Optical Force Sensor Based on Plasmon Modulated Upconversion Luminescence

Author:

Corbella Bagot Conrad1ORCID,Ba Tis Taleb2,Xu Bo3,Sabo Cobi1,Rappeport Eric1,Park Wounjhang124ORCID

Affiliation:

1. Department of Electrical, Computer and Energy Engineering University of Colorado Boulder CO 80309‐0425 USA

2. Materials Science and Engineering Program University of Colorado Boulder CO 80309‐0425 USA

3. Department of Physics University of Colorado Boulder CO 80309‐0425 USA

4. Biomedical Engineering Program University of Colorado Boulder CO 80309‐0425 USA

Abstract

AbstractA novel force sensor exploiting the interaction between plasmonic nanostructures and upconversion nanoparticles (UCNPs) is reported. The nanosensor is composed of a gold nanodisk and UCNPs separated by a flexible polymer layer. The gold nanodisk is designed to exhibit a plasmon resonance that selectively enhances one of the emission bands of the UCNPs while leaving the other ones largely unaffected. As the nanosensor is compressed or stretched by an external force, the polymer layer thickness changes, modulating the plasmon‐UCNP coupling. The resulting changes in the luminescence intensity provide the basis for sensing. Furthermore, the nanosensor employs ratiometric sensing, which makes it highly robust against any environmental variations. The nanosensors exhibit two orders of magnitude higher responsivity than previously reported UCNP‐based force sensors. They can be prepared as an on‐chip sensor array or in a colloidal solution, making them suitable for a variety of applications in biology and robotics.

Funder

Colorado Office of Economic Development and International Trade

U.S. Department of Education

National Institute of General Medical Sciences

National Science Foundation

Publisher

Wiley

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