STRUCTURAL AND CHEMICAL ASSESSMENT OF SELECTED NANOPARTICLES BY INFRARED SPECTROSCOPY

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1. Verfasser: Abdullahi, Tijjani Hassan
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2025
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author Abdullahi, Tijjani Hassan
author_facet Abdullahi, Tijjani Hassan
contents <div> <p><span>Nanoparticles exhibit unique physical and chemical properties that differ from bulk materials due to their small size and high surface area. Accurate characterization of these materials is essential for understanding their structure and potential applications. This study employs infrared spectrometry to analyze selected nanoparticles in order to identify their functional groups and bonding characteristics. Laboratory measurements were carried out under controlled conditions, and the obtained spectra were interpreted using standard reference data. The results demonstrate that infrared spectrometry is an effective and reliable technique for revealing the chemical composition and surface features of nanoparticles. These findings contribute to improved understanding of nanoparticle behavior and support their optimized use in various technological and industrial applications.</span></p> </div>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18430446
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle STRUCTURAL AND CHEMICAL ASSESSMENT OF SELECTED NANOPARTICLES BY INFRARED SPECTROSCOPY
Abdullahi, Tijjani Hassan
Nanoparticles; Infrared spectrometry; Chemical characterization; Surface functional groups; Nanomaterial's.
<div> <p><span>Nanoparticles exhibit unique physical and chemical properties that differ from bulk materials due to their small size and high surface area. Accurate characterization of these materials is essential for understanding their structure and potential applications. This study employs infrared spectrometry to analyze selected nanoparticles in order to identify their functional groups and bonding characteristics. Laboratory measurements were carried out under controlled conditions, and the obtained spectra were interpreted using standard reference data. The results demonstrate that infrared spectrometry is an effective and reliable technique for revealing the chemical composition and surface features of nanoparticles. These findings contribute to improved understanding of nanoparticle behavior and support their optimized use in various technological and industrial applications.</span></p> </div>
title STRUCTURAL AND CHEMICAL ASSESSMENT OF SELECTED NANOPARTICLES BY INFRARED SPECTROSCOPY
topic Nanoparticles; Infrared spectrometry; Chemical characterization; Surface functional groups; Nanomaterial's.
url https://doi.org/10.5281/zenodo.18430446