4.8 Article

An Accessible Approach to Preparing Water-Soluble Mn2+-Doped (CdSSe)ZnS (Core)Shell Nanocrystals for Ratiometric Temperature Sensing

期刊

ACS NANO
卷 5, 期 12, 页码 9511-9522

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nn2025622

关键词

nanothermometer; green chemistry; quantum dot; air stable; temperature-dependent lifetime

资金

  1. Princeton University
  2. U.S. Department of Energy

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A new synthetic scheme allowing structural modifications to temperature-sensitive and water-soluble D-penicillamine-passivated Mn2+-doped (CdSSe)ZnS (core)shell nanocrystals (MnQDs) was reported using air-stable chemicals. The temperature-dependent optical properties of the nanocrystals were tuned by changing their structure and composition the ZnS shell thickness and the Mn2+-dopant concentration. Thick ZnS shells significantly reduce the Interference of nonradiative transitions on ratiometric emission intensities. High-dopant concentration affords consistent temperature sensitivity. In addition to the new base structure for quantum dot ratiometric temperature sensing via flexible, glovebox-free routes, the results also underscore the generalizability of the emission intensity ratio scheme for temperature sensing, originally proposed for rare-earth-doped materials.

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