Janus quantum dot vesicles generated through membrane fusion

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Abstract

This paper reports a non-phase separation method to prepare a novel type of Janus vesicle, which contains different quantum dots (QDs) in its two hemispheres. The Janus vesicles were generated through the fusion of cyclodextrin or adamantane-functionalized hyperbranched polymer vesicles incorporated with QDs, driven by the intervesicular host-guest molecular recognition. Both the vesicle structure and the real-time membrane fusion process were revealed under fluorescence microscopy, by taking advantage of the giant size, great stability, and controllable surface functionality of the hyperbranched polymer vesicles (BPs). More interestingly, a potential magnetically controlled printing application of the Janus vesicles with Fe 3 O 4 -containing hemispheres by their monolayer patterning in water was demonstrated, which realized the first ''printing'' of ordered vesicles.

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Li, H., Zhang, A., Li, K., Huang, W., Mai, Y., Zhou, Y., & Yan, D. (2018). Janus quantum dot vesicles generated through membrane fusion. Materials Chemistry Frontiers, 2(5), 1040–1045. https://doi.org/10.1039/c8qm00059j

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