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Updated: Apr 12, 2026

Synthesis and Characterization of Supramolecular Colloids
Published on: April 22, 2016
Orthogonal light-induced self-assembly of nanoparticles using differently substituted azobenzenes
Debasish Manna1, Thumu Udayabhaskararao1, Hui Zhao1
1Department of Organic Chemistry, Weizmann Institute of Science, Rehovot 76100 (Israel).
Abstract:
Precise control of the self-assembly of selected components within complex mixtures is a challenging goal whose realization is important for fabricating novel nanomaterials. Herein we show that by decorating the surfaces of metallic nanoparticles with differently substituted azobenzenes, it is possible to modulate the wavelength of light at which the self-assembly of these nanoparticles is induced. Exposing a mixture of two types of nanoparticles, each functionalized with a different azobenzene, to UV or blue light induces the selective self-assembly of only one type of nanoparticles. Irradiation with the other wavelength triggers the disassembly of the aggregates, and the simultaneous self-assembly of nanoparticles of the other type. By placing both types of azobenzenes on the same nanoparticles, we created unique materials ("frustrated" nanoparticles) whose self-assembly is induced irrespective of the wavelength of the incident light.
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