2012
DOI: 10.1039/c1sm06570j
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Non-equilibrium cluster states in colloids with competing interactions

Abstract: Cluster formation and gelation are studied in a colloidal model system with competing short-range attractions and long-range repulsions. In contrast to predictions by equilibrium theory, the size of clusters spontaneously formed at low colloidal volume fractions decreases with increasing strength of the short-range attraction. Moreover, the microstructure and shape of the clusters sensitively depend on the strength of the short-range attraction: from compact and crystalline clusters at relatively weak attracti… Show more

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Cited by 91 publications
(102 citation statements)
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“…Similar structures have been only observed in the bulk of colloidal systems with competing short-range attractions and long-range repulsions. 30,32 The crucial parameter driving the self-assembly into ordered domains, as opposed to disordered aggregates, was proven to be the patch extension: bigger patches were found to give rise to extended structures consisting of ordered triangular domains; in contrast, smaller patches were shown to favor the formation of several ring-like particle arrangements, which consequently led to the formation of an open gel network. It is also worth noting that for IPCs with relatively smaller patches bonding contacts occur between only one patch and one equator, whereas for IPCs with bigger patches, one patch often overlaps with two neighboring equators.…”
Section: Resultsmentioning
confidence: 99%
“…Similar structures have been only observed in the bulk of colloidal systems with competing short-range attractions and long-range repulsions. 30,32 The crucial parameter driving the self-assembly into ordered domains, as opposed to disordered aggregates, was proven to be the patch extension: bigger patches were found to give rise to extended structures consisting of ordered triangular domains; in contrast, smaller patches were shown to favor the formation of several ring-like particle arrangements, which consequently led to the formation of an open gel network. It is also worth noting that for IPCs with relatively smaller patches bonding contacts occur between only one patch and one equator, whereas for IPCs with bigger patches, one patch often overlaps with two neighboring equators.…”
Section: Resultsmentioning
confidence: 99%
“…This feature of crystallisation suppressed by five-fold symmetric clusters is found also in experiments on colloidal gels [28], simulations of molecular gels [15], and isolated clusters [37] where in the case of the latter, the ground state is one of the clusters considered by the TCC. However, suppression of crystallisation is not universal, experiments in which locally crystalline clusters are found have also been reported [38].…”
Section: Resultsmentioning
confidence: 99%
“…Beyond their mere aesthetic value, some of the resulting ordered and disordered structures of diblock copolymers have found uses as nanoscale templates and filters 4,5 . Colloidal analogues, however, have thus far only given rise to disordered microphases, such as clusters and gels [6][7][8] . Recent advances describing the equilibrium behavior of model colloidal microphaseformers 9,10 confirm that such ordering should be thermodynamically possible 2,3 , but whether it is dynamically accessible remains an open question.…”
mentioning
confidence: 99%