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Multimodal Characterization of Resin Embedded and Sliced Polymer Nanoparticles by Means of Tip-Enhanced Raman Spectroscopy and Force-Distance Curve Based Atomic Force Microscopy.
Höppener, Christiane; Schacher, Felix H; Deckert, Volker.
Affiliation
  • Höppener C; Leibniz Institute of Photonic Technologies (IPHT) Jena, Albert-Einsteinstraße 9, 07745, Jena, Germany.
  • Schacher FH; Institute of Physical Chemistry and Abbe Center of Photonics, Friedrich-Schiller-Universität Jena, Lessingstraße 10, D-07743, Jena, Germany.
  • Deckert V; Institute of Organic Chemistry and Macromolecular Chemistry (IOMC), Friedrich-Schiller-University Jena, Lessingstraße 8, D-07743, Jena, Germany.
Small ; 16(17): e1907418, 2020 04.
Article in En | MEDLINE | ID: mdl-32227438
ABSTRACT
Understanding the property-function relation of nanoparticles in various application fields involves determining their physicochemical properties, which is still a remaining challenge to date. While a multitude of different characterization tools can be applied, these methods by themselves can only provide an incomplete picture. Therefore, novel analytical techniques are required, which can address both chemical functionality and provide structural information at the same time with high spatial resolution. This is possible by using tip-enhanced Raman spectroscopy (TERS), but due to its limited depth information, TERS is usually restricted to investigations of the nanoparticle surface. Here, TERS experiments are established on polystyrene nanoparticles (PS NPs) after resin embedding and microtome slicing. With that, unique access to their internal morphological features is gained, and thus, enables differentiation between information obtained for core- and shell-regions. Complementary information is obtained by means of transmission electron microscopy (TEM) and from force-distance curve based atomic force microscopy (FD-AFM). This multimodal approach achieves a high degree of discrimination between the resin and the polymers used for nanoparticle formulation. The high potential of TERS combined with advanced AFM spectroscopy tools to probe the mechanical properties is applied for quality control of the resin embedding procedure.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Polymers / Spectrum Analysis, Raman / Microscopy, Atomic Force / Nanoparticles Language: En Journal: Small Journal subject: ENGENHARIA BIOMEDICA Year: 2020 Type: Article Affiliation country: Germany

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Polymers / Spectrum Analysis, Raman / Microscopy, Atomic Force / Nanoparticles Language: En Journal: Small Journal subject: ENGENHARIA BIOMEDICA Year: 2020 Type: Article Affiliation country: Germany