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Light-to-heat conversion

Agnieszka Paściak (LuNASI, within NanoTBTech project) has prepared a video presentation about how we measure light-to-heat conversion efficiency. This is related to the patent application "Measurement system and a method for determining the light-to-heat conversion in the VIS to NIR range in colloidal nanomaterials". Patent application No. P.437330 (WPAS), filed in the Polish Patent Office in the matter 47580/20, March 17, 2021. View Patent | View Demonstration Video

Localized photothermal therapy (PTT) has been demonstrated to be a promising method of combating cancer, that additionally synergistically enhances other treatment modalities such as photodynamic therapy or chemotherapy. PTT exploits nanoparticles (called nanoheaters), that upon proper biofunctionalization may target cancerous tissues, and under light stimulation may convert the energy of photons to heat, leading to local overheating and treatment of cancerous cells. Despite extensive work, there is, however, no agreement on how to accurately andquantitatively compare light-to-heat conversion efficiency (ηQ) and rank the nanoheating performances of various groups of nanomaterials.
This disagreement is highly problematic because the obtained ηQ values, measured with various methods, differ significantly for similar nanomaterials. In this work, we experimentally review existing optical setups, methods, and physical models used to evaluate ηQ. In order to draw a binding conclusion, we cross-check and critically evaluate the same Au@ SiO2 sample in various experimental conditions. This critical study let us additionally compare and understand the influence of the other experimental factors, such as stirring, data recording and analysis, and assumptions on the effective mass of the system, in order to determine ηQ in a most straightforward and reproducible way. Our goal was therefore to contribute to the understanding, standardization, and reliable evaluation of ηQ measurements, aiming to accurately rank various nanoheater platforms.

REFERENCE:

Standardization of Methodology of Light-to-Heat Conversion Efficiency Determination for Colloidal Nanoheaters, A.Paściak, A.Pilch-Wróbel, Ł.Marciniak, P.J.Schuck, A.Bednarkiewicz, ACS Appl Mater Interfaces. 2021 Sep 22;13(37):44556-44567. doi: 10.1021/acsami.1c12409. Epub 2021 Sep 9.

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