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Microscale Self-Assembly of Upconversion Nanoparticles Driven by Block Copolymer.


ABSTRACT: Lanthanide-based upconversion nanoparticles can convert low-energy excitation to high-energy emission. The self-assembled upconversion nanoparticles with unique structures have considerable promise in sensors and optical devices due to intriguing properties. However, the assembly of isotropic nanocrystals into anisotropic structures is a fundamental challenge caused by the difficulty in controlling interparticle interactions. Herein, we report a novel approach for the preparation of the chain-like assemblies of upconversion nanoparticles at different scales from nano-scale to micro-scale. The dimension of chain-like assembly can be fine-tuned using various incubation times. Our study observed Y-junction aggregate morphology due to the flexible nature of amphiphilic block copolymer. Furthermore, the prepared nanoparticle assemblies of upconversion nanoparticles with lengths up to several micrometers can serve as novel luminescent nanostructure and offer great opportunities in the fields of optical applications.

SUBMITTER: Su Q 

PROVIDER: S-EPMC7528114 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Microscale Self-Assembly of Upconversion Nanoparticles Driven by Block Copolymer.

Su Qianqian Q   Zhou Meng-Tao MT   Zhou Ming-Zhu MZ   Sun Qiang Q   Ai Taotao T   Su Yan Y  

Frontiers in chemistry 20200916


Lanthanide-based upconversion nanoparticles can convert low-energy excitation to high-energy emission. The self-assembled upconversion nanoparticles with unique structures have considerable promise in sensors and optical devices due to intriguing properties. However, the assembly of isotropic nanocrystals into anisotropic structures is a fundamental challenge caused by the difficulty in controlling interparticle interactions. Herein, we report a novel approach for the preparation of the chain-li  ...[more]

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