What is ISO/TS 10867 - Characterization of single-wall carbon nanotubes using near-infrared photoluminescence spectroscopy for about?
ISO/TS 10867 discusses nanotechnologies. ISO/TS 10867 is an international standard that provides for the characterization of single-wall carbon in nanotechnologies.
ISO/TS 10867 outlines guidelines for the characterization of single-wall carbon nanotubes (SWCNTs) using near-infrared (NIR) photoluminescence (PL) spectroscopy.
ISO/TS 10867 provides a measurement method for the determination of the chiral indices of the semiconducting SWCNTs in a sample and their relative integrated PL intensities.
The method can be expanded to estimate the relative mass concentrations of semiconducting SWCNTs in a sample from their measured integrated PL intensities and knowledge of their PL cross-sections.
Who is ISO/TS 10867-Characterization of SWCNTs using near-infrared photoluminescence spectroscopy for?
ISO/TS 10867 on the characterization of SWCNTs using near-infrared photoluminescence spectroscopy is useful for:
- Manufacturers of single-wall carbon nanotubes
- Laboratories for Nanotechnology
- Regulatory authorities
Why should you use ISO/TS 10867-Characterization of SWCNTs using near-infrared photoluminescence spectroscopy?
Single wall carbon nanotubes are a special class of carbon materials known as one-dimensional materials. They consist of sheets of graphene, rolled up to form hollow tubes with walls one atom thick. The band-gap photoluminescence (PL) of single-wall carbon nanotubes (SWCNTs)
has provided a useful method to characterize their unique electronic properties induced by their low dimensionality.
ISO/TS 10867 guideline assists you with the structure of SWCNTs, band structure, PL peaks, exciton effects, NIR-PL spectrometer, light source, dispersion for measurement, solid film dispersion for measurement, data analysis, and results from interpretation for characterization of single-wall carbon nanotubes using near-infrared photoluminescence spectroscopy.
This will assist you in efficiently assessing the characterization of single-wall carbon nanotubes using near-infrared photoluminescence spectroscopy and in producing a result that is reliable and comparable to any laboratory.