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  5. Sub-20 nm Core–Shell–Shell Nanoparticles for Bright Upconversion and Enhanced Förster Resonant Energy Transfer

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Article
en
2019

Sub-20 nm Core–Shell–Shell Nanoparticles for Bright Upconversion and Enhanced Förster Resonant Energy Transfer

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en
2019
Vol 141 (42)
Vol. 141
DOI: 10.1021/jacs.9b09571

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Paul Alivisatos
Paul Alivisatos

University of Chicago

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Chris Siefe
Randy D. Mehlenbacher
Chunte Sam Peng
+17 more

Abstract

Upconverting nanoparticles provide valuable benefits as optical probes for bioimaging and Förster resonant energy transfer (FRET) due to their high signal-to-noise ratio, photostability, and biocompatibility; yet, making nanoparticles small yields a significant decay in brightness due to increased surface quenching. Approaches to improve the brightness of UCNPs exist but often require increased nanoparticle size. Here we present a unique core-shell-shell nanoparticle architecture for small (sub-20 nm), bright upconversion with several key features: (1) maximal sensitizer concentration in the core for high near-infrared absorption, (2) efficient energy transfer between core and interior shell for strong emission, and (3) emitter localization near the nanoparticle surface for efficient FRET. This architecture consists of β-NaYbF4 (core) @NaY0.8-xErxGd0.2F4 (interior shell) @NaY0.8Gd0.2F4 (exterior shell), where sensitizer and emitter ions are partitioned into core and interior shell, respectively. Emitter concentration is varied (x = 1, 2, 5, 10, 20, 50, and 80%) to investigate influence on single particle brightness, upconversion quantum yield, decay lifetimes, and FRET coupling. We compare these seven samples with the field-standard core-shell architecture of β-NaY0.58Gd0.2Yb0.2Er0.02F4 (core) @NaY0.8Gd0.2F4 (shell), with sensitizer and emitter ions codoped in the core. At a single particle level, the core-shell-shell design was up to 2-fold brighter than the standard core-shell design. Further, by coupling a fluorescent dye to the surface of the two different architectures, we demonstrated up to 8-fold improved emission enhancement with the core-shell-shell compared to the core-shell design. We show how, given proper consideration for emitter concentration, we can design a unique nanoparticle architecture to yield comparable or improved brightness and FRET coupling within a small volume.

How to cite this publication

Chris Siefe, Randy D. Mehlenbacher, Chunte Sam Peng, Yunxiang Zhang, Stefan Fischer, Alice Lay, Claire A. McLellan, Paul Alivisatos, Steven Chu, Jennifer A. Dionne, Chris Siefe, Randy D. Mehlenbacher, Chunte Sam Peng, Yunxiang Zhang, Stefan Fischer, Alice Lay, Claire A. McLellan, Paul Alivisatos, Steven Chu, Jennifer A. Dionne (2019). Sub-20 nm Core–Shell–Shell Nanoparticles for Bright Upconversion and Enhanced Förster Resonant Energy Transfer. , 141(42), DOI: https://doi.org/10.1021/jacs.9b09571.

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Publication Details

Type

Article

Year

2019

Authors

20

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/jacs.9b09571

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