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Aryl amphiphile shape-directors for shape-controlled synthesis of organic semiconductor particles.

Aryl amphiphile shape-directors for shape-controlled synthesis of organic semiconductor particles. Currently, shape- and size-controlled synthesis of organic micro- and nano-particles mostly relies on aliphatic amphiphiles, which lack the structural diversity to provide tunable amphiphile-particle facet interaction energies and result in a limited range of particle shapes. Herein we report the design, synthesis, and utilization of two novel aryl amphiphiles as shape-directors (ShaDs) to obtain particles of different shape. By changing the ShaDs aryl hydrophobe structure, 9,10-diphenylanthracene microcrystals of different shape were obtained with greater than 90% shape yield. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Chemical communications (Cambridge, England) Pubmed

Aryl amphiphile shape-directors for shape-controlled synthesis of organic semiconductor particles.

Chemical communications (Cambridge, England) , Volume 55 (9): 4 – Jan 24, 2019

Aryl amphiphile shape-directors for shape-controlled synthesis of organic semiconductor particles.


Abstract

Currently, shape- and size-controlled synthesis of organic micro- and nano-particles mostly relies on aliphatic amphiphiles, which lack the structural diversity to provide tunable amphiphile-particle facet interaction energies and result in a limited range of particle shapes. Herein we report the design, synthesis, and utilization of two novel aryl amphiphiles as shape-directors (ShaDs) to obtain particles of different shape. By changing the ShaDs aryl hydrophobe structure, 9,10-diphenylanthracene microcrystals of different shape were obtained with greater than 90% shape yield.

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ISSN
1359-7345
DOI
10.1039/c8cc09405e
pmid
30633259

Abstract

Currently, shape- and size-controlled synthesis of organic micro- and nano-particles mostly relies on aliphatic amphiphiles, which lack the structural diversity to provide tunable amphiphile-particle facet interaction energies and result in a limited range of particle shapes. Herein we report the design, synthesis, and utilization of two novel aryl amphiphiles as shape-directors (ShaDs) to obtain particles of different shape. By changing the ShaDs aryl hydrophobe structure, 9,10-diphenylanthracene microcrystals of different shape were obtained with greater than 90% shape yield.

Journal

Chemical communications (Cambridge, England)Pubmed

Published: Jan 24, 2019

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