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Straightforward preparation of supramolecular Janus nanorods by hydrogen bonding of end-functionalized polymers.


ABSTRACT: Janus cylinders are one-dimensional colloids that have two faces with different compositions and functionalities, and are useful as building blocks for advanced functional materials. Such anisotropic objects are difficult to prepare with nanometric dimensions. Here we describe a robust and versatile strategy to form micrometer long Janus nanorods with diameters in the 10-nanometer range, by self-assembly in water of end-functionalized polymers. The Janus topology is not a result of the phase segregation of incompatible polymer arms, but is driven by the interactions between unsymmetrical and complementary hydrogen bonded stickers. Therefore, even compatible polymers can be used to form these Janus objects. In fact, any polymers should qualify, as long as they do not prevent co-assembly of the stickers. To illustrate their applicative potential, we show that these Janus nanorods can efficiently stabilize oil-in-water emulsions.

SUBMITTER: Han S 

PROVIDER: S-EPMC7506555 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Straightforward preparation of supramolecular Janus nanorods by hydrogen bonding of end-functionalized polymers.

Han Shuaiyuan S   Pensec Sandrine S   Yilmaz Dijwar D   Lorthioir Cédric C   Jestin Jacques J   Guigner Jean-Michel JM   Niepceron Frédérick F   Rieger Jutta J   Stoffelbach François F   Nicol Erwan E   Colombani Olivier O   Bouteiller Laurent L  

Nature communications 20200921 1


Janus cylinders are one-dimensional colloids that have two faces with different compositions and functionalities, and are useful as building blocks for advanced functional materials. Such anisotropic objects are difficult to prepare with nanometric dimensions. Here we describe a robust and versatile strategy to form micrometer long Janus nanorods with diameters in the 10-nanometer range, by self-assembly in water of end-functionalized polymers. The Janus topology is not a result of the phase seg  ...[more]

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