Literature DB >> 28608687

Upconverting Nanoparticles as Optical Sensors of Nano- to Micro-Newton Forces.

Alice Lay, Derek S Wang, Michael D Wisser, Randy D Mehlenbacher, Yu Lin1, Miriam B Goodman, Wendy L Mao, Jennifer A Dionne.   

Abstract

Mechanical forces affect a myriad of processes, from bone growth to material fracture to touch-responsive robotics. While nano- to micro-Newton forces are prevalent at the microscopic scale, few methods have the nanoscopic size and signal stability to measure them in vivo or in situ. Here, we develop an optical force-sensing platform based on sub-25 nm NaYF4 nanoparticles (NPs) doped with Yb3+, Er3+, and Mn2+. The lanthanides Yb3+ and Er3+ enable both photoluminescence and upconversion, while the energetically coupled d-metal Mn2+ adds force tunability through its crystal field sensitivity. Using a diamond anvil cell to exert up to 3.5 GPa pressure or ∼10 μN force per particle, we track stress-induced spectral responses. The red (660 nm) to green (520, 540 nm) emission ratio varies linearly with pressure, yielding an observed color change from orange to red for α-NaYF4 and from yellow-green to green for d-metal optimized β-NaYF4 when illuminated in the near infrared. Consistent readouts are recorded over multiple pressure cycles and hours of illumination. With the nanoscopic size, a dynamic range of 100 nN to 10 μN, and photostability, these nanoparticles lay the foundation for visualizing dynamic mechanical processes, such as stress propagation in materials and force signaling in organisms.

Entities:  

Keywords:  Upconversion; crystal field theory; d-metal; diamond anvil cell; force sensor; lanthanides

Year:  2017        PMID: 28608687      PMCID: PMC6589185          DOI: 10.1021/acs.nanolett.7b00963

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  34 in total

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2.  Force and focal adhesion assembly: a close relationship studied using elastic micropatterned substrates.

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4.  Structural and spectroscopic characterization of active sites in a family of light-emitting sodium lanthanide tetrafluorides.

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7.  Recent advances in the chemistry of lanthanide-doped upconversion nanocrystals.

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8.  Upconversion fluorescence imaging of cells and small animals using lanthanide doped nanocrystals.

Authors:  Dev K Chatterjee; Abdul J Rufaihah; Yong Zhang
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Review 10.  Mechanobiology and diseases of mechanotransduction.

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3.  Microscale optoelectronic infrared-to-visible upconversion devices and their use as injectable light sources.

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6.  Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for Single Particle Imaging of Stimuli.

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7.  Optically Robust and Biocompatible Mechanosensitive Upconverting Nanoparticles.

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  8 in total

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