Spontaneous pattern formation with a well-defined periodicity is ubiquitous in nature. The Liesegang phenomenon is a chemical model of such a spontaneous pattern formation. In this study, we investigated the role of stochasticity in reaction–diffusion precipitation processes by demonstrating the temperature dependence of spontaneous symmetry breaking and helix formation in the Liesegang pattern with CuCrO4 precipitates; experimental analysis and numerical simulations based on reaction–diffusion equations were used. At high temperatures, helices with no, single, and double branches appeared in addition to the discrete parallel band characteristic of the Liesegang phenomenon. The probability of helix formation increased drastically when the e...
The study presented in this paper investigates form changes of propagating waves generated through p...
2012 Spring.Includes bibliographical references.One of the trademarks of a Liesegang ring system is ...
Precipitation processes are essential in many natural systems, especially in biomineralization and i...
Various types of pattern formation and self-organization phenomena can be observed in biological, ch...
Abstract. In this article different mathematical models of the Liesegang phenomenon are exhibited. T...
Radially symmetric pattern formation phenomena were investigated experimentally and numerically in 2...
Liesegang pattern (LP) is one example of self-organized periodic precipitation patterns in nonequili...
Simulations of the Liesegang pattern formation are presented that are based on a discrete stochastic...
Periodic precipitation processes in gels can result in impressive micro- and nanostructured patterns...
Patterns of colloidal origin that are formed in ionic precipitation-diffusion systems and are known ...
Unraveling how chemistry can give rise to biology is one of the greatest challenges of contemporary ...
In the past years considerable attention has been devoted to designing and controlling patterns at t...
Additional contributor: Arnd Scheel (faculty mentor)This project was concerned with the study of Lie...
We investigate the regular and moving Liesegang pattern formation phenomena in an open system. First...
The study presented in this paper investigates form changes of propagating waves generated through p...
2012 Spring.Includes bibliographical references.One of the trademarks of a Liesegang ring system is ...
Precipitation processes are essential in many natural systems, especially in biomineralization and i...
Various types of pattern formation and self-organization phenomena can be observed in biological, ch...
Abstract. In this article different mathematical models of the Liesegang phenomenon are exhibited. T...
Radially symmetric pattern formation phenomena were investigated experimentally and numerically in 2...
Liesegang pattern (LP) is one example of self-organized periodic precipitation patterns in nonequili...
Simulations of the Liesegang pattern formation are presented that are based on a discrete stochastic...
Periodic precipitation processes in gels can result in impressive micro- and nanostructured patterns...
Patterns of colloidal origin that are formed in ionic precipitation-diffusion systems and are known ...
Unraveling how chemistry can give rise to biology is one of the greatest challenges of contemporary ...
In the past years considerable attention has been devoted to designing and controlling patterns at t...
Additional contributor: Arnd Scheel (faculty mentor)This project was concerned with the study of Lie...
We investigate the regular and moving Liesegang pattern formation phenomena in an open system. First...
The study presented in this paper investigates form changes of propagating waves generated through p...
2012 Spring.Includes bibliographical references.One of the trademarks of a Liesegang ring system is ...
Precipitation processes are essential in many natural systems, especially in biomineralization and i...