Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Imaging and identification of single nanoplastic particles and agglomerates

View through CrossRef
AbstractPollution by nanoplastic is a growing environmental and health concern. Currently the extent of nanoplastic in the environment can only be cumbersomely and indirectly estimated but not measured. To be able to quantify the extent of the problem, detection methods that can identify nanoplastic particles that are smaller than 1 $$\mu$$ μ m are critically needed. Here, we employ surface-enhanced Raman scattering (SERS) to image and identify single nanoplastic particles down to 100 nm in size. We can differentiate between single particles and agglomerates and our method allows an improvement in detection speed of $$10^{7}$$ 10 7 compared to state-of-the art surface-enhanced Raman imaging. Being able to resolve single particles allows to measure the SERS enhancement factor on individual nanoplastic particles instead of averaging over a concentration without spatial information. Our results thus contribute to the better understanding and employment of SERS for nanoplastic detection and present an important step for the development of future sensors.
Title: Imaging and identification of single nanoplastic particles and agglomerates
Description:
AbstractPollution by nanoplastic is a growing environmental and health concern.
Currently the extent of nanoplastic in the environment can only be cumbersomely and indirectly estimated but not measured.
To be able to quantify the extent of the problem, detection methods that can identify nanoplastic particles that are smaller than 1 $$\mu$$ μ m are critically needed.
Here, we employ surface-enhanced Raman scattering (SERS) to image and identify single nanoplastic particles down to 100 nm in size.
We can differentiate between single particles and agglomerates and our method allows an improvement in detection speed of $$10^{7}$$ 10 7 compared to state-of-the art surface-enhanced Raman imaging.
Being able to resolve single particles allows to measure the SERS enhancement factor on individual nanoplastic particles instead of averaging over a concentration without spatial information.
Our results thus contribute to the better understanding and employment of SERS for nanoplastic detection and present an important step for the development of future sensors.

Related Results

Directly Compressible Sustained Release Matrix Tablets of Losartan Potassium via Crystallo-co-agglomeration
Directly Compressible Sustained Release Matrix Tablets of Losartan Potassium via Crystallo-co-agglomeration
Background: Losartan potassium possesses poor bioavailability due to low elimination half-life and so requires to be developed as sustained release dosage form. Objecti...
Constraining the origins of terrestrial stratospheric solid aerosols over the 1981-2020 period
Constraining the origins of terrestrial stratospheric solid aerosols over the 1981-2020 period
MotivationThe injection of materials into the Earth's atmosphere has both a natural and an anthropogenic component. Natural solid aerosols that reach the stratosphere can come from...
Agglomerates of nanoparticles
Agglomerates of nanoparticles
Nanoparticles tend to agglomerate. The process of agglomeration is ruled by thermodynamics. Depending on the sign of the enthalpy of interaction, ensembles consist of (repelling) p...
Response of coral reef dinoflagellates to nanoplastics under experimental conditions
Response of coral reef dinoflagellates to nanoplastics under experimental conditions
Abstract Plastic products contribute heavily to anthropogenic pollution of the oceans. Small plastic particles in the micro- and nanoscale ranges...
Methods for the collection and characterization of airborne particles in the textile industry
Methods for the collection and characterization of airborne particles in the textile industry
Airborne particulate matter is one of the main air pollutants. Their impact on mortality, and the occurrence of pulmonary and cardiovascular ...
Engulfment of ceramic particles by fibroblasts does not alter cell behavior
Engulfment of ceramic particles by fibroblasts does not alter cell behavior
Abstract Despite many studies, the impact of ceramic particles on cell behavior remains unclear. The aim of the present study was to investig...
Flocculation of microplastic and cohesive sediment in natural seawater
Flocculation of microplastic and cohesive sediment in natural seawater
<p>The flocculation of combinations of microplastic particles (MP) and natural cohesive sediment has been investigated in a laboratory setup using unfiltered seawater...

Back to Top