Design of multi‐luminescent silica‐based nanoparticles for the detection of liquid organic compounds

Author:

Delic Asmira1,Lindgren Mikael2,Psarrou Maria3,Economopoulos Solon3,Mariussen Espen45,Krivokapic Alexander6,Torsæter Ole7,Omran Mohamed7,Einarsrud Mari‐Ann1ORCID

Affiliation:

1. Department of Materials Science and Engineering, Trondheim, Norway Norwegian University of Science and Technology (NTNU) Sem Sælands vei 12 NO-7491 Trondheim Norway

2. Department of Physics Norwegian University of Science and Technology Høgskoleringen 5 NO-7491 Trondheim Norway

3. Department of Chemistry Norwegian University of Science and Technology (NTNU) Høgskoleringen 5 NO-7491 Trondheim Norway

4. Norwegian Institute for Air Research NO-2007 Kjeller Norway

5. Department of air quality and noise Norwegian Institute of Public Health NO-0456 Oslo Norway

6. Institute for Energy Technology NO-2007 Kjeller Norway

7. Department of Geoscience and Petroleum Norwegian University of Science and Technology S. P. Andersens veg 15a 7031 Trondheim Norway

Abstract

AbstractTracer testing in reservoir formations is utilised to determine residual oil saturation as part of optimum hydrocarbon production. Here, we present a novel detection method of liquid organic compounds by monodisperse SiO2 nanoparticles (NPs) containing two luminophores, a EuIII:EDTA complex and a newly synthesised fluorophore based on the organic boron‐dipyrromethene (BODIPY)‐moiety. The particles exhibited stable EuIII PL emission intensity with a long lifetime in aqueous dispersion. The fluorescence of the BODIPY was also preserved in the aqueous environment. The ratiometric PL detection technique was demonstrated by using toluene and 1‐octanol as model compounds of crude oil. The optimal synthesis conditions were found to give NPs with a diameter of ~100 nm, which is suitable for transport through porous oil reservoir structures. The cytotoxicity of the NPs was confirmed to be very low for human lung cell and fish cell lines. These findings demonstrate the potential of the NPs to replace the hazardous chemicals used to estimate the residual oil saturation. Moreover, the ratiometric PL detection technique is anticipated to be of benefit in other fields, such as biotechnology, medical diagnostics, and environmental monitoring, where a reliable and safe detection of a liquid organic phase is needed.

Funder

Norges Forskningsråd

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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