
Practically every electrochemical reaction exhibits temporal instabilities, such as bistable reactio...
This thesis is concerned with theoretical investigations of spatiotemporal pattern formation in elec...
Numerous electrochemical systems exhibit spontaneous, dynamical instabilities upon sufficient displa...
Abstract. Experiments on the dynamic behavior of some electrochemical reactions, with emphasis on me...
There exist many experimental examples of spatial pattern formation in electrochemical systems. Usin...
This thesis is concerned with theoretical investigations of spatiotemporal pattern formation in elec...
Pattern formation during electrochemical reactions is a common phenomenon. It is decisively influenc...
Pattern formation during electrochemical reactions is a common phenomenon. It is decisively influenc...
Numerous electrochemical systems exhibit spontaneous, dynamical instabilities upon sufficient displa...
Numerous electrochemical systems exhibit spontaneous, dynamical instabilities upon sufficient displa...
In this thesis the spatiotemporal pattern formation in electrochemical systems was theoretically inv...
In this thesis the spatiotemporal pattern formation in electrochemical systems was theoretically inv...
Spatiotemporal pattern formation through the interplay of chemical reactions and electrical effects ...
Oscillatory behavior has been observed for almost all electrochemical reactions in a certain, althou...
Practically every electrochemical reaction exhibits temporal instabilities, such as bistable reactio...
Practically every electrochemical reaction exhibits temporal instabilities, such as bistable reactio...
This thesis is concerned with theoretical investigations of spatiotemporal pattern formation in elec...
Numerous electrochemical systems exhibit spontaneous, dynamical instabilities upon sufficient displa...
Abstract. Experiments on the dynamic behavior of some electrochemical reactions, with emphasis on me...
There exist many experimental examples of spatial pattern formation in electrochemical systems. Usin...
This thesis is concerned with theoretical investigations of spatiotemporal pattern formation in elec...
Pattern formation during electrochemical reactions is a common phenomenon. It is decisively influenc...
Pattern formation during electrochemical reactions is a common phenomenon. It is decisively influenc...
Numerous electrochemical systems exhibit spontaneous, dynamical instabilities upon sufficient displa...
Numerous electrochemical systems exhibit spontaneous, dynamical instabilities upon sufficient displa...
In this thesis the spatiotemporal pattern formation in electrochemical systems was theoretically inv...
In this thesis the spatiotemporal pattern formation in electrochemical systems was theoretically inv...
Spatiotemporal pattern formation through the interplay of chemical reactions and electrical effects ...