Periodic precipitation processes in gels can result in impressive micro- and nanostructured patterns known as periodic precipitation (or Liesegang bands). Under certain conditions, the silver nitrate–chromium(VI) system exhibits the coexistence of two kinds of Liesegang bands with different frequencies. We now present that the two kinds of bands form independently on different time scales and the pH-dependent chromate(VI)–dichromate(VI) equilibrium controls the formation of the precipitates. We determined the spatial distribution and constitution of the particles in the bands using focused ion beam-scanning electron microscopy (FIB-SEM) and scanning transmission X-ray spectromicroscopy (STXM) measurements. This provided the necessary empiri...
Ever since Liesegane (1), rediscovered the phenomenon of rhythmic precipitation first due to Runge (...
Precipitates of a series of alkaline earth metal (barium and strontium) carbonates, chromates, phosp...
AbstractWe report on a new set of topochemically organized, nanoparticulate experimental systems in ...
We report the self-assembly of aligned arrays of silver nanoparticles governed by a reaction–diffusi...
Reaction diffusion precipitation processes in hydrogels can result in highly periodic micro- and nan...
UnrestrictedSelf-organized patterns can be formed in diffusion experiments where two interdiffusing ...
Numerous investigations of reactions in gels have been conducted since Liesegang’s1 discovery, in 18...
Reaction-diffusion is a universal process that results in hierarchically organized structures, such ...
Formation of spatially periodic patterns is a ubiquitous process in nature and man-made systems. Per...
Liesegang pattern (LP) is one example of self-organized periodic precipitation patterns in nonequili...
For some forty years the explanation of Liesegongs rings has haunted the minds of colloid chemists. ...
Patterns of colloidal origin that are formed in ionic precipitation-diffusion systems and are known ...
Crystal nucleation is facilitated by transient, nanoscale fluctuations that are extraordinarily diff...
After exploring a large number of sparingly soluble systems, the author obtained good rings with the...
Bottom-up self-assembly of simple molecular compounds is a prime pathway to complex materials with i...
Ever since Liesegane (1), rediscovered the phenomenon of rhythmic precipitation first due to Runge (...
Precipitates of a series of alkaline earth metal (barium and strontium) carbonates, chromates, phosp...
AbstractWe report on a new set of topochemically organized, nanoparticulate experimental systems in ...
We report the self-assembly of aligned arrays of silver nanoparticles governed by a reaction–diffusi...
Reaction diffusion precipitation processes in hydrogels can result in highly periodic micro- and nan...
UnrestrictedSelf-organized patterns can be formed in diffusion experiments where two interdiffusing ...
Numerous investigations of reactions in gels have been conducted since Liesegang’s1 discovery, in 18...
Reaction-diffusion is a universal process that results in hierarchically organized structures, such ...
Formation of spatially periodic patterns is a ubiquitous process in nature and man-made systems. Per...
Liesegang pattern (LP) is one example of self-organized periodic precipitation patterns in nonequili...
For some forty years the explanation of Liesegongs rings has haunted the minds of colloid chemists. ...
Patterns of colloidal origin that are formed in ionic precipitation-diffusion systems and are known ...
Crystal nucleation is facilitated by transient, nanoscale fluctuations that are extraordinarily diff...
After exploring a large number of sparingly soluble systems, the author obtained good rings with the...
Bottom-up self-assembly of simple molecular compounds is a prime pathway to complex materials with i...
Ever since Liesegane (1), rediscovered the phenomenon of rhythmic precipitation first due to Runge (...
Precipitates of a series of alkaline earth metal (barium and strontium) carbonates, chromates, phosp...
AbstractWe report on a new set of topochemically organized, nanoparticulate experimental systems in ...