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Episode 13: Control of colloidal shapes may lead to hierarchical materials design

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Indhold leveret af MRS Bulletin. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af MRS Bulletin eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.

In this podcast episode, MRS Bulletin’s Laura Leay interviews Laura Rossi from Delft University of Technology (the Netherlands) and Greg van Anders from the University of Michigan (USA) and Queen’s University (Canada) about advances they’ve made in colloidal preassembly in order to gain control in materials structure at a range of length scales. Through experiments and computer simulation, the researchers showed that particle interaction and particle shape can be decoupled through spherical confinement, which – when clustered – assembled differently than those observed in bulk assembly. This work was published in a recent issue of Science Advances (doi: 10.1126/sciadv.abm0548).

  continue reading

91 episoder

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Manage episode 334408679 series 2602554
Indhold leveret af MRS Bulletin. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af MRS Bulletin eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.

In this podcast episode, MRS Bulletin’s Laura Leay interviews Laura Rossi from Delft University of Technology (the Netherlands) and Greg van Anders from the University of Michigan (USA) and Queen’s University (Canada) about advances they’ve made in colloidal preassembly in order to gain control in materials structure at a range of length scales. Through experiments and computer simulation, the researchers showed that particle interaction and particle shape can be decoupled through spherical confinement, which – when clustered – assembled differently than those observed in bulk assembly. This work was published in a recent issue of Science Advances (doi: 10.1126/sciadv.abm0548).

  continue reading

91 episoder

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