4.8 Article

Self-monitored photothermal nanoparticles based on core-shell engineering

Journal

NANOSCALE
Volume 8, Issue 5, Pages 3057-3066

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5nr08904b

Keywords

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Funding

  1. Spanish Ministerio de Educacion y Ciencia [MAT2013-47395-C4-1-R]
  2. FINEP (Financiadora de Estudos e Projetos) [INFRAPESQ-11]
  3. CNPq (Conselho Nacional de Desenvolvimento Cientifico e Tecnologico) Grants INCT NANO(BIO) SIMES [483238/2013-9]
  4. CAPES (Coordenadoria de Aperfeicoamento de Pessoal de Ensino Superior) [A077/2013]
  5. PVE [A077/2013]
  6. Post Doctoral Fellowship grant PDE/CAPES at the Universidad Autonoma de Madrid-Spain [2108-14-3]

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The continuous development of nanotechnology has resulted in the actual possibility of the design and synthesis of nanostructured materials with pre-tailored functionabilities. Nanostructures capable of simultaneous heating and local thermal sensing are in strong demand as they would constitute a revolutionary solution to several challenging problems in bio-medicine, including the achievement of real time control during photothermal therapies. Several approaches have been demonstrated to achieve simultaneous heating and thermal sensing at the nanoscale. Some of them lack of sufficient thermal sensitivity and others require complicated synthesis procedures for heterostructure fabrication. In this study, we demonstrate how single core/shell dielectric nanoparticles with a highly Nd3+ ion doped shell and an Yb3+, Er3+ codoped core are capable of simultaneous thermal sensing and heating under an 808 nm single beam excitation. The spatial separation between the heating shell and sensing core provides remarkable values of the heating efficiency and thermal sensitivity, enabling their application in single beam-controlled heating experiments in both aqueous and tissue environments.

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