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Measuring Physical and Chemical Properties of Single Nanofibers for Energy Applications—Possibilities and Limits

  • Bielefeld University of Applied Sciences
  • Moi University

Research output: Contribution to journalReview articlepeer-review

3 Citations (Scopus)

Abstract

Nanofibers can be produced by various techniques, such as a broad range of electrospinning techniques to produce nanofiber mats from different polymers or polymer blends, often filled with metallic or semiconducting nanoparticles or by different nanotechnological bottom-up or top-down methods. They are important parts of a wide variety of energy applications, such as batteries, fuel cells, photovoltaics, or hydrogen storage materials. Usually, their physical or chemical parameters are measured by averaging over a fiber bundle or a part of a nanofiber mat. Here, we report the possibility of measuring the different physical and chemical properties of single nanofibers and nanowires. Such measurements of single nanofiber properties are more complicated than investigations of fiber bundles or whole nanofiber mats and, thus, are less often found in the literature. After a fast increase in such investigations between 2001 and 2009, the numbers of respective studies are now stagnating. This review thus aims to make the different possibilities more visible to a broader scientific audience by providing several examples based on atomic force microscopy (AFM) and other broadly available techniques. The focus of this review is on technologies that reveal more information than the pure surface morphology of nanofibers or nanowires, such as mechanical properties or wettability, porosity, or electrical conductivity.

Original languageEnglish
Pages (from-to)300-317
Number of pages18
JournalNanoenergy Advances
Volume4
Issue number4
DOIs
Publication statusPublished - Dec 2024

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • atomic force microscopy (AFM)
  • electrospinning
  • energy applications
  • nanofiber
  • nanowire

ASJC Scopus subject areas

  • Energy (miscellaneous)
  • Materials Science (miscellaneous)

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